Product Catalog

TransScript® Uni One-Step gDNA Removal and cDNA Synthesis SuperMix

Catalog Number: AU311-02

Price:Please inquire first

Specification:
50 rxns×20 µl system
100 rxns×20 µl syetem

Product Details

TransScript®-Uni RT is an improved version of M-MLV reverse transcriptase with broad range of reaction temperature(42°C-65°C) and higher thermostability. The suggested reaction temperature is 50°C. The SuperMix contains reagents for simultaneous genomic DNA removal and cDNA synthesis. After cDNA synthesis, gDNA remover and reverse transcriptase are inactivated by heating at 85°C for 5 seconds.

• Broad range reaction temperature (42°C -65°C ) .
• Simultaneous genomic DNA removal and cDNA synthesis in one tube to minimize RNA contamination.
• The product obtained from 15 minutes reaction is used for qPCR; the product obtained from 30 minutes reaction is used for PCR.
• cDNA up to 20 kb.

Applications
• Multiple copy and low copy gene detection
• GC-rich or complex secondary structure RNA template
• cDNA library construction, primer extension, 3’ and 5’ RACE

Storage
at -20 ℃ for two years

Shipping
Dry ice (-70 ℃)


Product Composition


Component   AU311-02 (50 rxns)   AU311-03 (100 rxns)
TransScript® -Uni RT/RI Enzyme Mix                            50 μl                            100 μl
gDNA Remover                            50 μl                            100 μl
2×TS-Uni Reaction Mix                          500 μl                               1 ml
Random Primer(N9) (0.1 μg/μl)                            50 μl                            100 μl
Anchored Oligo(dT)20 Primer (0.5 μg/μl)                            50 μl                            100 μl
RNase-free Water                          500 μl                               1 ml


References

1 Li C, Guan H, Jing X, et al. Genomic insights into historical improvement of heterotic groups during modern hybrid maize breeding[J]. Nature Plants, 2022.(IF 17.35)

2 Chen L, Zhang C, Ma W, et al. METTL3-mediated m6A modification stabilizes TERRA and maintains telomere stability[J]. Nucleic Acids Research, 2022.(IF 19.16)

3 Wang Y, Gong Q, Wu Y, et al. A calmodulin-binding transcription factor links calcium signaling to antiviral RNAi defense in plants[J]. Cell Host & Microbe, 2021.(IF 21.02)

4 Kumar S, Wang G, Liu W, et al. Hypoxia-induced mitogenic factor promotes cardiac hypertrophy via calcium-dependent and hypoxia-inducible factor-1α mechanisms[J]. Hypertension, 2018.(IF 6.82)


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