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High-throughput applicable genomic sex typing of chicken by TaqMan real-time quantitative polymerase chain reaction

机译:TaqMan实时定量聚合酶链反应用于鸡的高通量适用基因组性别分型

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摘要

Genetic sex typing of vertebrate animals is an essential technique for research on reproductive phenomena such as sex determination of embryonic tissues. Polymerase chain reaction amplification of genomic DNA segments in the Z and W sex chromosomes has been widely used as a standard laboratory method to determine genetic sex of the chicken (Gallus gallus domesticus). However, conventional protocols for PCR determination of avian sex typically involve tedious steps of genomic DNA isolation, which often require relatively large amounts of tissue samples, and the purity of genomic DNA specimens significantly affects PCR efficiency. Moreover, detection of sex chromosome-specific PCR products by gel electrophoresis is prone to misjudgment caused by amplification of contaminating genomic DNA segments derived from tissue or DNA samples as well as previously generated PCR products. Thus, the credibility of genetic sex typing by conventional PCR-based methods that measure the relative amounts of the end product DNA amplicons critically depends on several experimental steps that are potentially vulnerable to errors. Here, we describe an optimized protocol of chicken genetic sex typing by TaqMan real-time quantitative PCR amplification of markers on the sex chromosomes. This TaqMan sex typing method accurately quantifies relative amounts of the Z and W sex chromosome markers directly from only 0.5 to 2 mu L of total blood lysate without nucleic acid purification. The real-time amplification curves of the quantitative PCR reaction readily distinguishe truly homozygous (ZZ) and heterozygous (ZW) sex chromosomes from contamination of the sex chromosomal DNA, ensuring highly credible sex determination. Thus, the TaqMan typing of chicken genetic sex has several advantageous features for high-throughput operation compared with conventional methods.
机译:脊椎动物的遗传性别分型是研究生殖现象(如确定胚胎组织的性别)的一项必不可少的技术。 Z和W性染色体中基因组DNA片段的聚合酶链反应扩增已广泛用作确定鸡(Gallus gallus domesticus)遗传性别的标准实验室方法。然而,用于PCR确定禽类性别的常规方案通常涉及基因组DNA分离的繁琐步骤,这通常需要相对大量的组织样品,并且基因组DNA样品的纯度显着影响PCR效率。而且,通过凝胶电泳检测性染色体特异性PCR产物易于因扩增源自组织或DNA样品的污染性基因组DNA片段以及先前产生的PCR产物而引起误判。因此,通过常规的基于PCR的方法(可测量最终产物DNA扩增子的相对量)进行遗传性别分型的可信性,关键取决于几个可能容易出错的实验步骤。在这里,我们描述了通过TaqMan实时定量PCR扩增性染色体上的标记进行鸡遗传性别分型的优化协议。这种TaqMan性分型方法可直接从0.5至2μL的总血液裂解物中直接准确定量Z和W性染色体标记的相对量,而无需进行核酸纯化。定量PCR反应的实时扩增曲线可轻松将真正的纯合(ZZ)和杂合(ZW)性染色体与性染色体DNA的污染区分开,确保高度可靠的性别确定。因此,与常规方法相比,TaqMan分型的鸡遗传性具有高通量操作的几个有利特征。

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