qPCR Setup Protocol
Using Solarbio 2×SYBR Green qPCR Master Mix (SR1110) or 2×TaqMan qPCR Master Mix (SR1120). This protocol covers both two-step RT-qPCR (cDNA template) and direct DNA qPCR.
Equipment and Reagents Checklist
| Item |
Recommended Product |
Notes |
| 2×SYBR Green qPCR Master Mix |
SR1110 (Solarbio) |
Includes ROX; verify instrument ROX requirements |
| 2×TaqMan qPCR Master Mix |
SR1120 (Solarbio) |
Includes ROX; for probe-based assays |
| Nuclease-free water |
R1600 (Solarbio) |
DEPC-treated or ultra-pure |
| cDNA template |
PC1170-generated (Solarbio) |
Diluted 1:5–1:20 in nuclease-free water |
| qPCR tubes/plate |
0.1 or 0.2 mL thin-wall |
White plates improve fluorescence detection |
| Optical seal |
Transparent adhesive film |
Ensure no bubbles over wells |
| Real-time PCR instrument |
ABI 7500, Bio-Rad CFX96, Roche LC480, etc. |
— |
| Pipettes (0.5–10 μL, 10–100 μL) |
Calibrated ±2% accuracy |
Pre-wet tips before aspirating master mix |
Primer and Probe Design
SYBR Green Primers
| Parameter |
Recommendation |
Verification Method |
| Amplicon length |
70–200 bp |
Check by gel or melt curve |
| Primer length |
18–24 nt |
In silico analysis |
| GC content |
40–60% |
OligoAnalyzer / Primer3 |
| Tm |
58–62°C |
Nearest-neighbor calculation |
| Tm difference (pair) |
≤2°C |
Compare forward/reverse |
| 3′ stability |
≤3 G/C in last 5 bases |
Manual check |
| Avoid |
≥4 consecutive G residues |
In silico |
| Avoid |
Primer-primer complementarity (3′ end) |
Check with AutoDimer or Primer-BLAST |
TaqMan Probe
| Parameter |
Recommendation |
| Probe length |
18–25 nt |
| Primary Tm |
68–70°C (10°C above primers) |
| GC content |
40–50% |
| Reporter dye (5′) |
FAM, VIC, or HEX |
| Quencher (3′) |
BHQ-1 (FAM, VIC) or TAMRA |
| Avoid |
≥4 consecutive G bases (reduces fluorescence) |
| Avoid |
5′ end must not be G (quenches reporter) |
| Secondary structure |
Check with mFold (ΔG > −3 kcal/mol) |
| Concentration (final) |
0.1–0.3 μM |
Reaction Setup (20 μL)
SYBR Green
| Component |
Volume (20 μL) |
Final Concentration |
Notes |
| 2× SYBR Green qPCR Master Mix |
10 μL |
1× |
Contains polymerase, dNTPs, SYBR, ROX |
| Forward primer (10 μM) |
0.4–0.6 μL |
0.2–0.3 μM |
Start at 0.3 μM; optimize 0.1–0.5 μM |
| Reverse primer (10 μM) |
0.4–0.6 μL |
0.2–0.3 μM |
Keep forward:reverse ratio 1:1 |
| Template cDNA |
1–2 μL |
1–100 ng |
Dilute cDNA 1:5 to 1:20 |
| Nuclease-free water |
To 20 μL |
— |
— |
Important: Prepare a master mix (all components except template) for reproducibility. Include ≥10% excess volume.
TaqMan
| Component |
Volume (20 μL) |
Final Concentration |
| 2× TaqMan qPCR Master Mix |
10 μL |
1× |
| Forward primer (10 μM) |
0.4 μL |
0.2 μM |
| Reverse primer (10 μM) |
0.4 μL |
0.2 μM |
| Probe (10 μM) |
0.3 μL |
0.15 μM |
| Template cDNA |
2 μL |
1–100 ng |
| Nuclease-free water |
To 20 μL |
— |
ROX Adjustment (if needed)
| Instrument Requirement |
Action |
| High ROX (ABI 7500, QuantStudio) |
Use SR1110/SR1120 as-is |
| No ROX (Bio-Rad CFX, Roche LC480) |
Use as-is; ROX channel ignored |
| Passive reference not used |
Disable ROX detection on instrument software |
Experimental Controls
| Control Type |
Composition |
Expected Result |
Purpose |
| NTC (no-template control) |
Water instead of template |
No Ct or Ct > 38 |
Detects contamination |
| NRT (no-RT control) |
RNA sample without RT enzyme |
No Ct or Ct > 35 |
Detects gDNA contamination |
| Positive control |
Known template + validated primers |
Ct consistent (±0.5) |
Validates assay function |
| Inter-run calibrator |
Aliquoted reference sample |
Ct SD < 0.5 across runs |
Normalizes between plates |
Thermal Cycling
| Step |
Temperature |
Time |
Cycles |
| Polymerase activation |
95°C |
2 min |
1 |
| Denaturation |
95°C |
10–15 s |
40 |
| Anneal/Extend (plate read) |
60°C |
30 s (45 s for TaqMan) |
40 |
| Melt curve (SYBR only) |
65–95°C, 0.5°C step |
5 s each step |
1 |
Fast Cycling Protocol (compatible with SR1110/SR1120)
| Step |
Temperature |
Time |
Cycles |
| Polymerase activation |
95°C |
30 s |
1 |
| Denaturation |
95°C |
3–5 s |
40 |
| Anneal/Extend (read) |
60°C |
15–20 s |
40 |
| Total run time |
— |
~35 min |
— |
Note: Fast protocol requires a fast thermal cycler (ABI 7500 Fast, Bio-Rad CFX96).
