Technical Specification: Reverse Transcription Reagents
Official Source
Technical documentation published by Beijing Solarbio Science & Technology Co., Ltd. For product procurement and custom orders: solarbio.store | solarbio.store
1. Product Range
| Product |
SKU |
Chemistry |
Feature |
Best For |
| First-Strand cDNA Synthesis Kit |
PC1170 |
M-MLV RT (RNase H⁻) |
Random hexamer + oligo-dT₁₈, 2-step RT |
Gene expression, cloning, qPCR template |
| 2×SYBR Green RT-qPCR Kit |
SR1130 |
M-MLV RT + Hot-start Taq |
One-step SYBR Green RT-qPCR |
RNA quantification, fast workflow |
| 2×TaqMan RT-qPCR Kit |
SR1140 |
M-MLV RT + Hot-start Taq |
One-step TaqMan RT-qPCR |
RNA virus detection, multiplex |
1.1 Key Advantages of Solarbio RT Reagents
| Advantage |
Details |
| RNase H⁻ mutant M-MLV |
5× higher thermal stability than wild-type M-MLV; retains activity at 50°C for GC-rich RNA templates |
| Combined hexamer + oligo-dT priming |
Uniform coverage across mRNA length; improved 5′ end representation vs. oligo-dT alone |
| RNase inhibitor included |
Porcine RNase inhibitor (RNasin homolog) — protects RNA during reaction setup |
| One-step kits (SR1130/SR1140) |
No separate cDNA step reduces hands-on time by 60 min; minimizes pipetting errors |
| Long cDNA synthesis |
Full-length cDNA up to 7 kb (PC1170) with optimized extension time |
2. Enzyme Specifications (PC1170)
2.1 M-MLV Reverse Transcriptase (RNase H⁻)
| Parameter |
Specification |
| Reverse transcriptase |
M-MLV (RNase H⁻ mutant) — point mutation in RNase H domain |
| Molecular weight |
76 kDa (monomer) |
| Optimal temperature |
37–42°C standard; up to 50°C with GC-rich or structured RNA |
| Optimal pH |
8.3 (Tris-HCl) at 37°C |
| DTT requirement |
5 mM (included in 2× buffer) |
| Input RNA |
10 pg – 5 μg total RNA; 1 pg – 500 ng poly(A)+ mRNA |
| Reaction time |
30 min (standard), up to 60 min (GC-rich, long template) |
| Inactivation |
70°C, 10 min (irreversible denaturation) |
| Primers supplied |
Random hexamer (50 μM) + Oligo-dT₁₈ (50 μM) — 1:1 ratio in primer mix |
| Reaction volume |
20 μL (standard), scalable to 100 μL |
| cDNA length |
Up to 7 kb (with optimized 60 min extension) |
2.2 The Reverse Transcription Reaction
The reverse transcription reaction catalyzed by M-MLV RT follows:
[
\text{RNA} + \text{Primer} \xrightarrow{\text{M-MLV RT, dNTPs, Mg}^{2+}} \text{RNA/DNA hybrid} + \text{PP}_i
]
The reaction is a three-step process:
- Primer annealing (25°C, 10 min): Random hexamers and/or oligo-dT₁₈ hybridize to complementary sequences on the RNA template
- Extension (42–50°C, 30–60 min): M-MLV RT extends the 3′-OH of the primer, incorporating dNTPs complementary to the RNA template. The RNase H⁻ mutation prevents degradation of the RNA template during first-strand synthesis, allowing full-length cDNA generation
- Inactivation (70°C, 10 min): Heat denaturation inactivates the RT enzyme and dissociates the RNA/cDNA hybrid
2.3 Priming Strategy Comparison
| Primer Type |
Mechanism |
Best For |
5′/3′ Bias |
| Oligo-dT₁₈ |
Anneals to poly(A) tail of mRNA |
Full-length mRNA, 3′ gene expression |
3′ biased |
| Random hexamers (N₆) |
Anneals to random complementary 6-mer sequences throughout all RNA species |
Total RNA (including rRNA, viral RNA), 5′ coverage of long transcripts |
Even coverage (5′-3′) |
| Gene-specific primers |
Anneals to specific RNA sequence |
Single-gene RT-qPCR, viral RNA detection |
Target-specific |
| Combined (hexamer + oligo-dT) |
Both mechanisms active simultaneously |
Uniform 5′-3′ coverage, standard gene expression |
Balanced (recommended default) |
2.4 M-MLV (RNase H⁻) vs. Wild-Type M-MLV
| Property |
Wild-Type M-MLV |
RNase H⁻ Mutant (PC1170) |
| RNase H activity |
Present (degrades RNA in RNA/DNA hybrid) |
<0.5% residual |
| Processivity |
~150 nt |
~350 nt |
| Optimal temperature |
37°C |
42°C (active to 50°C) |
| Half-life at 50°C |
<5 min |
~30 min |
| cDNA yield (from 5 kb template) |
Reference (1×) |
2–3× higher |
| Full-length cDNA (≥ 5 kb) |
Variable |
Consistent |
3. Two-Step RT-qPCR Workflow
3.1 Recommended cDNA Synthesis Setup (PC1170)
| Component |
Volume (20 μL) |
Final Concentration / Amount |
