Soil Genomic DNA Kit

Cat. No.: S1522826
AVAILABLE TO ORDER
GRADE & PURITY Suitable for molecular biology ? Molecular-biology grade — free of nucleases and contaminants that degrade DNA/RNA. Use in cloning, PCR, and nucleic-acid work needing clean reagents. BioReagent ? BioReagent grade — tested suitable for life-science and molecular-biology use. Use for cell culture, assays, and biochemical work needing biological compatibility. for DNA and RNA applications ? For nucleic-acid (DNA & RNA) applications — nuclease-controlled across both. Use in workflows handling DNA and RNA together where degradation is a risk.
Size
Status
Price
Qty
50T
S1522826-50T
1-2 wks(?)
Item is derived from our semi-finished stock and is processed in 1-2 weeks.
$249.90
Enter a quantity for the sizes you want to add.
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Why this grade

BioReagent, Suitable for molecular biology, for DNA and RNA applications BioReagent,for DNA and RNA applications,Suitable for molecular biology for sensitive chromatographic and analytical workflows requiring minimal baseline interference.

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Storage & shipping

Room temperature Ships Normal Check lot-specific COA for exact specifications.

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Quality documents

SDS, COA, datasheet, and spec sheet available for download. Lot-specific COA accessible via lot number lookup.

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Literature proof

Cited in 0 peer-reviewed publications across chromatography, organic synthesis, and cross-coupling reactions.

Overview

This kit uses a unique humus removal buffer system to maximally eliminate interfering impurities such as humic acid from soil samples. It is also equipped with homogenization tubes containing grinding beads that effectively disrupt various complex components in soil samples, ensuring the integrity of genomic DNA extracted from soil. The purified DNA can be directly used in downstream applications such as next‑generation sequencing (16S amplicon and metagenomics), library construction, PCR, qPCR, Southern blot, restriction enzyme digestion, and molecular markers.

Product No.ComponentAppearance50TStorage
S1522826ABuffer MS1Liquid40 mLRT
S1522826BBuffer MS2Liquid4 mLRT
S1522826CBuffer MS3Liquid14 mLRT
S1522826DBuffer MS4Liquid11 mLRT
S1522826EBuffer MS5Liquid66 mLRT
S1522826FBuffer PWS1Liquid17 mLRT
S1522826GBuffer EBLiquid15 mLRT
S1522826HHomogenization Tube A1 EA × 50RT
S1522826IPBF Spin Column (with 2 mL collection tube)1 EA × 50RT

The kit can be stored under dry conditions at room temperature for 15 months.

Precautions

  1. Freshly collected samples yield higher recovery. Before sampling different soil types, consult the appropriate optimal storage conditions to avoid sample deterioration that may affect extraction results.

  2. When pipetting supernatants, avoid sucking up any precipitate, as this may introduce impurities and affect product purity.

  3. Excess DNA may inhibit downstream PCR reactions. If this occurs, it is recommended to dilute the DNA template before use.

  4. Before use, check Buffer MS2 for precipitation. If present, heat at 37°C until completely dissolved before use.

  5. The user needs to supply absolute ethanol (for pretreatment of Buffer PWS1) and 70% ethanol.

Procedure

Before use, add 22 mL of absolute ethanol to Buffer PWS1.

1. Add 250 mg of soil sample to Homogenization Tube A, ensuring the sample is evenly distributed at the bottom of the tube.

2. Add 750 µL of Buffer MS1 to the tube. Vortex for 15 sec to thoroughly mix the soil sample with the buffer and initially disperse the sample.

3. Add 60 µL of Buffer MS2. Place the tube on a thermomixer at 37°C and 1500 rpm, and shake for 10 min to allow the humus removal buffer to effectively remove humic acid from the soil.

【Note】 Before use, check Buffer MS2 for precipitation. If present, heat at 37°C until completely dissolved before use.

4. Centrifuge at 12,000 rpm (13,400 × g) for 1 min to fully pellet impurities. Carefully transfer the supernatant to a new 2 mL centrifuge tube.

5. Add 250 µL of Buffer MS3 to the tube, mix thoroughly, vortex for 5 sec, and place at 4°C for 5 min.

6. Centrifuge at 12,000 rpm (13,400 × g) for 1 min. Transfer the supernatant to a new 2 mL centrifuge tube, add 200 µL of Buffer MS4, mix thoroughly, and place at 4°C for 5 min.

7. Centrifuge at 12,000 rpm (13,400 × g) for 1 min to fully pellet impurities. Transfer the supernatant to a new 2 mL centrifuge tube, add 1200 μL of Buffer MS5, and mix by inversion.

