Xiao Xiaohu, Li Heping, Tang Chaorong
Key Lab of Rubber Biology, Ministry of Agriculture, Danzhou, Hainan, 571737, China.
Mol Biotechnol. 2009 May;42(1):91-9. doi: 10.1007/s12033-008-9139-3. Epub 2008 Dec 20.
cDNA amplified fragment length polymorphism (cDNA-AFLP) is a powerful transcript-profiling tool widely used in diverse plant species. When applied to a new biological system, however, existing protocols usually require substantial modifications. Furthermore, the usage of radioactive isotope in typical protocols excludes their application in many labs. Latex, as the cytoplasm of rubber-producing cells sees a critical role in elucidating rubber biosynthesis and its regulation in rubber tree (Hevea brasiliensis). This paper describes a detailed step-by-step silver-staining cDNA-AFLP procedure, which is suitable to latex transcript profiling analysis. Theoretical analysis revealed that with the combination of two restriction enzyme pairs (ApoI/MseI and TaqI/MseI), approximately 94% of latex whole transcriptome could be visualized. After varying multiple parameters, including the amounts of primary and secondary template usage, pre-amplification cycle number and gel development, we obtained a high-quality silver-staining fingerprint. In the ApoI/MseI system, an average of 88.6 discernable bands (100-1,000 bp) was produced for each selective primer pair, and 97.2 bands for another system (TaqI/MseI). TaqI/MseI was the first pair of 4-bp cutters used in cDNA-AFLP analysis and proved to be efficient and reliable. The sensitivity and reliability of our method were further verified by an application example in detecting differential gene expression in the latex of Hevea tree.
互补DNA扩增片段长度多态性(cDNA-AFLP)是一种功能强大的转录本分析工具,广泛应用于多种植物物种。然而,当应用于一个新的生物系统时,现有的实验方案通常需要大量修改。此外,典型实验方案中放射性同位素的使用限制了其在许多实验室的应用。乳胶作为产胶细胞的细胞质,在阐明橡胶树(巴西橡胶树)的橡胶生物合成及其调控中起着关键作用。本文描述了一种详细的逐步银染cDNA-AFLP程序,适用于乳胶转录本分析。理论分析表明,结合两种限制性酶对(ApoI/MseI和TaqI/MseI),大约94%的乳胶全转录组可以被可视化。在改变多个参数后,包括一级和二级模板的使用量、预扩增循环数和凝胶显影,我们获得了高质量的银染指纹图谱。在ApoI/MseI系统中,每个选择性引物对平均产生88.6条可分辨条带(100-1000 bp),另一个系统(TaqI/MseI)为97.2条。TaqI/MseI是第一对用于cDNA-AFLP分析的4碱基切割酶,被证明是高效可靠的。通过一个在巴西橡胶树乳胶中检测差异基因表达的应用实例,进一步验证了我们方法的灵敏度和可靠性。