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PCR Setup Protocol

Using Solarbio 2×Taq PCR MasterMix (PC1150). This protocol is suitable for routine genotyping, colony PCR, and amplicon generation from genomic DNA, plasmid DNA, or cDNA.

Materials Required

Item Recommended Product Alternative
2×Taq PCR MasterMix PC1150 (Solarbio)
Forward primer (10 μM) User-supplied Desalted or HPLC-purified
Reverse primer (10 μM) User-supplied Desalted or HPLC-purified
Template DNA User-prepared (see concentration guide below)
Nuclease-free water Solarbio R1600 DEPC-treated water
PCR tubes (0.2 mL) Thin-wall, flat-cap, DNase/RNase-free 0.2 mL strip tubes or 96-well plate
Thermal cycler Any standard model (Bio-Rad T100, ABI Veriti, Eppendorf Mastercycler)
Ice Cold block

Template DNA Concentration Guide

Template Type Recommended Amount per 50 μL Typical Purity Requirement
Genomic DNA (mammalian) 10–100 ng A₂₆₀/A₂₈₀ 1.8–2.0
Genomic DNA (bacterial) 10–100 ng A₂₆₀/A₂₈₀ 1.8–2.0
Plasmid DNA 0.1–10 ng A₂₆₀/A₂₈₀ 1.8–2.0
cDNA 0.1–1 μL (from 20 μL RT reaction)
Colony lysate 1–2 μL (supernatant from 50 μL water boil, 10 min)
Viral DNA 1–10 ng

Protocol

Step 1: Thaw and Mix

Thaw the 2×Taq PCR MasterMix, primers, and template on ice. Vortex each briefly (2–3 s) and centrifuge (5 s, 10,000×g) to collect contents. Keep all components on ice throughout setup to prevent premature polymerase activity and primer-dimer formation.

Time: 5 min.

Step 2: Calculate and Prepare Master Mix

Calculate the total number of reactions including a no-template control (NTC) and at least 10% excess volume for pipetting loss. Prepare a master mix without template:

Component Volume per 50 μL Reaction Per 10 Reactions (incl. NTC) Per 20 Reactions (incl. NTC)
2×Taq PCR MasterMix 25 μL 275 μL 550 μL
Forward primer (10 μM) 1 μL 11 μL 22 μL
Reverse primer (10 μM) 1 μL 11 μL 22 μL
Nuclease-free water 18 μL 198 μL 396 μL
Total master mix 45 μL 495 μL 990 μL

Note: For 2×Taq Plus (PC1155), 2×Taq HotStart (PC1160), and 2×High-Fidelity (PC1165), use the same volume ratios unless otherwise specified on the product label.

Time: 2 min.

Step 3: Distribute Mix

Vortex the master mix gently for 2 s. Dispense 45 μL into each PCR tube or well. Change tips between each tube to avoid cross-contamination.

Precaution: If using a 96-well plate, seal before proceeding to template addition. Use a fresh seal for template addition.

Time: 2 min.

Step 4: Add Template

Add 5 μL template DNA to each tube. For the NTC, add 5 μL nuclease-free water. Close tube caps immediately after adding template. For colony PCR: pick a single colony with a sterile pipette tip, streak on a replica plate, then dip the tip into the PCR tube.

Precaution: Change gloves after handling template DNA. Use positive-displacement pipettes for viscous genomic DNA.

Time: 3 min.

Step 5: Place in Thermal Cycler

Centrifuge tubes briefly (5 s) to collect liquid at the bottom. Transfer to the thermal cycler and start the program.

Step 6: Thermocycling

Select the program below based on your application:

Standard Protocol (default)

Step Temperature Time Cycles
Initial denaturation 95°C 3 min 1
Denaturation 95°C 30 s 30–35
Annealing Tm − 5°C (typically 55–65°C) 30 s 30–35
Extension 72°C 30–60 s/kb 30–35
Final extension 72°C 5 min 1
Hold 4°C

GC-Rich Template Protocol (GC content > 65%)

Step Temperature Time Cycles
Initial denaturation 98°C 3 min 1
Denaturation 98°C 15 s 32–35
Annealing 60–68°C (use touchdown) 30 s 32–35
Extension 72°C 45 s/kb 32–35
Final extension 72°C 7 min 1
Hold 4°C

Additives: Add DMSO to 3–5% (v/v) or betaine to 1 M final if GC > 70%.

