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Nanopore-only Microbial Isolate Sequencing Solution (NO-MISS) – automated ElysION MinION (SQK-RBK114.96) (ISEM_9234_v114_revA_26Aug2026)


Descripción general

This is an automated end-to-end method using the ElysION™ device with a MinION™ setup, outlining sample extraction, library preparation, sequencing, and analysis.

The protocol:

  • Uses bacterial or fungal cells
  • Enables multiplexing of 1–24 samples (using ≥4 samples is recommended to achieve optimal output)
  • Includes DNA fragmentation
  • Is optimised for high output
  • Is compatible with R10.4.1 flow cells

For Research Use Only

Document version: ISEM_9234_v114_revA_26Aug2026

1. Overview of the protocol

Introduction to the automated Nanopore-only Microbial Isolate Sequencing Solution (NO-MISS) protocol using ElysION with a MinION sequencing setup

This end to end protocol describes our automated Nanopore-only Microbial Isolate Sequencing Solution (NO-MISS), a flexible approach allowing sequencing of up to 24 microbial isolate genomes per MinION/GridION Flow Cell, generating a minimum coverage of 50x per genome.

The 50x coverage threshold is sufficient for downstream analysis including accurate assembly and plasmid resolution, AMR profiling, core genome (cg) and whole genome (wg) multi-locus sequence typing (MLST), and cg/wgSNP typing. Your sequencing data will be analysed by the device using the wf-bacterial-genomes workflow, which produces a user-friendly report of the results.

We provide multiple DNA extraction approaches, depending on requirements, and starting organism (bacteria, fungi/yeast). These are key to achieving reliable flow cell output and genome coverage.

The extracted gDNA is then tagmented and sequenced using our Rapid Barcoding Kit (SQK-RBK114.96). Up to 24 samples per sequencing experiment for bacterial isolates (up to 7 Mb genomes) and up to 8 samples for fungi/yeast isolates can be processed. Bacteria with a genome size of ≤4 Mb can be expected to generate a coverage of 50x per genome. Please note, coverage may vary depending on larger genome size and input sample quality.

We recommend sequencing up to 72 hours or running to generate 50x coverage per sample (approx. 0.5 Gb per barcode, assuming 5 Mb genome).

Steps in the sequencing workflow:

Prepare for your experiment

You will need to:

  • Ensure your ElysION device is installed with the required hardware and software package for this workflow.
  • Ensure you have your sequencing kit, the correct equipment and third-party reagents.
  • Check your flow cell during the ElysION run setup to ensure it has sufficient pores for a good sequencing run.

Sample preparation

We have developed several optimised extraction methods to generate high quality genomic DNA from cell cultures, allowing maximised sequencing output using the automated Nanopore-only Microbial Isolate Sequencing Solution (NO-MISS) end-to-end protocol.

What extraction method is right for me?

NO-MISS elysION sample decision tree

Using the relevant gDNA extraction method, you will need to lyse your cells and extract your gDNA:

  • Universal bead-beating method:

    • For high throughput requirements and universal applications, including bacteria and fungi.
  • Bacteria gDNA extraction:

    • This extraction method is recommended for use with general bacterial samples. It has been validated with Escherichia coli, Klebsiella pneumoniae, Pseudomonas aeruginosa, Serratia marcescens, Enterococcus faecalis, and Bacillus subtilis or staphylococci such as Staphylococcus aureus, and Staphylococcus epidermidis.
  • Hard to lyse organisms for gDNA extraction:

    • This extraction method is recommended for hard to lyse organisms, such as Mycobacterium tuberculosis, or for bacteria that was not successfully extracted using the Bacterial gDNA extraction method.

Automated library preparation, sequencing, and analysis

Workflow NO-MISS ElysION

The Table below is an overview of the steps automated by the ElysION device.

Steps Process
Sample extraction
Bead binding Addition of the DNA binding bead mix from the MagMAX™ DNA Multi-Sample Ultra 2.0 Kit to the lysed sample(s)
Clean-up gDNA purification and clean-up
Elution Elution of the extracted and cleaned sample gDNA
Library preparation
DNA barcoding Tagmentation of the DNA using the Rapid Barcoding Kit V14
Sample pooling Pooling of barcoded samples
Bead binding Addition of AMPure XP Beads
Clean-up Clean-up of samples using an ethanol wash
Elution Elution of pooled and cleaned DNA, and attachment of sequencing adapters to the DNA ends.
Priming and loading the flow cell Prime the flow cell and load the prepared library for sequencing.
Sequencing The sequencing run uses the MinKNOW software, which will collect raw data to basecall and demultiplex the barcoded reads.
Data analysis Once sequencing is complete, the device will perform downstream analysis of the data using the wf-bacterial-genomes workflow.
Flow cell wash or flush Wash the flow cell using the Flow Cell Wash Kit (EXP-WSH004) for reuse or flush the flow cell for return to Oxford Nanopore for recycling.

Compatibility of this protocol

This protocol should only be used in combination with:

  • Rapid Barcoding Kit 96 V14 (SQK-RBK114.96)
  • R10.4.1 flow cells (FLO-MIN114)
  • Flow Cell Wash Kit (EXP-WSH004)
  • Flow Cell Priming Kit V14 (EXP-FLP004)
  • Sequencing Auxiliary Vials V14 (EXP-AUX003)
  • Rapid Adapter Auxiliary V14 (EXP-RAA114)
  • ElysION device with MinION integration

2. Equipment and consumables

Material
  • Sample input for DNA extraction (see details below)
  • Rapid Barcoding Kit 96 V14 (SQK-RBK114.96)
  • Kit Flow Cell Wash (EXP-WSH004)

