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PCR Amplification Protocol for GC Rich Protamine Gene from Chicken Testis cDNA

机译:鸡睾丸cDNA中富含GC的鱼精蛋白基因的PCR扩增方案

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Amplification of GC rich templates using PCR is usually difficult compared to non-GCrich targets. GC rich regions produce complex inter and intra strand folding (hairpins and loops) due to higher hydrogen bonding with neighbouring cytosine and guanine. These secondary structures in DNA are resistant to melting and cause Taq DNA polymerases to stall; they also hamper primer annealing, resulting in incomplete or non-specific amplifications. The aim of this study was to develop an easy PCR protocol to amplify very high GC rich (88% in the coding region) protamine gene of chicken. The cDNA used for amplification was synthesised from testis RNA and PCR products were detected by agarose gel electrophoresis. Protamine amplicon successfully amplified only with Go Taq DNA polymerase in the presence of DMSO. Optimization of MgCl2 concentration, buffer strength, annealing temperature, DMSO and the DNA template concentration, were important in the PCR reaction resulting in successful amplification. In addition, PCR started directly at hot plate is also important to get rid of primer-dimer formation
机译:与非GCrich靶相比,使用PCR扩增GC丰富的模板通常比较困难。由于与相邻胞嘧啶和鸟嘌呤的氢键较高,富含GC的区域会产生复杂的链间和链内折叠(发夹和环)。 DNA中的这些二级结构具有抗熔性,并导致Taq DNA聚合酶失速。它们还会阻碍引物退火,导致扩增不完全或非特异性。这项研究的目的是开发一种简单的PCR方案,以扩增鸡中非常高的GC丰富度(在编码区域中占88%)的鱼精蛋白基因。从睾丸RNA合成用于扩增的cDNA,并通过琼脂糖凝胶电泳检测PCR产物。在DMSO存在下,仅用Go Taq DNA聚合酶成功扩增了鱼精蛋白扩增子。 MgCl2浓度,缓冲液强度,退火温度,DMSO和DNA模板浓度的优化对PCR反应至关重要,因此可以成功扩增。此外,直接在热板上启动PCR对于消除引物二聚体的形成也很重要

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