Standard Curve Preparation
Protocol
- Prepare a 10-fold dilution series of the standard (plasmid, gBlock, or validated cDNA) covering 5–7 logs
- Typical dilution range: 10⁷ to 10¹ copies/μL (or 1:10 serial dilution of high-abundance cDNA)
- Run each dilution in triplicate
Standard Curve Layout Example
| Dilution |
Expected Copies/Reaction |
Expected Ct (100% efficiency) |
| 10⁷ |
2 × 10⁷ |
~15 |
| 10⁶ |
2 × 10⁶ |
~18.3 |
| 10⁵ |
2 × 10⁵ |
~21.7 |
| 10⁴ |
2 × 10⁴ |
~25 |
| 10³ |
2 × 10³ |
~28.3 |
| 10² |
2 × 10² |
~31.7 |
| 10¹ |
2 × 10¹ |
~35 |
| NTC |
0 |
Undetermined |
Data Analysis
Standard Curve Method
| Parameter |
Requirement |
| Efficiency |
90–110% (slope −3.6 to −3.1) |
| R² |
≥0.99 |
| Dynamic range |
≥5 logs |
| NTC (no-template control) |
Ct > 38 or no amplification |
| Ct SD within replicates |
≤ 0.25 at > 100 copies |
ΔΔCt Relative Quantification
| Formula |
Description |
| ΔCt = Ct(target) − Ct(reference) |
Normalization to housekeeping gene |
| ΔΔCt = ΔCt(sample) − ΔCt(calibrator) |
Fold change relative to calibrator |
| Fold change = 2^(-ΔΔCt) |
Assuming 100% amplification efficiency |
Assumptions for ΔΔCt:
- Both target and reference genes amplify with ≥ 95% efficiency
- Efficiency difference between target and reference ≤ 0.1
- Reference gene expression is stable across all experimental conditions
Melting Curve Analysis (SYBR Green Only)
| Observation |
Interpretation |
Action |
| Single peak at predicted Tm |
Specific amplification |
OK |
| Double peak (Tm difference < 2°C) |
Two close amplicons |
Redesign primers; increase annealing Tm |
| Peak at 70–75°C |
Primer-dimer |
Reduce primers to 0.15 μM; redesign |
| Broad peak |
Non-specific amplification |
Run gel; increase annealing temperature |
| Peak at Tm > 85°C |
Possible gDNA amplification |
Use intron-spanning primers; DNase treat |
Troubleshooting
| Issue |
Cause |
Solution |
| No amplification |
Probe degraded |
Re-order probe; check storage at -20°C dark |
|
No cDNA |
Verify RT reaction success (run positive control) |
|
cDNA diluted too much |
Reduce dilution; use neat cDNA |
|
Inhibitor present |
Dilute cDNA 1:10 or 1:20 |
| High Ct (>35) |
Low expression target |
Increase cDNA to 100 ng per 20 μL reaction |
|
Inefficient primers |
Check efficiency; redesign if < 90% |
|
Poor RNA quality |
Check RIN; re-extract if RIN < 5 |
|
ROX/primer mismatch |
Verify instrument ROX settings |
| Non-specific amplification |
Primer dimer |
Reduce primers to 0.1–0.2 μM; melt curve analysis |
|
gDNA contamination |
DNase treat RNA; use intron-spanning primers |
|
Annealing temperature too low |
Increase to 62°C; test gradient 58–65°C |
| Poor efficiency (< 80%) |
Inhibitor in sample |
Dilute cDNA 1:10; purify template |
|
ROX mismatch |
Verify instrument ROX configuration |
|
Pipetting error |
Calibrate pipettes; pre-wet tips; use master mix |
| High replicate variability |
Inconsistent pipetting |
Use larger volume (20 μL); pre-wet tips |
|
Evaporation at plate edges |
Use adhesive seal; pre-warm lid to 105°C |
|
Uneven thermal block |
Use center wells; avoid edge wells for critical samples |
| Late Ct in NTC |
Contamination (amplicon or plasmid) |
Replace water; UV work area; use fresh tips |
|
Primer-dimer amplified |
Reduce primer concentration |
| Baseline drift |
Background adjustment incorrect |
Set baseline cycles 3–15 manually |
5.1 NTC Acceptance Criteria
| Chemistry |
NTC Requirement |
Action if Failed |
| SYBR Green |
Ct > 38 or undetermined |
Redesign primers; re-purify or replace reagents |
| TaqMan |
Ct > 40 or undetermined |
Check for probe degradation; check for target contamination |
| RT-qPCR |
NRT Ct — ΔCt > 10 vs. RT+ |
DNase treat RNA; redesign primers |
▶ Related Protocol: PCR Setup Guide
▶ See also: Real-Time PCR Reagents Technical Spec
▶ See also: Reverse Transcription Reagents
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