TransScript® One-Step gDNA Removal and cDNA Synthesis SuperMix
TransScript一步法去除gDNA及第一链cDNA合成试剂盒
目录号: AT311-02
单 价:¥1160
产品详情介绍
本产品以RNA为模板,在同一反应体系中,合成第一链cDNA的同时去除RNA模板中残留的基因组DNA。反应结束后,只需在85℃加热2分钟,即可同时失活TranScript® RT/RI与gDNA Remover。

使用前请将各组分点甩离心
产品稳定性

使用不同批次产品分别以人总RNA为模板,进行RT-PCR检测,1.0%琼脂糖凝胶电泳分析反转录效果。

使用不同批次产品分别以人100 ng总RNA、人100 ng总RNA+200 ng gDNA、200 ng gDNA为模板,进行RT-PCR检测,1.0%琼脂糖凝胶电泳分析模板DNA去除效果;qRT-PCR检测18S RNA表达量。
与竞品的比较

使用TransGen、Company TA和Company TH产品,分别以人100 ng总RNA、人100 ng总RNA+200 ng gDNA、200 ng gDNA为模板,进行RT-PCR检测, 1.0%琼脂糖凝胶电泳分析模板DNA去除效果;qRT-PCR检测18S RNA表达量。
1.Gong Q, Wang Y, He L, et al. Molecular basis of methyl-salicylate-mediated plant airborne defence[J]. Nature, 2023.(IF 64.80)
2.Wang J Z, Chen T Y, Zhang Z D, et al. Remodelling autoactive NLRs for broad-spectrum immunity in plants [J]. Nature, 2025.(IF 48.50)
3.Guan J, Wang G, Wang J, et al. Chemical reprogramming of human somatic cells to pluripotent stem cells[J]. Nature, 2022.(IF 49.00)
4.Wang S, Du Y, Zhang B, et al. Transplantation of chemically induced pluripotent stem-cell-derived islets under abdominal anterior rectus sheath in a type 1 diabetes patient[J]. Cell, 2024.(IF 45.50)
5.Zhao P Z, Yang H, Sun J Y, et al. Targeted MYC2 stabilization confers citrus Huanglongbing resistance [J]. Science, 2025.(IF 44.70)
6.Chen J, Ou Y, Luo R, et al. SAR1B senses leucine levels to regulate mTORC1 signalling[J]. Nature, 2021.(IF 42.77)
7.Chen J, Ou Y, Yang Y, et al. KLHL22 activates amino-acid-dependent mTORC1 signalling to promote tumorigenesis and ageing[J]. Nature, 2018.(IF 40.13)
8.Zhao K, Xue H, Li G, et al. Pangenome analysis reveals structural variation associated with seed size and weight traits in peanut[J]. Nature genetics, 2025.(IF 31.80)
9.Liu S, Liu C, Lv X, et al. The chemokine CCL1 triggers an AMFR-SPRY1 pathway that promotes differentiation of lung fibroblasts into myofibroblasts and drives pulmonary fibrosis[J]. Immunity, 2021.(IF 31.74)
10.Huang L, Wei M, Li H, et al. GP73-dependent regulation of exosome biogenesis promotes colorectal cancer liver metastasis[J]. Molecular Cancer, 2025.(IF 27.70)
11.Fan H, Quan S, Ye Q, et al. A molecular framework underlying low-nitrogen-induced early leaf senescence in Arabidopsis thaliana[J]. Molecular Plant, 2023.(IF 27.50)
12.Zhu J, Zhong X, He H, et al. Generation of human expandable limb-bud-like progenitors via chemically induced dedifferentiation[J]. Cell Stem Cell, 2024.(IF 19.80)
13.Wang R, Xue Y, Fan J, et al. A systems genetics approach reveals PbrNSC as a regulator of lignin and cellulose biosynthesis in stone cells of pear fruit[J]. Genome Biology, 2021.(IF 17.90)
14.Zhang Y, Chen W, Wu D, et al. Molecular basis for cell-wall recycling regulation by transcriptional repressor MurR in Escherichia coli[J]. Nucleic acids research, 2022.(IF 16.97)
15.Wang Z, Sheng C, Kan G, et al. RNAi Screening Identifies that TEX10 Promotes the Proliferation of Colorectal Cancer Cells by Increasing NF‐κB Activation[J]. Advanced Science, 2020.(IF 15.84)
16.Zhao M, Wang B, Zhang C, et al. The DJ1-Nrf2-STING axis mediates the neuroprotective effects of Withaferin A in Parkinson’s disease[J]. Cell Death & Differentiation, 2021.(IF 15.82)
17.Liu J C, Li L, Yan H C, et al. Identification of oxidative stress–related Xdh gene as a di (2‐ethylhexyl) phthalate (DEHP) target and the use of melatonin to alleviate the DEHP‐induced impairments in newborn mouse ovaries[J]. Journal of pineal research, 2019.(IF 15.22)
18.Zhang C, Wang Y, Zhen Z, et al. mTORC1 Mediates Biphasic Mechano‐Response to Orchestrate Adhesion‐Dependent Cell Growth and Anoikis Resistance[J]. Advanced Science, 2023.(IF 15.10)