Consumibles
  • MinION/GridION Flow Cell (FLO-MIN114)
  • MagMAX™ DNA Multi-Sample Ultra 2.0 Kit (ThermoFisher, cat # A36570)
  • MagMAX™ DNA Cell and Tissue Extraction Buffer (ThermoFisher, cat # A45469)
  • PureLink™ RNase A (20 mg/ml) (ThermoFisher, cat # 12091021)
  • PBS pH 7.4 (e.g. Gibco, cat # 11503387)
  • TE Buffer Solution pH 8.0 (sigma, cat # 8890-OP)
  • Lysozyme human (Sigma, L1667)
  • Achromopeptidase (Sigma, A3547)
  • 5 M sodium chloride NaCl (Sigma, 71386)
  • Sodium Dodecyl Sulfate SDS (Sigma, cat # 71736)
  • Trizma® hydrochloride solution (Sigma, T2819)
  • BashingBead Buffer (Zymo, D6001-3-40)
  • Empty FastPrep® 2mL Lysing Matrix tubes (MP Biomedicals, 115076200)
  • Screw Cap for 2 mL Lysing Matrix tubes (MP Biomedicals, 115067005)
  • Glass beads, 4 mm (MP Biomedicals, 116914801)
  • PowerBead Pro tube (Qiagen, 19301)
  • Hard-Shell® 96-Well PCR Plates, low profile, thin wall, skirted, red/clear (Bio-Rad™, HSP9611)
  • Nunc™ 96 Well Polypropylene 2 ml DeepWell™ Plate (ThermoFisher, 95040452)
  • Reservoir Plate (Porvair, 390015)
  • Azenta PCR Plate Lid (Azenta, 4ti-0291)
  • Screw cap micro tube 2 ml, sterile (Sarstedt™, 72.694.006)
  • Screw cap micro tube 0.5 ml, sterile (Sarstedt™, 72.785.005)
  • 10 µl inoculating loop
  • Seroalbúmina bovina (BSA) (50 mg/ml) (p. ej., Invitrogen™ UltraPure™ BSA 50 mg/ml, AM2616)
  • Etanol al 80 % recién preparado con agua sin nucleasas
  • Agua sin nucleasas (p.ej. Thermo Scientific, AM9937)
  • Tubos Eppendorf DNA LoBind de 1,5 ml
  • 0.5 ml Eppendorf DNA LoBind tubes
  • 1000 µL Disposable Tips - Filtered, Pure, Single Stack (Tecan, 30057817)
  • 200 µL Disposable Tips - Filtered, Pure, Single Stack (Tecan, 30057815)
  • 50 µL Disposable Tips - Filtered, Pure, Single Stack (Tecan, 30057813)
  • 10 µL Disposable Tips - Filtered, Pure, Single Stack (Tecan, 30104974)
  • LiHa empty Disposable Tip Box Small (Tecan, 30058506)
  • LiHa empty Disposable Tip Box Large (Tecan, 30058507)
  • Waste bin (Tecan, 30185747)
  • Qubit™ dsDNA HS Assay Kit (Invitrogen, Q23851) - optional
  • Qubit™ dsDNA BR Assay Kit (Invitrogen, Q23850) - optional
  • Qubit™ Assay Tubes (Invitrogen, Q32856) - optional

Instrumental
  • ElysION device with MinION integration
  • Vortex mixer (Vortex-Genie 2, Scientific Industries SI™ SI-0266)
  • Vortex Adapter (Qiagen 13000-V1-24)
  • Termociclador
  • Temporizador
  • Thermomixer e.g. Eppendorf F2.0 Model (Fisher, cat # 15356551)
  • Gradilla magnética
  • Centrifugadora de microplacas
  • Centrifuge e.g. Eppendorf max speed 15,000rpm (Fisher, 15881635)
  • Pipeta multicanal y puntas
  • Pipeta y puntas P1000
  • Pipeta y puntas P200
  • Pipeta y puntas P100
  • Pipeta y puntas P20
  • Pipeta y puntas P2
  • Cubeta con hielo
Equipo opcional
  • Rotator mixer
  • Fluorímetro Qubit™ (o equivalente)

The above list of materials, consumables, and equipment is for all the extraction methods in the sample preparation section, as well as the library preparation section of the protocol. You will only need the consumables for the relevant extraction method for your sample input and the library preparation section.

For this protocol, the following inputs are required per sample:

Sample extraction method Sample type Sample input Expected yield Expected DNA Integrity Number (DIN) Average sequencing read lengths
Universal bead-beating gDNA extraction Universal applications:
bacteria, fungi or yeast
1 ml liquid overnight culture (~1 x 108 – 109 cfu/ml)

or

Half of a 10 µl loop of colonies from a plate
>200 ng/µl per sample 7-9 ~4-7 kb
Bacteria gDNA extraction Bacteria 200 µl liquid overnight culture (~1 x 108 – 109 cfu/ml)

or

1/8 of a 10 µl loop of colonies from a plate
15-20 ng/µl per sample 9 >7 kb - Size will vary based on sample input species
Hard to lyse organisms gDNA extraction Hard to extract bacterial samples (e.g. Mycobacterium tuberculosis) For hard to lyse bacterial samples: 200 µl liquid overnight culture (~1 x 108 – 109 cfu/ml)

or

1/8 of a 10 µl loop of colonies from a plate

For Mycobacterium tuberculosis: 5 – 10 mg cells from solid or liquid media
15-40 ng/µl per sample 8 >7 kb - Size will vary based on sample input species

Note: The output and sequencing read length of extracted DNA may vary depending on sample quality and species. Ensure you are following the correct method and using high-quality sample inputs.

For staphylococcal inputs

Staphylococcal Lysis Buffer (SLB) is required for the bacterial gDNA extraction method for staphylococcal inputs.

Reagent Stock Final concentration Volume for 12 samples with excess Volume for 24 samples with excess
Trizma hydrochloride solution, pH 9 1 M 100 mM 150 µl 300 µl
Sodium chloride 5 M 10 mM 3 µl 6 µl
SDS 10% v/v 0.1% v/v 15 µl 30 µl
Nuclease-free water - - 1,332 µl 2,664 µl
Total volume - - 1,500 µl 3,000 µl

The SDS in the Staphylococcal Lysis Buffer (SLB) is essential for preventing the degradation of staphylococci DNA. Exclusion of SDS from the buffer results in a larger smear of DNA when run on a gel.

Third-party reagents

Depending on the extraction protocol used, not all third-party reagents are required.

We have validated and recommend the use of all the third-party reagents used in this protocol. Alternatives have not been tested by Oxford Nanopore.

For all third-party reagents, we recommend following the manufacturer's instructions to prepare the reagents for use.

Check your flow cell

The number of pores in your flow cell will be checked by the ElysION device at the start of your assay. MinION/GridION Flow Cells should be checked within 12 weeks of purchasing.

