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Genet Mol Biol. 2012 Jan;35(1):74-80. doi: 10.1590/s1415-47572012005000018. Epub 2012 Feb 3.
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Arlequin suite ver 3.5: a new series of programs to perform population genetics analyses under Linux and Windows.Arlequin 套件 ver 3.5:一系列在 Linux 和 Windows 下运行的新程序,用于进行群体遗传学分析。
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Applicability of anatid and galliform microsatellite markers to the genetic diversity studies of domestic geese (Anser anser domesticus) through the genotyping of the endangered zatorska breed.通过对濒危的扎托尔斯卡品种进行基因分型,研究鸭科和鸡形目微卫星标记在家鹅(Anser anser domesticus)遗传多样性研究中的适用性。
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Avian Z-specific microsatellites map to pseudoautosomal or autosomal chromosomes in the Siberian jay (Perisoreus infaustus): insights into avian genome evolution from cross-species amplification tests.鸟类Z特异性微卫星定位于西伯利亚松鸦(Perisoreus infaustus)的拟常染色体或常染色体上:跨物种扩增试验对鸟类基因组进化的启示。
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9
Parentage and relatedness in captive and natural populations of the Roseate Spoonbill (Aves: Ciconiiformes) based on microsatellite data.基于微卫星数据的玫瑰琵鹭(鸟类:鹳形目)圈养种群和自然种群的亲子关系及亲缘关系
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Mol Ecol. 2007 Sep;16(18):3759-67. doi: 10.1111/j.1365-294X.2007.03439.x.

用于白头鹮鹳(Plegadis chihi)(佛法僧目,鹳形目)种群遗传学研究的多态性异源微卫星位点。

Polymorphic heterologous microsatellite loci for population genetics studies of the white-faced ibis Plegadis chihi (Vieillot, 1817) (Pelecaniformes, Threskiornithidae).

机构信息

Departamento de Genética e Evolução, Universidade Federal de São Carlos, São Carlos, SP, Brazil.

出版信息

Genet Mol Biol. 2012 Jan;35(1):74-80. doi: 10.1590/s1415-47572012005000018. Epub 2012 Feb 3.

DOI:10.1590/s1415-47572012005000018
PMID:22481877
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3313519/
Abstract

We screened 44 heterologous microsatellites isolated in species of the families Threskiornithidae, Ciconiidae and Ardeidae for their use in a migratory waterbird, the white-faced ibis Plegadis chihi (Vieillot, 1817) (Threskiornithidae). Of the screened loci, 57% amplified successfully and 24% were polymorphic. In two breeding colonies from southern Brazil (N = 131) we detected 32 alleles (2-10 alleles/locus). Average He over all loci and colonies was 0.55, and the combined probability of excluding false parents, 98%. There was no departure from HWE in any loci or population. Eru6 and Eru4 loci were in non-random association in the Alvorada colony, and NnNF5 and Eru5 in both populations. AMOVA analysis indicated that most of the genetic diversity was contained within populations. Structure analysis suggested a single population, and F(ST) value showed weak genetic structuring (F(ST) = 0.009, p = 0.05). The two populations are apparently connected through gene-flow. The panel of six microsatellites optimized here was sufficiently informative for characterizing the genetic diversity and structure in these natural populations of the white-faced ibis. The information generated could be useful in future studies of genetic diversity, relatedness and the mating system in Plegadis chihi and related species.

摘要

我们筛选了 44 个分离自鹳形目、鹤形目和鹭科的种的异源微卫星,用于迁徙水鸟白脸琵鹭(Plegadis chihi)(Threskiornithidae)的研究。在所筛选的基因座中,57%成功扩增,24%具有多态性。在来自巴西南部的两个繁殖群体(N=131)中,我们检测到 32 个等位基因(每个基因座 2-10 个等位基因)。所有基因座和群体的平均 He 为 0.55,排除假父母的综合概率为 98%。没有任何基因座或群体偏离 HWE。在 Alvorada 群体中,Eru6 和 Eru4 基因座存在非随机关联,而 NnNF5 和 Eru5 基因座在两个群体中均存在非随机关联。AMOVA 分析表明,大部分遗传多样性存在于群体内。结构分析表明存在一个单一的群体,F(ST) 值显示出较弱的遗传结构(F(ST)=0.009,p=0.05)。这两个群体显然通过基因流相互联系。优化的这 6 个微卫星基因座面板足以用于描述白脸琵鹭自然种群的遗传多样性和结构。生成的信息可用于未来对 Plegadis chihi 及其相关物种遗传多样性、亲缘关系和交配系统的研究。