Long Amplicon Protocol (> 3 kb)

Step Temperature Time Cycles
Initial denaturation 95°C 3 min 1
Denaturation 95°C 20 s 30
Annealing 58–62°C 30 s 30
Extension 72°C 1 min/kb (incremental +10 s/cycle after cycle 20) 30
Final extension 72°C 10 min 1
Hold 4°C

Use: 2×High-Fidelity PCR MasterMix (PC1165) for > 3 kb amplicons.

Touchdown Protocol (for difficult/specific targets)

Step Temperature Time Cycles
Initial denaturation 95°C 3 min 1
Touchdown (step 1) 95°C, 30 s → 68°C, 30 s → 72°C, 30 s/kb 5
Touchdown (step 2) 95°C, 30 s → 65°C, 30 s → 72°C, 30 s/kb 5
Touchdown (step 3) 95°C, 30 s → 62°C, 30 s → 72°C, 30 s/kb 5
Touchdown (step 4) 95°C, 30 s → 59°C, 30 s → 72°C, 30 s/kb 5
Amplification 95°C, 30 s → 57°C, 30 s → 72°C, 30 s/kb 15–20
Final extension 72°C 5 min 1
Hold 4°C

Primer Design Guidelines

Parameter Recommended Value
Length 18–25 nt
GC content 40–60%
Tm 55–65°C (use nearest-neighbor calculation)
Tm difference (pair) ≤5°C
3′ end End with G or C if possible (terminal GC clamp)
Avoid 3′ complementarity, long homopolymers (>4 nt), internal secondary structure (ΔG < −6 kcal/mol)
Amplicon length 100–3000 bp (standard Taq)
Concentration (final) 0.1–0.5 μM each primer
Hairpin stability ΔG > −3 kcal/mol (check with OligoAnalyzer or Primer3)

Quality Checks During Protocol

Step What to Verify Expected Result
After PCR Run 5 μL product on 1–2% agarose gel Single band at expected size
NTC well No template control No detectable band after 35 cycles
Positive control Known template with validated primers Band at expected size
Gel marker Ladder loaded alongside samples All marker bands visible

Expected Results

PCR Outcome Yield (per 50 μL) Interpretation
Single bright band 200–500 ng Successful amplification
Weak but single band 20–100 ng Low yield — optimize template or cycles
Multiple bands Non-specific — increase annealing temperature
Smear DNA degradation or excess template
No product See troubleshooting

Troubleshooting

Problem Possible Cause Solution
No amplification Poor primer design Redesign primers, check Tm
Template degraded Check template integrity by gel
PCR inhibitor present Dilute template 1:10, 1:100; add BSA 0.1 μg/μL
Taq polymerase inactivated Verify storage at -20°C; check expiration
Annealing temperature too high Lower 2–5°C; use gradient PCR
Non-specific bands Annealing temperature too low Increase by 2–5°C
Too many cycles Reduce to 28–30 cycles
Primer dimer Redesign primers, use hot-start
Mg²⁺ concentration too high Reduce to 2 mM (use MgCl₂ optimization)
Weak amplification Insufficient template Increase 2–5×
Extension time too short Increase to 1 min/kb
Too few cycles Increase to 38 cycles
Primers degraded Re-order or re-purify primers
Smear on gel Excessive template Dilute template
Degraded template Prepare fresh template
Voltage too high during electrophoresis Reduce to 5 V/cm
Primer-dimer present Excessive primer Reduce to 0.1–0.2 μM
Low template Increase template amount
Room temperature setup Keep all components on ice
Bands in NTC Contamination Use fresh water, filter tips; UV-decontaminate PCR hood

▶ Related Protocol: qPCR Setup Guide ▶ See also: PCR Master Mix Technical Spec

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