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首页> 外文期刊>Journal of Avian Biology >Piecing together the global population puzzle of wandering albatrosses: genetic analysis of the Amsterdam albatross Diomedea amsterdamensis
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Piecing together the global population puzzle of wandering albatrosses: genetic analysis of the Amsterdam albatross Diomedea amsterdamensis

机译:拼凑出信天翁的全球人口之谜:阿姆斯特丹信天翁Diomedea amsterdamensis的遗传分析

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摘要

Wandering albatrosses have been subjected to numerous taxonomic revisions due to discoveries of new species, analyses of morphological data and, more recently, the inclusion of genetic data. The small population of albatrosses (170 individuals including 26 pairs breeding annually) on Amsterdam Island in the Indian Ocean, Diomedea amsterdamensis, has been given species status based on plumage and morphometrics, but genetic data published to date provide weak support and its specific status remains controversial for some authors. We used mitochondrial control region sequence data to elucidate the relationship of the Amsterdam albatross within the wandering albatross complex (Diomedea amsterdamensis, D. antipodensis, D. dabbenena and D. exulans). Three novel haplotypes were present in 35 individuals from Amsterdam Island, and were highly divergent (3.6-7.3%) from haplotypes found in the other three members of the wandering albatross complex. Low levels of genetic variation in Amsterdam albatross likely resulted, at least in part, from a population bottleneck. Geographic isolation in the wandering albatross complex is maintained by high natal philopatry. As Amsterdam Island is the only breeding ground for this critically endangered species, we strongly urge conservation efforts in the area, especially in relation to long line fisheries and other threats such as disease and introduced predators, and it be listed as a distinct species.
机译:由于发现了新物种,对形态数据进行了分析,最近又纳入了遗传数据,因此信天翁信天翁经历了许多分类学修订。根据印度洋羽毛和形态学,印度洋阿姆斯特丹岛上信天翁的信天翁种群数量很少(170个人,包括每年繁殖的26对),但根据羽毛和形态计量学获得了物种地位,但迄今为止公布的遗传数据提供了较弱的支持,其具体地位仍然存在对某些作者有争议。我们使用线粒体控制区序列数据来阐明流浪信天翁复合体(Diomedea amsterdamensis,D。antipodensis,D。dabbenena和D. exulans)中阿姆斯特丹信天翁的关系。在来自阿姆斯特丹岛的35个个体中,存在三种新颖的单倍型,并且与在信天翁信配体的其他三个成员中发现的单倍型高度不同(3.6-7.3%)。阿姆斯特丹信天翁的遗传变异水平低可能至少部分是由于人口瓶颈。流浪信天翁复杂的地理隔离是由高出生的哲学家来维持的。由于阿姆斯特丹岛是这种极度濒危物种的唯一繁殖地,因此我们强烈敦促在该地区进行保护工作,特别是在延绳钓渔业和其他威胁(例如疾病和掠食者)方面,并被列为独特物种。

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