Oxford Nanopore will replace any unused flow cell with fewer than the number of pores listed in the Table below, when the result is reported within two days of performing the flow cell check, and when the storage recommendations have been followed. To do the flow cell check, follow the instructions on the ElysION on-screen display.

Flow cell Minimum number of active pores covered by warranty
MinION/GridION Flow Cell 800

The Rapid Adapter (RA) used in this kit and protocol is not interchangeable with other sequencing adapters.

Rapid Barcoding Kit 96 V14 (SQK-RBK114.96) contents

SQK-RBK114.96

Name Acronym Cap colour No. of vials Fill volume per vial (µl)
Rapid Adapter RA Green 2 15
Adapter Buffer ADB Clear 1 100
AMPure XP Beads AXP Amber 3 1,200
Elution Buffer EB Black 1 1,500
Sequencing Buffer SB Red 1 1,700
Library Beads LIB Pink 1 1,800
Library Solution LIS White cap, pink label 1 1,800
Flow Cell Flush FCF Clear 1 15,500
Flow Cell Tether FCT Purple 2 200
Rapid Barcodes RB01-96 - 3 plates 8 µl per well

Note: This product contains AMPure XP reagent manufactured by Beckman Coulter Inc. and can be stored at -20°C with the kit, without detriment to reagent stability.

3. ElysION NO-MISS sample sheet setup

Sample sheet information

The sample sheet assigns a barcode to each sample, allowing you to pick a range from the 96-well plate, and for a sample ID to be tracked from input to results.

For more information on setting up a sample sheet, refer to the ElysION MinION user guide.

Set up your sample sheet as a CSV file with the following information:

Required field User input Definition / field info
v1 Version field, no input required outside of field
assay no-miss:vX.x Assay ID and version
library_id User-defined Identification for the DNA library
created_by User-defined Identification of operator setting up sample sheet
created_at User-defined Date and time of creation. Follow the format outlined in the ElysION MinION user guide.
sample_count User-defined Number of samples processed in run (up to 24 samples)
well_id A1-H3 Positions in 96-well plate being used (up to 24 samples).

Samples must start from position A1 in the 96-well plate and run consecutively column-wise.
barcode barcode01-barcode96 Rapid barcodes from SQK-RBK114.96 being used in library preparation.

Up to 96 barcodes are available in the sequencing kit. These should be used sequentially, in sub-sets of up to 24 barcodes (e.g. Barcodes 01-24, or Barcodes 50-60).
sample_type User-defined Description or characteristics of sample input
sample_id User-defined from LIMS system (lims-sampleid-12345) Identification for each sample input (e.g. from LIMS system)

Below is an example of a sample sheet CSV file:

ElysION MinION NO_MISS sample sheet

4. Option 1: Universal bead-beating sample preparation for ElysION

Material
  • 1 ml liquid overnight culture (~1 x 10^8 – 10^9 cfu/ml) OR half of a 10 µl loop of colonies from a plate

Consumibles
  • Proteinase K (from the MagMAX DNA Multi-Sample Ultra 2.0 Kit)
  • PureLink™ RNase A (20 mg/ml) (ThermoFisher, cat # 12091021)
  • PBS pH 7.4 (e.g. Gibco, cat # 11503387)
  • BashingBead Buffer (Zymo, D6001-3-40)
  • PowerBead Pro tube (Qiagen, 19301)
  • Agua sin nucleasas (p.ej. Thermo Scientific, AM9937)
  • Tubos Eppendorf DNA LoBind de 1,5 ml
  • Thermo Scientific™ Nunc™ 96 Well 2 ml Polypropylene DeepWell Plate (Thermo Scientific, cat # 95040452)
  • 10 µl inoculating loop

Instrumental
  • Vortex Adapter (Qiagen 13000-V1-24)
  • Centrifugadora Eppendorf 5424 (o equivalente)
  • Agitador térmico (tipo Thermomixer)
  • Mezclador vórtex
  • Pipeta y puntas P1000
  • Pipeta y puntas P200
  • Pipeta y puntas P20
  • Pipeta y puntas P2
Equipo opcional
  • Rotator mixer

Universal bead-beating gDNA extraction

This extraction method is a universal gDNA extraction from bacteria and fungi/yeast. It uses vortex bead-beating followed by a proteinase K and RNase treatment.

Note: If your desired yield is not achieved or you are looking to maximise the contiguity of your assemblies by generating longer read lengths, try one of our sample-tailored extraction methods:

  • Bacteria gDNA extraction
  • Hard to lyse organisms gDNA extraction

Extraction method overview: Universal bead-beating gDNA extraction for ElysION

Sample extraction method Sample type Sample input Expected yield Expected DNA Integrity Number (DIN) Average sequencing read lengths
Universal bead-beating gDNA extraction Universal applications:
bacteria, fungi or yeast
1 ml liquid overnight culture (~1 x 108 – 109 cfu/ml)

or

half of a 10 µl loop of colonies from a plate
>200 ng/µl per sample 7-9 ~4-7 kb

Note: The output and sequencing read length of extracted DNA may vary depending on sample quality and species. Ensure you are following the correct method and using high-quality sample inputs.

Prepare your sample depending on your sample type by following the instructions below:

If using liquid media for your culture:
1. Centrifuge 1 ml liquid overnight culture (~108 – 109 cfu/ml) at 12,000 x g for 1 minute.
2. Remove the supernatant and resuspend the pellet in 1 ml Phosphate Buffered Saline (PBS).

Note: Washing the sample by removing the supernatant and resuspending the pellet in clean Phosphate Buffered Saline (PBS) removes potential inhibitors from the nutrient broth and removes free DNA that may be degraded.
3. Centrifuge at 12,000 x g for 1 minute.
4. Remove the supernatant, without disturbing the pellet.
5. Resuspend the pellet in 350 µl BashingBead Buffer (Zymo, D6001-3-40).
6. Add the 350 µl of resuspended sample to a PowerBead Pro tube (Qiagen, 19301).
7. Take forward the PowerBead Pro tube containing 350 µl of resuspended sample into the next step.

