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Species identification of birds through genetic analysis of naturally shed feathers

机译:通过自然脱落羽毛的遗传分析鉴定鸟类

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摘要

Genetic analysis of noninvasively collected bird feathers is of growing importance to avian ecology; however, most genetic studies that utilize feathers make no mention of the need to verify their species of origin. While plumage patterns and collection location often are indicative of species identity, broad-scale feather collections may require definitive species identification prior to analysis. Genetic species identification has been applied to noninvasively collected samples from a wide range of taxa but, to date, these techniques have not been widely used on bird feathers. Here, we develop and test a polymerase chain reaction (PCR)-based technique for identifying eastern imperial eagle (Aquila heliaca) samples among a vast number of noninvasively collected feathers. Species identification is accomplished by amplifying a fragment of the mitochondrial cytochrome c oxidase I gene, then digesting that fragment with a restriction enzyme. The resulting species-specific restriction fragment length polymorphisms (RFLPs) are easily visualized by gel electrophoresis. We tested this PCR-RFLP assay on over 300 individuals that had been genetically identified from noninvasively collected feathers and demonstrated that the assay is both reliable and robust for DNA of low quality and quantity. The genetic methods of species identification used to develop this assay can readily be applied to other bird assemblages, making them particularly relevant to a broad range of future avian research.
机译:非侵入性收集的鸟羽毛的遗传分析对鸟类生态学越来越重要。但是,大多数利用羽毛的遗传研究都没有提到需要验证其起源物种的信息。虽然羽毛图案和收集位置通常可以指示物种身份,但在分析之前,大规模羽毛收集可能需要确定的物种识别。遗传物种鉴定已应用于来自各种分类单元的非侵入式采集样品,但迄今为止,这些技术尚未广泛用于鸟羽。在这里,我们开发并测试了一种基于聚合酶链反应(PCR)的技术,用于在大量非侵入式采集的羽毛中识别东部帝鹰(Aquila heliaca)样品。通过扩增线粒体细胞色素C氧化酶I基因的片段,然后用限制酶消化该片段来完成物种鉴定。所产生的物种特异性限制性片段长度多态性(RFLP)易于通过凝胶电泳观察。我们对从非侵入性采集的羽毛中遗传鉴定的300多个个体进行了此PCR-RFLP分析测试,结果证明该方法对于低质量和低数量的DNA既可靠又可靠。用于开发此测定法的物种识别的遗传方法可以轻松地应用于其他鸟类组合,这使其与未来广泛的鸟类研究特别相关。

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