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首页> 外文期刊>Conservation Genetics >Reverse ascertainment bias in microsatellite allelic diversity in owls (Aves, Strigiformes)
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Reverse ascertainment bias in microsatellite allelic diversity in owls (Aves, Strigiformes)

机译:猫头鹰的微卫星等位基因多样性的反向确定偏差(Aves,Strigiformes)

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摘要

A rich source of markers may be overlooked by screening for polymorphism in the source species only. We screened 129 microsatellite loci isolated from the powerful owl (Ninox strenua) against two closely related species; Ninox connivens and Ninox novaeseelandiae. From the screening effort 20 polymorphic markers were isolated, including six loci which were originally discarded as they were monomorphic in the source species. Further cross-species amplification of all 20 loci across species from two families, Strigidae and Tytonidae, revealed unusually high levels of polymorphism within closely related species, and limited success within phylogenetically distant species. Routine screening of multiple species during the marker development phase can yield a wider range of polymorphic markers which can subsequently enhance cross-species amplification attempts.
机译:仅在源物种中筛选多态性可能会忽略丰富的标记源。我们针对两个密切相关的物种筛选了从强力猫头鹰(Ninox strenua)分离出的129个微卫星基因座。 Ninox connivens和Ninox novaeseelandiae。从筛选工作中分离出20个多态性标记,包括六个位点,由于它们在来源物种中是单态性,因此最初被丢弃。跨足两个科(斯特里科和犬科)物种中所有20个基因座的进一步种间扩增显示,密切相关物种内的多态性水平异常高,而在系统发育远缘物种中成功率有限。在标记物开发阶段对多种物种进行常规筛选可以产生范围更广的多态性标记物,从而可以增强跨物种扩增的尝试。

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