If using solid media for your culture:
1. Add 350 µl BashingBead Buffer (Zymo, D6001-3-40) to a PowerBead Pro tube (Qiagen, 19301).
2. Using a sterile 10 µl inoculating loop, pick half a loop worth of colonies, avoiding scratching the agar.
3. Place the inoculating loop with the colonies into the PowerBead Pro tube containing the BashingBead Buffer, and agitate to relieve the cells into the tube.
4. Discard the used inoculating loop.
5. Take forward the PowerBead Pro tube containing 350 µl of resuspended sample into the next step.

Secure the PowerBead tube(s) containing your 350 µl of resuspended sample from the previous step to a vortex mixer using a Vortex Adapter (e.g. Qiagen, 13000-V1-24).

Vortex at maximum speed for 10 minutes (~3,000 RPM).

Centrifuge the tube(s) containing your sample at 12,000 x g for 30 seconds.

Transfer the supernatant from the bead-beating tube into a clean 1.5 ml Eppendorf DNA LoBind tube.

Note: Expect ~200–250 µl of supernatant.

Add the following reagents to your sample in the 1.5 ml Eppendorf DNA LoBind tube, and mix by vortexing.

For bacterial samples:

Reagent Volume
Proteinase K 10 µl
RNase A 3 µl

For fungi/yeast samples:

Reagent Volume
Proteinase K 30 µl
RNase A 3 µl

Incubate at 56°C for 15 minutes in a thermomixer at 1,000 RPM.

Note: Depending on the bacterial input, the solution may become fully transparent or may remain hazy.

The full 15 minute incubation must be completed to ensure the proteinase and RNase activity occurs, regardless of turbidity.

Spin down the sample tube(s) and transfer the full sample volume into a Nunc™ 96 Well 2 ml DeepWell Plate for library preparation on the ElysION.

Note: Ensure you keep your samples separate, with each sample being transferred into a separate well of the Nunc™ 96 Well 2 ml DeepWell Plate.

Take forward the Nunc™ 96 Well 2 ml DeepWell Plate containing your sample(s) into the automated gDNA extraction and library preparation section of this protocol.

5. Option 2: Bacterial sample preparation for ElysION

Material
  • 200 µl liquid overnight culture (~1 x 10^8 – 10^9 cfu/ml) OR 1/8 of a 10 µl loop of colonies from a plate

Consumibles
  • PBS pH 7.4 (e.g. Gibco, cat # 11503387)
  • TE Buffer Solution pH 8.0 (sigma, cat # 8890-OP)
  • Lysozyme human (Sigma, L1667)
  • Staphylococcal Lysis Buffer (SLB) (100 mM Tris pH9, 10 mM NaCl, 0.1% SDS)
  • 10 µl inoculating loop
  • Proteinase K (from the MagMAX DNA Multi-Sample Ultra 2.0 Kit)
  • PureLink™ RNase A (20 mg/ml) (ThermoFisher, cat # 12091021)
  • MagMAX™ DNA Cell and Tissue Extraction Buffer (ThermoFisher, cat # A45469)
  • Agua sin nucleasas (p.ej. Thermo Scientific, AM9937)
  • Achromopeptidase (Sigma, A3547)
  • Tubos Eppendorf DNA LoBind de 1,5 ml
  • 5 ml Eppendorf DNA LoBind tubes
  • Thermo Scientific™ Nunc™ 96 Well 2 ml Polypropylene DeepWell Plate (Thermo Scientific, cat # 95040452)
  • Sodium acetate - optional
  • Glycerol - optional

Instrumental
  • Centrifugadora Eppendorf 5424 (o equivalente)
  • Agitador térmico (tipo Thermomixer)
  • Mezclador vórtex
  • Pipeta y puntas P1000
  • Pipeta y puntas P200
  • Pipeta y puntas P100
  • Pipeta y puntas P20
  • Pipeta y puntas P2

Bacteria gDNA extraction

This extraction protocol is recommended for use with general bacterial samples. We have validated this method with Escherichia coli, Klebsiella pneumoniae, Pseudomonas aeruginosa, Serratia marcescens, Enterococcus faecalis, and Bacillus subtilis or staphylococci such as Staphylococcus aureus, and Staphylococcus epidermidis.

If the desired yield is not achieved from your extraction, try one of the following recommendations:

  • The enzymatic reaction time in step 6 can be increased.
  • Use the staphylococcal enzyme.
  • Follow the Hard to lyse organisms gDNA extraction method.

Extraction method overview: Bacteria gDNA extraction for ElysION

Sample extraction method Sample type Sample input Expected yield Expected DNA Integrity Number (DIN) Average sequencing read lengths
Bacteria gDNA extraction Bacteria 200 µl liquid overnight culture (~1 x 108 – 109 cfu/ml)

or

1/8 of a 10 µl loop of colonies from a plate
15-20 ng/µl per sample 9 >7 kb - Size will vary based on sample input species

Note: The output and sequencing read length of extracted DNA may vary depending on sample quality and species. Ensure you are following the correct method and using high-quality sample inputs.

Reconstitute your sample depending on your sample type by following the instructions below:

For general bacterial inputs:
1. Reconstitute the bacterial lysozyme in TE buffer to 10 mg/ml.

Note: The lysozyme can be stored at 100 mg/ml in a stabilised solution for long-term use as follows: 25 mM sodium acetate, 50% glycerol, 100 mg/ml lysozyme – stored at -20°C.

For staphylococcal inputs:
1. Prepare the Staphylococcal Lysis Buffer (SLB) (100 mM Tris pH 9, 10 mM NaCl, 0.1% SDS).

Information for preparing the Staphylococcal Lysis Buffer (SLB) can be found in the Equipment and consumables section of this protocol.
2. Reconstitute the achromopeptidase in nuclease-free water to 10 mg/ml.

We recommend preparing enzymes freshly on the day as enzymatic activity reduces over time, once reconstituted.

Prepare your sample depending on your sample type by following the instructions below:

If using liquid media for your culture:
1. Centrifuge 200 µl liquid overnight culture (~108 – 109 cfu/ml) at 12,000 x g for 1 minute.
2. Remove the supernatant and resuspend the pellet in 1 ml Phosphate Buffered Saline (PBS).

Note: Washing the sample by removing the supernatant and resuspending the pellet in clean Phosphate Buffered Saline (PBS) removes potential inhibitors from the nutrient broth and removes free DNA that may be degraded.
3. Centrifuge at 12,000 x g for 1 minute.
4. Remove the supernatant, without disturbing the pellet.

