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首页> 外文期刊>Ecology and Evolution >Molecular sex identification of Malaysian White‐Nest Swiftlet (Aerodramus fuciphagus Thunberg, 1812)
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Molecular sex identification of Malaysian White‐Nest Swiftlet (Aerodramus fuciphagus Thunberg, 1812)

机译:马来西亚白巢超级纤维(Aerodramus Fuciphagus Thunberg,1812)的分子性别鉴定

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The difficulty in differentiating the sex of monomorphic bird species has made molecular sexing an important tool in addressing this problem. This method uses noninvasively collected materials such as feathers and may be advantageous for sexing endangered as well as commercialized bird species. In this study, seven primer sets for sexing birds were screened in Aerodramus fuciphagus using a total of 13 feather samples that were randomly selected from the state of Perak, Malaysia. From the screening analysis, only one primer set (P8/WZ/W) successfully differentiated the sex of A. fuciphagus. PCR amplification produced a single 255‐bp DNA fragment for males which was derived from CHD‐Z (CHD gene region in the sex chromosome Z), while for the females it produced two fragments (144 and 255?bp). The 144‐bp fragment was from CHD‐W (CHD gene region in the sex chromosome W). Results from sequencing showed no variations in the base sequences of the CHD‐W and CHD‐Z amplified fragments within the same sexes, except for one male sample (A23) where at position 166, a base substitution occurred (G?→?A). Phylogenetic analysis of CHD‐W showed that four (Apodiformes; Gruiformes; Passeriformes; and Pelecaniformes) out of the five orders investigated had formed four clear clusters within their orders, including the studied order: Apodiformes. Whereas in CHD‐Z, four (Accipitriformes; Columbiformes; Galliformes; and Passeriformes) out of five orders investigated formed four clear clusters within their orders, excluding the studied order. In addition, A. fuciphagus and Apus apus (both Apodiformes) showed less divergence in CHD‐W than CHD‐Z (0% c.f. 9%). The result suggests that in A. fuciphagus, CHD gene evolution occurred at a higher rate in males (CHD‐Z) compared to females (CHD‐W). This finding may be useful for further studies on sex ratio and breeding management of A. fuciphagus.
机译:区分单数鸟类物种性别的困难使分子性发生了解决这个问题的重要工具。该方法使用非侵入性收集的材料,例如羽毛,并且可能是性濒临灭绝的和商业化鸟类的有利。在这项研究中,使用总共13个羽毛样品在Aerodramus Fuciphagus中筛选出用于性鸟类的七种底漆,这些羽毛样品从马来西亚霹雳州随机选择。从筛选分析中,只有一个引物组(P8 / WZ / W)成功地区分了A. Fuciphagus的性别。 PCR扩增为衍生自分裂(性染色体Z)中衍生的男性的单个255-BP DNA片段,而对于雌性产生两种碎片(144和255μlbp)。 144-BP片段来自CHD-W(性染色体W的CHD基因区域)。测序结果显示在同一性别内的CHD-W和CHD-Z扩增片段的基础序列中没有变化,除了在位置166处的一个阳样品(A23),发生了基础取代(G?→?a) 。 CHD-W的系统发育分析表明,四次(Gruiformes; Passeriformes;和Pelecaniformes)在调查的五个订单中,在其订单中形成了四个清晰的集群,包括研究订单:apodiformes。虽然在CHD-Z,四(颈弧状; Columbiformes; Gilliformes;和Passeriformes)五次订单中的五个订单中形成了四个清晰的群集,不包括学习的订单。此外,A. fuciphagus和Apus Apus(两种Apodiformes)在CHD-W中显示出少于CHD-Z(0%C.f. 9%)。结果表明,与女性(CHD-W)相比,在A. fuciphagus中,在雄性(CHD-Z)中,在雄性(CHD-Z)中发生CHD基因进化。该发现对于进一步研究A. Fuciphagus的性别比和育种管理。

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