【Note】 Do not transfer any precipitate when removing the supernatant, as this may introduce impurities and reduce DNA purity.

8. Transfer the solution from step 7 into a PBF spin column (placed in the provided 2 mL collection tube). Centrifuge at 12,000 rpm (13,400 × g) for 30 sec. Discard the flow‑through and return the spin column to the collection tube. Add no more than 700 μL per transfer; if the volume exceeds, transfer in multiple portions until all liquid has been loaded.

9. Add 700 μL of Buffer PWS1 (with ethanol pre‑added) to the spin column. Centrifuge at 12,000 rpm (13,400 × g) for 30 sec. Discard the flow‑through and return the spin column to the collection tube.

10. Add 700 μL of 70% ethanol (user‑supplied) to the spin column. Centrifuge at 12,000 rpm (13,400 × g) for 30 sec. Discard the flow‑through and return the spin column to the collection tube to further remove residual salts and impurities.

11. Centrifuge the spin column together with the collection tube at 12,000 rpm (13,400 × g) for 2 min to completely remove residual wash buffer and impurities (this avoids residual ethanol affecting subsequent DNA elution and experiments).

12. DNA elution

Transfer the spin column to a new 1.5 mL centrifuge tube. Open the cap and let stand at room temperature for 2 min to allow residual ethanol to evaporate completely. Slowly add 50–100 μL of Buffer EB dropwise to the center of the membrane without touching it. Let stand at room temperature for 1 min. Centrifuge at 12,000 rpm (13,400 × g) for 30 sec. Collect the DNA solution in the centrifuge tube.

【Notes】

(1) The volume of Buffer EB should not be less than 50 μL, as too small a volume will reduce DNA recovery efficiency. If water is used for elution, ensure its pH is between 7.0 and 8.5 (adjust with NaOH). Store the DNA solution at –20°C to prevent degradation.

(2) Reloading the eluate from step 12 onto the spin column, letting it stand at room temperature for 2 min, and centrifuging at 12,000 rpm for 30 sec can increase the final DNA concentration.

DNA Concentration and Purity Assessment

The fragment size of the extracted genomic DNA is influenced by factors such as sample storage time and shear forces during handling. The purified DNA can be assessed for concentration and purity by agarose gel electrophoresis and UV spectrophotometry.

1. Concentration determination

Measure the absorbance of the sample at 260 nm (A260) using a UV spectrophotometer to determine DNA concentration. If dilution is required, Buffer EB is recommended. Dilution with water may lead to inaccurate readings. The absorbance at 260 nm should be kept within 0.1–1.0 to ensure accuracy. Conversion: 1 unit of absorbance at 260 nm corresponds to 50 µg/mL of double‑stranded DNA or 40 µg/mL of single‑stranded DNA.

2. Purity assessment

Evaluate DNA purity by the A260/A280 ratio. For high‑quality genomic DNA, the A260/A280 ratio should be between 1.7 and 1.9. If ddH₂O instead of Buffer EB is used for elution, the ratio may be lower due to the influence of pH and ions on light absorption; this does not necessarily indicate low DNA purity.

Storage and Shipping
Storage
Room temperature
Shipped In
Normal
Stability And Storage
Store at room temperature long term (15 months).
Contents & Storage
Product No.ComponentAppearance50TStorage
S1522826ABuffer MS1Liquid40 mLRT
S1522826BBuffer MS2Liquid4 mLRT
S1522826CBuffer MS3Liquid14 mLRT
S1522826DBuffer MS4Liquid11 mLRT
S1522826EBuffer MS5Liquid66 mLRT
S1522826FBuffer PWS1Liquid17 mLRT
S1522826GBuffer EBLiquid15 mLRT
S1522826HHomogenization Tube A1 EA × 50RT
S1522826IPBF Spin Column (with 2 mL collection tube)1 EA × 50RT

Documentation

📋 Safety Data Sheet (SDS)

Comprehensive hazard, handling, storage, and regulatory compliance document.

Download SDS →

✅ Certificate of Analysis (COA)

Lot-specific quality data. Enter your lot number to retrieve the exact COA.

Look up COA →

📊 Datasheet

Quick-reference summary of product specifications and applications.

View datasheet →

🔬 Specification Sheet

Full quality attributes and acceptance criteria for this grade.

View spec sheet →

Advanced Data

Certificates(CoA,COO,BSE/TSE and Analysis Chart)
C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:

Find and download the COA for your product by matching the lot number on the packaging.

1 results found

Lot NumberCertificate TypeDateItem
ZJ26F0838268Certificate of AnalysisAug 12, 2026 S1522826
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