Note: It is important to remove as much PBS as possible without disturbing the pellet as the buffer has an inhibitory effect on enzyme activity.
5. Resuspend the pellet depending on your input type:

For bacterial samples: Resuspend the pellet in 100 µl TE buffer with 10 µl lysozyme (10 mg/ml).

For staphylococci samples: Resuspend the pellet in 100 µl SLB with 10 µl achromopeptidase (10 mg/ml).

If using solid media for your culture:
1. Add 1 ml of PBS to a fresh 1.5 ml Eppendorf DNA LoBind tube.
2. Using a sterile 10 µl inoculating loop, pick 1/8 a loop worth of colonies, avoiding scratching the agar.
3. Place the inoculating loop with the colonies into the tube containing the PBS, and agitate to relieve the cells into the tube.
4. Discard the used inoculating loop.
5. Centrifuge at 12,000 x g for 1 minute.
6. Remove the supernatant, without disturbing the pellet.

Note: It is important to remove as much PBS as possible without disturbing the pellet as the buffer has an inhibitory effect on enzyme activity.
7. Resuspend the pellet depending on your input type:

For bacterial samples: Resuspend the pellet in 100 µl TE buffer with 10 µl lysozyme (10 mg/ml).

For staphylococci samples: Resuspend the pellet in 100 µl SLB with 10 µl achromopeptidase (10 mg/ml).

Incubate at 37°C for 10 minutes in a thermomixer at 500 RPM.

If a thermomixer is unavailable, the reaction can be incubated stationary and agitated by gently flicking for 10 seconds every two minutes.

Combine the following reagents with your sample in the 1.5 ml Eppendorf DNA LoBind tube, and mix by pipetting.

Reagent Volume
Proteinase K 10 µl
RNase A 3 µl
Total (including your sample) 113 µl

Add 500 µl MagMAX™ DNA Cell and Tissue Extraction Buffer, mix and spin down.

Incubate at 56°C for 30 minutes in a thermomixer at 1,000 RPM.

Note: Depending on the bacterial input, the solution may become fully transparent or may remain hazy.

The full 30 minute incubation must be completed to ensure the proteinase and RNase activity occurs, regardless of turbidity.

Spin down the sample tube(s) and transfer the full sample volume into a Nunc™ 96 Well 2 ml DeepWell Plate for library preparation on the ElysION.

Note: Ensure you keep your samples separate, with each sample being transferred into a separate well of the Nunc™ 96 Well 2 ml DeepWell Plate.

Take forward the Nunc™ 96 Well 2 ml DeepWell Plate containing your sample(s) into the automated gDNA extraction and library preparation section of this protocol.

6. Option 3: Hard to lyse organisms sample preparation for ElysION

Material
  • For hard to lyse bacterial samples: 200 µl liquid overnight culture (~1 x 10^8 – 10^9 cfu/ml) OR 1/8 of a 10 µl loop of colonies from a plate
  • For Mycobacterium tuberculosis: 5 – 10 mg cells from solid or liquid media

Consumibles
  • PBS pH 7.4 (e.g. Gibco, cat # 11503387)
  • TE Buffer Solution pH 8.0 (sigma, cat # 8890-OP)
  • Lysozyme human (Sigma, L1667)
  • Glass beads, 4 mm (MP Biomedicals, 116914801)
  • 10 µl inoculating loop
  • Proteinase K (from the MagMAX DNA Multi-Sample Ultra 2.0 Kit)
  • PureLink™ RNase A (20 mg/ml) (ThermoFisher, cat # 12091021)
  • MagMAX™ DNA Cell and Tissue Extraction Buffer (ThermoFisher, cat # A45469)
  • 5 M sodium chloride NaCl (Sigma, 71386)
  • Agua sin nucleasas (p.ej. Thermo Scientific, AM9937)
  • Empty FastPrep® 2mL Lysing Matrix tubes (MP Biomedicals, 115076200)
  • Tubos Eppendorf DNA LoBind de 1,5 ml
  • Thermo Scientific™ Nunc™ 96 Well 2 ml Polypropylene DeepWell Plate (Thermo Scientific, cat # 95040452)

Instrumental
  • Centrifugadora Eppendorf 5424 (o equivalente)
  • Agitador térmico (tipo Thermomixer)
  • Mezclador vórtex
  • Pipeta y puntas P1000
  • Pipeta y puntas P200
  • Pipeta y puntas P100
  • Pipeta y puntas P20
  • Pipeta y puntas P2

Hard to lyse organisms gDNA extraction

This extraction method is recommended for hard to lyse organisms, such as Mycobacterium tuberculosis, or for bacteria that was not successfully extracted using the Bacteria gDNA extraction method.

Extraction method overview: Hard to lyse organisms gDNA extraction for ElysION

Sample extraction method Sample type Sample input Expected yield Expected DNA Integrity Number (DIN) Average sequencing read lengths
Hard to lyse organisms gDNA extraction Hard to extract bacterial samples (e.g. Mycobacterium tuberculosis) For hard to lyse bacterial samples: 200 µl liquid overnight culture (~1 x 108 – 109 cfu/ml)

or

1/8 of a 10 µl loop of colonies from a plate

For Mycobacterium tuberculosis: 5 – 10 mg cells from solid or liquid media
15-40 ng/µl per sample 8 >7 kb - Size will vary based on sample input species

Note: The output and sequencing read length of extracted DNA may vary depending on sample quality and species. Ensure you are following the correct method and using high-quality sample inputs.

We recommend preparing enzymes freshly on the day as enzymatic activity reduces over time, once reconstituted.

Prepare the lysozyme by reconstituting in TE buffer to 10 mg/ml.

Prepare your sample depending on your sample type by following the instructions below:

For hard to lyse bacterial samples

If using liquid media for your culture:
1. Centrifuge 200 µl liquid overnight culture (~108 – 109 cfu/ml) at 12,000 x g for 1 minute.
2. Remove the supernatant without disturbing the pellet.

If using solid media for your culture:
1. Using a sterile 10 µl inoculating loop, collect 1/8 a loop worth of colonies into a fresh 1.5 ml Eppendorf tube, avoiding scratching the agar.

