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Heteroduplex molecules cause sexing errors in a standard molecular protocol for avian sexing

机译:异源双链分子在禽类性别鉴定的标准分子方案中引起性别鉴定错误

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Molecular methods are a necessary tool for sexing monomorphic birds. These molecular approaches are usually reliable, but sexing protocols should be evaluated carefully because biochemical interactions may lead to errors. We optimized laboratory protocols for genetic sexing of a monomorphic shorebird, the upland sandpiper (Bartramia longicauda), using two independent sets of primers, P2/P8 and 2550F/2718R, to amplify regions of the sex-linked CHD-Z and CHD-W genes. We discovered polymorphisms in the region of the CHD-Z intron amplified by the primers P2/P8 which caused four males to be misidentified as females (n = 90 mated pairs). We cloned and sequenced one CHD-W allele (370 bp) and three CHD-Z alleles in our population: Z degrees (335 bp), Z' (331 bp) and Z' (330 bp). Normal (Z degrees Z degrees) males showed one band in agarose gel analysis and were easily differentiated from females (Z degrees W), which showed two bands. However, males heterozygous for CHD-Z alleles (Z'Z') unexpectedly showed two bands in a pattern similar to females. While the Z' and Z' fragments contained only short deletions, they annealed together during the polymerase chain reaction (PCR) process and formed heteroduplex molecules that were similar in size to the W fragment. Errors previously reported for molecular sex-assignment have usually been due to allelic dropout, causing females to be misidentified as males. Here, we report evidence that events in PCRs can lead to the opposite error, with males misidentified as females. We recommend use of multiple primer sets and large samples of known-sex birds for validation when designing protocols for molecular sex analysis.
机译:分子方法是对单态鸟类进行性别鉴定的必要工具。这些分子方法通常是可靠的,但由于生化相互作用可能会导致错误,因此应仔细评估性别方案。我们使用两组独立的引物P2 / P8和2550F / 2718R优化了单态水鸟陆生sand(Bartramia longicauda)的遗传性别鉴定的实验室规程,以扩增与性相关的CHD-Z和CHD-W区域基因。我们发现通过引物P2 / P8扩增的CHD-Z内含子区域存在多态性,这导致四个雄性被误认为雌性(n = 90个配对)。我们在人群中克隆并测序了一个CHD-W等位基因(370 bp)和三个CHD-Z等位基因:Z度(335 bp),Z'(331 bp)和Z'(330 bp)。正常(Z度Z度)雄性在琼脂糖凝胶分析中显示一个条带,并且很容易与雌性(Z度W)区分开,后者显示两个条带。但是,男性杂合子的CHD-Z等位基因(Z'Z')出乎意料地显示出两个条带,类似于女性。尽管Z'和Z'片段仅包含短缺失,但它们在聚合酶链反应(PCR)过程中退火在一起,形成大小与W片段相似的异源双链分子。先前报告的分子性别分配错误通常是由于等位基因缺失导致的,导致女性被误认为男性。在这里,我们报告的证据表明,PCR中的事件可能导致相反的错误,而男性被误认为女性。在设计分子性别分析方案时,我们建议使用多个引物组和大量已知性别鸟类的样本进行验证。

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