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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Genetic consequences of a century of protection: Serial founder events and survival of the little spotted kiwi (Apteryx owenii)
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Genetic consequences of a century of protection: Serial founder events and survival of the little spotted kiwi (Apteryx owenii)

机译:一个世纪的保护的遗传后果:创始人创建事件和鲜有发现的奇异果(Apteryx owenii)的生存

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We present the outcome of a century of post-bottleneck isolation of a long-lived species, the little spotted kiwi (Apteryx owenii, LSK) and demonstrate that profound genetic consequences can result from protecting few individuals in isolation. LSK were saved from extinction by translocation of five birds from South Island, New Zealand to Kapiti Island 100 years ago. The Kapiti population now numbers some 1200 birds and provides founders for new populations. We used 15 microsatellite loci to compare genetic variation among Kapiti LSK and the populations of Red Mercury, Tiritiri Matangi and Long Islands that were founded with birds from Kapiti. Two LSK native to D'Urville Island were also placed on Long Island. We found extremely low genetic variation and signatures of acute and recent genetic bottleneck effects in all four populations, indicating that LSK have survived multiple genetic bottlenecks. The Long Island population appears to have arisen from a single mating pair from Kapiti, suggesting there is no genetic contribution from D'Urville birds among extant LSK. The N_e/N_C ratio of Kapiti Island LSK (0.03) is exceptionally low for terrestrial vertebrates and suggests that genetic diversity might still be eroding in this population, despite its large census size.
机译:我们介绍了一个长寿命物种,很少发现的奇异果(Apteryx owenii,LSK)的瓶颈后隔离世纪的结果,并证明了通过隔离保护很少的个体可以产生深远的遗传后果。 100年前,通过将五只鸟类从新西兰南岛转移到卡皮蒂岛,LSK得以免于灭绝。卡皮蒂(Kapiti)种群目前约有1200羽,为新种群提供了创始人。我们使用了15个微卫星基因座,比较了卡皮蒂LSK和用卡皮蒂鸟类建立的红水星,蒂里蒂里·马唐伊和长岛种群的遗传变异。两个原产于杜维尔岛的LSK也放置在长岛上。我们发现在所有四个人群中,极低的遗传变异和急性和近期遗传瓶颈效应的特征,表明LSK幸免于多个遗传瓶颈。长岛种群似乎来自卡皮蒂岛的一对交配对,这表明现存的LSK中D'Urville鸟类没有遗传贡献。对于陆地脊椎动物,卡皮蒂岛LSK的N_e / N_C比(0.03)异常低,这表明尽管人口普查规模很大,但该种群的遗传多样性仍可能受到侵蚀。

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