For Mycobacterium tuberculosis samples

IMPORTANT: For Mycobacterium tuberculosis, we recommend avoiding overgrowing the cultures:

  • For Mycobacterium tuberculosis solid media: ~2-4 weeks of growth should provide sufficient biomass.
  • For Mycobacterium tuberculosis liquid media: ~ 2 weeks of growth should provide sufficient biomass.

We also strongly advise harvesting the recommended amount of input material to yield the correct amount of gDNA for the library preparation step.

  • Less than 5 mg will not yield enough gDNA for library preparation (less than 10 ng/µl), negatively impacting sequencing output.

  • More than 10 mg may result in carryover of sequencing inhibitors onto the flow cell, also negatively impacting sequencing output.


For Mycobacterium tuberculosis solid media:
1. Harvest 5-10 mg of cells from your Mycobacterium tuberculosis solid media and transfer to a 1.5 ml Eppendorf DNA LoBind tube.

For Mycobacterium tuberculosis liquid media:
1. Add ~500 µl of Mycobacterium tuberculosis liquid media to a fresh 1.5 ml Eppendorf DNA LoBind tube.
2. Centrifuge at 12,000 x g for 1 minute.
3. Remove the supernatant, without disturbing the pellet.
4. Harvest 5-10 mg of cells from the pellet and transfer to a 1.5 ml Eppendorf DNA LoBind tube.

Resuspend the pellet in 500 µl PBS and pipette mix using a P1000 pipette.

If the pipette tip becomes clogged, gently press the pipette tip down on the bottom of the tube to break up clumps while pipetting up and down.

Incubate the sample at 80°C for 20 minutes.

We do not recommend increasing the temperature of the incubation as this may negatively impact DNA quality and sequencing data.

This heated incubation is important for efficient cell lysis.

Centrifuge at 12,000 x g for 1 minute.

Remove the supernatant without disturbing the pellet, then resuspend the pellet in 500 µl of fresh PBS.

Centrifuge at 12,000 x g for 1 minute.

Remove the supernatant and resuspend in 100 µl of TE buffer (10 mM Tris, pH 8 and 1 mM EDTA).

Transfer 100 µl of your sample to an empty 2 ml FastPrep lysing matrix tube and add two, 4 mm glass beads.

Vortex the sample for 30 seconds.

Vortexing with beads helps to homogenise the sample to improve efficiency of later steps. Using 4 mm beads avoids overshearing of the DNA.

Add 10 µl lysozyme and mix by pulse vortexing.

Light agitation prevents aggregation and precipitation in the reaction and allows the enzyme to access the cell walls.

Incubate at 37°C for 15 minutes at 800 RPM in a thermomixer.

Constant shaking is essential to achieve sufficient lysis within 15 minutes as occasional agitation may not prevent the cells from clumping.

Note: If a thermomixer is not available, briefly vortex at regular intervals of 2 minutes.

Combine the following reagents with your sample in the 1.5 ml Eppendorf DNA LoBind tube, and mix by pipetting.

Reagent Volume
Proteinase K 10 µl
RNase A 3 µl
Total (including your sample) 123 µl

Add 500 µl MagMAX™ DNA Cell and Tissue Extraction Buffer, mix and spin down.

Incubate at 56°C for 30 minutes in a thermomixer at 1,000 RPM.

Note: Depending on the bacterial input, the solution may become fully transparent or may remain hazy.

The full 30 minute incubation must be completed to ensure the proteinase and RNase activity occurs, regardless of turbidity.

Add 100 µl 5 M sodium chloride and centrifuge at 17,000 x g for 5 minutes.

The high salt step reduces yield but is essential to remove any inhibitors of the library preparation.

Avoiding the pellet, transfer 623 µl of the sample supernatant into a Nunc™ 96 Well 2 ml DeepWell Plate for library preparation on the ElysION.

Note: Ensure you keep your samples separate, with each sample being transferred into a separate well of the Nunc™ 96 Well 2 ml DeepWell Plate.

Take forward the Nunc™ 96 Well 2 ml DeepWell Plate containing your sample(s) into the automated gDNA extraction and library preparation section of this protocol.

7. ElysION run setup

Material
  • Rapid Barcoding Kit 96 V14 (SQK-RBK114.96)
  • Kit Flow Cell Wash (EXP-WSH004)

Consumibles
  • MinION/GridION Flow Cell (FLO-MIN114)
  • MagMAX™ DNA Multi-Sample Ultra 2.0 Kit (ThermoFisher, cat # A36570)
  • Hard-Shell® 96-Well PCR Plates, low profile, thin wall, skirted, red/clear (Bio-Rad™, HSP9611)
  • Thermo Scientific™ Nunc™ 96 Well 2 ml Polypropylene DeepWell Plate (Thermo Scientific, cat # 95040452)
  • Reservoir Plate (Porvair, 390015)
  • Azenta PCR Plate Lid (Azenta, 4ti-0291)
  • Screw cap micro tube 2 ml, sterile (Sarstedt™, 72.694.006)
  • Screw cap micro tube 0.5 ml, sterile (Sarstedt™, 72.785.005)
  • Etanol al 80 % recién preparado con agua sin nucleasas
  • Agua sin nucleasas (p.ej. Thermo Scientific, AM9937)
  • Seroalbúmina bovina (BSA) (50 mg/ml) (p. ej., Invitrogen™ UltraPure™ BSA 50 mg/ml, AM2616)
  • Tubos Eppendorf DNA LoBind de 1,5 ml
  • 0.5 ml Eppendorf DNA LoBind tubes
  • 1000 µL Disposable Tips - Filtered, Pure, Single Stack (Tecan, 30057817)
  • 200 µL Disposable Tips - Filtered, Pure, Single Stack (Tecan, 30057815)
  • 50 µL Disposable Tips - Filtered, Pure, Single Stack (Tecan, 30057813)
  • 10 µL Disposable Tips - Filtered, Pure, Single Stack (Tecan, 30104974)
  • LiHa empty Disposable Tip Box Small (Tecan, 30058506)
  • LiHa empty Disposable Tip Box Large (Tecan, 30058507)
  • Waste bin (Tecan, 30185747)
  • Qubit™ dsDNA BR Assay Kit (Invitrogen, Q23850) - optional
  • Qubit™ Assay Tubes (Invitrogen, Q32856) - optional

Instrumental
  • ElysION device with MinION integration
  • Microcentrífuga
  • Vortex mixer (Vortex-Genie 2, Scientific Industries SI™ SI-0266)
  • Centrifugadora de microplacas
  • Pipeta y puntas P1000
  • Pipeta y puntas P200
  • Pipeta y puntas P100
  • Pipeta y puntas P20
  • Pipeta y puntas P10
  • Pipeta y puntas P2
  • Pipeta multicanal y puntas
  • Cubeta con hielo
Equipo opcional
  • Fluorímetro Qubit (o equivalente para el CC)

The automated sample extraction, library preparation and sequencing method using the ElysION device can be followed using the on-screen display on the device.

