基因组学鉴定出澳大利亚东部的考拉种群处于危险之中。

IF 4.3 2区 环境科学与生态学 Q1 ECOLOGY
Elspeth A. McLennan, Toby G. L. Kovacs, Luke W. Silver, Zhiliang Chen, Frederick R. Jaya, Simon Y. W. Ho, Katherine Belov, Carolyn J. Hogg
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引用次数: 0

摘要

考拉是一种标志性的、濒临灭绝的澳大利亚有袋动物。疾病、栖息地的破坏和灾难性的大火已经使考拉减少到它们以前活动范围的残余斑块。随着极端天气事件的可能性增加以及澳大利亚各地栖息地的不断清理,考拉的数量很容易进一步减少和孤立。当近亲繁殖增加、基因组多样性受到侵蚀和适应潜力丧失时,小型孤立种群被认为处于危险之中,所有这些都降低了它们应对当前威胁的能力。在这里,我们使用来自考拉基因组调查的数据描述了考拉当前的基因组景观,这是澳大利亚联邦政府和新南威尔士州政府之间的一项联合倡议,旨在为澳大利亚东部考拉的范围提供一个面向未来的基线基因组数据集。我们确定了大陆上考拉基因组多样性低、近亲繁殖高的几个地区,这是通过纯合度来衡量的。这些种群包括昆士兰东南部沿海地区、新南威尔士州北部和中部沿海地区,以及新南威尔士州南部和维多利亚州。对未来气候的基因组脆弱性分析显示,由于该地区的极端预期变化,北部考拉种群面临的风险更大,但与其他物种相比,所需的适应能力最小。我们的基因组分析表明,持续的发展,特别是沿海地区的线性基础设施,以及由此导致的栖息地破坏,正在导致许多考拉种群的隔离和随后的基因组侵蚀。必须对所有考拉种群采取栖息地保护和走廊的形成,以保持目前的多样性水平。对于高度孤立的考拉种群,积极的管理可能是短期内改善基因组多样性的唯一途径。如果要为后代保护考拉,在保护规划中必须优先考虑扭转它们的基因组隔离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Genomics identifies koala populations at risk across eastern Australia

Genomics identifies koala populations at risk across eastern Australia

Koalas are an iconic, endangered, Australian marsupial. Disease, habitat destruction, and catastrophic mega-fires have reduced koalas to remnant patches of their former range. With increased likelihood of extreme weather events and ongoing habitat clearing across Australia, koala populations are vulnerable to further declines and isolation. Small, isolated populations are considered at risk when there is increased inbreeding, erosion of genomic diversity, and loss of adaptive potential, all of which reduce their ability to respond to prevailing threats. Here, we characterized the current genomic landscape of koalas using data from The Koala Genome Survey, a joint initiative between the Australian Federal and New South Wales Governments that aimed to provide a future-proofed baseline genomic dataset across the koala's range in eastern Australia. We identified several regions of the continent where koalas have low genomic diversity and high inbreeding, as measured by runs of homozygosity. These populations included coastal sites along southeast Queensland and northern and mid-coast New South Wales, as well as southern New South Wales and Victoria. Analysis of genomic vulnerability to future climates revealed that northern koala populations were more at risk due to the extreme expected changes in this region, but that the adaptation required was minimal compared with other species. Our genomic analyses indicate that continued development, particularly linear infrastructure along coastal sites, and resultant habitat destruction are causing isolation and subsequent genomic erosion across many koala populations. Habitat protection and the formation of corridors must be employed for all koala populations to maintain current levels of diversity. For highly isolated koala populations, active management may be the only way to improve genomic diversity in the short term. If koalas are to be conserved for future generations, reversing their genomic isolation must be a priority in conservation planning.

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来源期刊
Ecological Applications
Ecological Applications 环境科学-环境科学
CiteScore
9.50
自引率
2.00%
发文量
268
审稿时长
6 months
期刊介绍: The pages of Ecological Applications are open to research and discussion papers that integrate ecological science and concepts with their application and implications. Of special interest are papers that develop the basic scientific principles on which environmental decision-making should rest, and those that discuss the application of ecological concepts to environmental problem solving, policy, and management. Papers that deal explicitly with policy matters are welcome. Interdisciplinary approaches are encouraged, as are short communications on emerging environmental challenges.
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