| Total RNA |
Variable |
10 pg – 5 μg (1 μg recommended for standard qPCR) |
| 2× RT Buffer (includes dNTPs, DTT, Mg²⁺) |
10 μL |
1× |
| Primer Mix (random hexamer + oligo-dT₁₈) |
1 μL |
2.5 μM each |
| M-MLV RT (RNase H⁻) |
1 μL |
200 U |
| RNase inhibitor |
0.5 μL |
20 U |
| RNase-free water |
To 20 μL |
— |
3.2 Thermal Protocol
| Step |
Temperature |
Time |
Purpose |
| Primer annealing |
25°C |
10 min |
Allow random hexamers to anneal (not required for oligo-dT only) |
| Extension |
42°C |
30–60 min |
First-strand cDNA synthesis |
| Inactivation |
70°C |
10 min |
Heat-inactivate M-MLV RT and dissociate RNA/cDNA hybrid |
| Hold |
4°C |
∞ |
|
3.3 cDNA Dilution and Storage
| Application |
Recommended cDNA Dilution |
Volume per qPCR (20 μL) |
| Standard gene expression (abundant targets) |
1:10 |
2 μL |
| Low-expression targets |
1:2–1:5 |
2–4 μL |
| Single-cell RT-qPCR |
Undiluted |
5 μL (max 10% of reaction volume) |
| Long-term storage |
−20°C (≤ 6 months) or −80°C (≥ 2 years) |
Aliquot to avoid freeze-thaw |
3.4 No-RT Control
Always include a no-reverse-transcriptase (NRT) control for each RNA sample to assess genomic DNA contamination:
| NRT Reaction |
Expected Result |
Interpretation |
| All components except M-MLV RT |
Ct ≥ 35 or undetermined |
No significant gDNA contamination |
| NRT Ct < 33 |
gDNA present |
Treat RNA with DNase I; redesign primers to span introns |
4. One-Step RT-qPCR Kits (SR1130/SR1140)
4.1 Reaction Setup
| Component |
Volume (20 μL) |
Final |
| 2× One-Step RT-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) — for TaqMan only |
0.3 μL |
0.15 μM |
| RNA template |
1–5 μL |
10 pg – 1 μg |
| RT enzyme mix |
0.5 μL |
— |
| ROX (if required) |
0.4 μL |
1× |
| RNase-free water |
To 20 μL |
— |
4.2 One-Step Thermal Protocol
| Step |
Temperature |
Time |
Cycles |
| Reverse transcription |
50°C |
15 min |
1 |
| RT inactivation + Polymerase activation |
95°C |
2 min |
1 |
| Denaturation |
95°C |
10–15 s |
40 |
| Annealing/Extension (+ read) |
60°C |
30–45 s |
40 |
| Melt curve (SYBR only) |
65–95°C, 5 s/step |
— |
1 |
4.3 One-Step vs. Two-Step RT-qPCR Comparison
| Factor |
One-Step (SR1130/SR1140) |
Two-Step (PC1170 + SR1110) |
| Time to result |
1.5 h |
3–3.5 h |
| Hands-on time |
10 min |
30 min |
| Sensitivity |
Equivalent |
Equivalent |
| Multiplex targets |
Up to 4 (TaqMan) |
Up to 4 (TaqMan) |
| Replicate RNA samples in qPCR |
No (single RNA per reaction) |
Yes (aliquots of same cDNA) |
| Archival cDNA for future assays |
No |
Yes |
| Flexibility to test different genes later |
Limited |
High (cDNA bank) |
| RNA secondary structure handling |
50°C RT, 15 min |
42°C, 30–60 min (better for structured RNA) |
5. Troubleshooting
| Issue |
Cause |
Solution |
| No cDNA / high Ct in qPCR |
RNA degraded |
Check RNA integrity (gel/RIN); use fresh RNA |
|
RT enzyme inactive |
Store at -20°C; avoid freeze-thaw; check expiry |
|
RNase contamination |
Use fresh aliquots of RNase-free water; change gloves |
|
Inhibitor in RNA eluate |
Reduce RNA input; dilute RNA 1:5; re-purify RNA |
| Low signal in downstream qPCR |
RNA input too low |
Increase RNA to 1–2 μg (PC1170); use 0.5 μg minimum |
|
Priming suboptimal |
Use combined hexamer + oligo-dT; consider gene-specific primers |
|
GC-rich RNA fails to reverse transcribe |
Increase RT temperature to 50°C; extend to 60 min |
| Late Ct in NRT control |
Genomic DNA contamination |
DNase treat RNA; use intron-spanning primers; include NRT control |
| Multiple melt peaks in SYBR RT-qPCR |
Non-specific RT priming |
Reduce primer concentration; increase RT temperature gradually |
|
gDNA amplification |
Design primers spanning exon-exon junctions |
|
RNA degradation fragments |
Check RNA quality; re-extract if necessary |
| cDNA sheared / < 1 kb |
RNase contamination during setup |
Use fresh gloves, sterile bench, DEPC-treated water |
|
Excessive heating at 70°C |
Do not exceed 70°C for 10 min |
|
Prolonged storage at 4°C |
Store cDNA at -20°C; avoid 4°C for > 24 h |
▶ Related Protocol: qPCR Setup Guide
▶ See also: RNA Extraction Kits
▶ See also: Real-Time PCR Reagents
For product procurement and technical support: solarbio.store | solarbio.store