Ensure you have all the correct hardware components, software packages and workflows installed to carry out this method.

For more information on the device and the processes, refer to the ElysION MinION user guide.

This protocol is designed to handle 1–24 samples. However, for optimal output, we recommend using a minimum of 4 barcodes.

Only lysed or inactivated sample materials that do not present a biohazard risk should be loaded onto the ElysION device. Live cultures or unresolved biohazardous materials must not be placed on the ElysION deck.

Thaw the kit components at room temperature, spin down briefly using a microfuge and mix by pipetting as indicated in the Table below:

Reagent 1. Thaw at room temperature 2. Briefly spin down 3. Mix well by pipetting
Rapid Barcode Plate (RB01-96) Not frozen -
Rapid Adapter (RA) Not frozen
AMPure XP Beads (AXP) Mix by pipetting or vortexing immediately before use
Elution Buffer (EB)
Adapter Buffer (ADB) Mix by vortexing
Flow Cell Flush (FCF)
Flow Cell Tether (FCT)
Sequencing Buffer (SB)
Library Beads (LIB) Mix by pipetting or vortexing immediately before use
Wash Mix (WMX)
Wash Diluent (DIL) Mix by vortexing
Storage Buffer (S) Mix by vortexing
Bovine Serum Albumin (BSA)

The wells of the barcoding plate are intended for single use only. Ensure your barcode well is sealed before use. Do not reuse the barcode wells.

Thoroughly mix and resuspend the Binding Beads from the MagMAX DNA Multi-Sample Ultra 2.0 Kit by vortexing.

Prepare the DNA Binding Bead Mix according to the instructions shown in the UI.

Note: The volumes will change depending on the number of samples being processed.

Switch on the ElysION device and its computer following the user guide.

The Background Services application (BotQL) should start up automatically in the background when starting up the device.

Ensure the Background Services application is running.

If the UI is unable to connect to the instrument, open the Services application using the Windows search bar. Scroll down to the BotQL application which should show as running. If the application is not running, press Start. To restart the application, press Restart. Wait a few seconds before reopening the UI.

Open the ElysION UI application and wait for a few seconds for the UI to connect to the liquid handler.

Ensure the ElysION deck is clear of any labware before performing automated checks.

Failure to ensure the deck is clear can lead to errors in checks or damage to the equipment.

Close the door to the robot and select "Initialise" on the display.

Note: The ElysION device will perform automated checks.

Allow the initialisation checks to complete before selecting an automated method.

It is possible to add a scheduled pause to allow for sample QC checks following automated DNA extraction on the ElysION.

To include a Pause for QC step in your ElysION run setup, refer to Method variables below.

Method variables

Refer to the ElysION MinION user guide for more details.

If you wish to alter the default variables for your assay, select the System tab on the bottom left of the screen, then Method configurator. Then select the method that you wish to modify.

The variables for the NO-MISS protocol are detailed below:

Variable name Default parameter Parameter range Description
Extraction Bead Binding Time
(unit = seconds)
5 s Min = 5 s
Max = 1,800 s
Allows you to adjust the bead binding incubation time during extraction.
Extraction Bead Elution Time
(unit = minutes)
5 min Min = 2 min
Max = 30 min
Allows you to adjust the extraction bead elution time.
Extraction Bead Pelleting Time
(unit = seconds)
300 s Min = 120 s
Max = 1,800 s
Allows you to adjust the extraction bead pelleting time.
Pause for QC post Extraction 0 = off 0 = off
1 = on
Enabling this feature will instruct the ElysION to pause post extraction, allowing you to QC the samples.
AMPure XP Bead Clean-up Ratio 1.0X 0.4X, 0.6X, 0.8X, 1.0X, 1.2X Allows you to adjust the ratio of AXP bead volume to sample volume during the clean-up step. For example, for the default value of 1.0, 100 μl of beads will be added to 100 μl of pooled samples. For a value of 0.6, 60 μl of beads will be added to 100 μl of pooled samples.
Library Prep Bead Binding Time
(unit = minutes)
5 min Min = 2 min
Max = 30 min
Allows you to adjust the library prep bead binding time.
Library Prep Bead Elution Time
(unit = minutes)
15 min Min = 2 min
Max = 30 min
Allows you to adjust the library prep bead elution time.
Pause for QC pre Flow Cell Loading 0 = off 0 = off
1 = on
Enabling this feature will instruct the ElysION to pause prior to the final eluate collection, allowing sample normalisation to a desired concentration, before automated flow cell loading.

Recommendations for the "Pause for QC" variable when enabled are provided at the end of this section.

Select "Run method" on the on-screen display.

Select the method “Nanopore-only Microbial Isolate Sequencing Solution” on the on-screen display.

Click Next to proceed.

Select the MinION Mk1D position that you wish to load and insert a MinION/GridION Flow Cell into the correct location on the deck as shown on the on-screen display.

Instructions for inserting a flow cell onto the ElysION device can be found in the ElysION MinION user guide.

Select "Run checks" on the on-screen display.

You may check three flow cells simultaneously on the ElysION deck if you wish to set up interleaving runs. However, any unused flow cells should be returned to the fridge after checking, until required for the subsequent library preparation.

Refer to the end of this section for interleaving run setup.

Note: If your flow cell does not reach the required number of pores for your run, insert a new flow cell and repeat the flow cell check before proceeding with the run setup.

Select "Import" on the on-screen display to upload your sample sheet.

Once completed click Next to proceed.

Prepare the reagents in accordance with the reagent preparation page on the on-screen display.

Once completed click Next to proceed.

Once your flow cell check has successfully completed, set up your sequencing run conditions on the on-screen display:

  1. Select the sequencing time limit, or to stop run when the flow cell pores are depleted.

  2. Select a data target.

  3. Select whether to perform:

    • A flow cell flush to return the used flow cell to Oxford Nanopore.
    • Or a flow cell wash using the Flow Cell Wash Kit (EXP-WSH004) to reuse your flow cell.
  4. Select whether write out to a POD5 file format is turned on or off.

Note: Reagent volumes and guidance for flow cell wash or flush will be given on the deck loading page. If you would like to perform a flow cell wash for reuse, it is recommended to thaw the wash reagents at the same time as the library preparation reagents.

For more information on the run conditions, refer to the ElysION MinION user guide.

Reagents and consumables requirements

Consider the following when preparing and loading your reagents and consumables into the ElysION device to mitigate risk of workflow failure and equipment damage:

  • Correct consumables are used with each reagent.

  • Spin down all samples and reagents, making sure they do not contain bubbles.

  • Tip boxes are inserted correctly into the nest positions and sit flat against the deck.

  • Plates are flat in their deck position and sit within the barriers on the deck, and tubes are fully inserted into the rack.

Set up the ElysION deck according to the deck layout outlined in the UI of the on-screen display.

The position of the tip boxes and reagents will change depending on the sample count, and run setup. Follow the instructions on the on-screen display correctly for your run.

Insert two empty waste bins into the disposable waste drawer below the deck.

Close the door of the ElysION device.

Click "Begin run" to start the automated library preparation and sequencing.

Data analysis will automatically be carried out by the ElysION device, once your sequencing run is complete.

The analysis pipeline used is the wf-bacterial-genomes.

For more information on how to access your sequencing data and the analysis outputs, consult the ElysION MinION user guide.

Pause for QC post Extraction

If "Pause for QC post Extraction" is enabled via the Method configurator during the run setup, the robot will automatically pause around 1–1.5 hours into the run, with the next step shown as "Pause for QC".

Pause for QC post Extraction sample normalisation

To normalise your samples post extraction, we recommend the following:

  • The samples are present in the PCR plate at position B3 on the deck. Normalise each sample to 11 ng/µl for the rapid barcoding reaction. Then transfer 25 µl of each sample to the same well location of a new PCR plate.

  • Spin down the plate to ensure the samples do not contain bubbles. Then place the plate in position B3 on the deck.

  • To resume library preparation, press Continue on the on-screen display if using the ‘Overview’ page, or press Resume if using the ‘Run Details’ page.

Pause for QC pre Flow Cell Loading

If "Pause for QC pre Flow Cell Loading" is enabled via the Method configurator during the run setup, the robot will automatically pause prior to the final eluate collection, with the next step shown as "Pause for QC".

Pause for QC pre Flow Cell Loading

To QC your samples pre flow cell loading, we recommend the following:

  • Quantify 1 µl of eluted sample using a Qubit fluorometer and Qubit dsDNA BR assay. The eluted sample is present in well A1 of the DeepWell plate (DWP) in position B1 on the deck.

  • Aim for ~150 ng/µl for 24 samples or ~1.5 µg total DNA to be loaded onto a flow cell in 17.6 µl in well A1 of a new DWP. Make up the volume of the sample using Elution Buffer (EB). Then spin down the plate to ensure the sample does not contain bubbles and place the plate in position B1 on the deck.

  • To resume library preparation, press Continue on the on-screen display if using the ‘Overview’ page, or press Resume if using the ‘Run Details’ page.

Interleaving run setup

Once the first library preparation has completed and started sequencing, to set up a second run, select a new "Run Method" in the UI. Follow the on-screen instructions to unload any reagents and consumables that are not required from the deck and complete the deck setup for the new run.

Once the run is finished, unload the labware according to the deck clearing instructions, empty the bins, and discard or store in the freezer any unused reagents.

8. Issues during DNA extraction and automated library preparation

Below is a list of the most commonly encountered issues, with some suggested causes and solutions.

We also have an FAQ section available on the Nanopore Community Support section.

If you have tried our suggested solutions and the issue still persists, contact Technical Support via email (support@nanoporetech.com) or via LiveChat in the Nanopore Community.

Low sample quality

Observation Possible cause Comments and actions
Inefficient lysis Enzyme activity has degraded in the solution or the isolate species is hard to lyse. - Make a fresh enzyme solution.
- Follow the hard to lyse gDNA extraction option.
- Increase the enzyme incubation for longer than 10 minutes.
Low DNA concentration Low input into the extraction method - Check the cell input used.
- Add more input and perform the extraction again.
Low DNA integrity number (DIN) Low quality or concentration of sample input Repeat the extraction with freshly made enzyme solution.
Low sequencing yield Low sample concentration Check the DNA concentration and quality. RNA presence may affect quantification of total DNA.
Low DNA purity (Nanodrop reading for DNA OD 260/280 is <1.8 and OD 260/230 is <2.0–2.2) The DNA extraction method does not provide the required purity. The effects of contaminants are shown in the Contaminants know-how piece. Try an alternative extraction method that does not result in contaminant carryover.

Consider performing an additional SPRI clean-up step.

ElysION device troubleshooting

For commonly encountered issues, refer to the ElysION MinION user guide.

For in-depth troubleshooting, refer to the ElysION Operating manual provided with your device.

For additional customer support, contact the Oxford Nanopore support channel (support@nanoporetech.com).

Oxford Nanopore Technologies, the Wheel icon, AmPORE-TB, EPI2ME, GridION, MinION, MinKNOW, PromethION, P2 Solo, and P2 are registered trademarks or the subject of trademark applications of Oxford Nanopore Technologies plc in various countries. Information contained herein may be protected by copyright, patents or patents pending of Oxford Nanopore Technologies plc. All other brands and names contained are the property of their respective owners. Oxford Nanopore Technologies products are RUO. Products labelled/branded as Oxford Nanopore Diagnostics may be RUO or may be regulated as in‐vitro diagnostic devices in some jurisdictions, please check individual product labelling. ONT plc is a member of the producer compliance scheme run by ERP UK Ltd, who manage the submission of documentation in support of WEEE compliance for ONT plc’s manufacture and supply of Electrical and Electronic equipment in the UK. ONT’s WEEE PRN is WEE/MM3828AA.

Last updated: 8/26/2026

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