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澳大利亚北部受威胁的黑足树鼠(Mesembriomys gouldii)的种群基因组学与保护管理。

Population genomics and conservation management of the threatened black-footed tree-rat (Mesembriomys gouldii) in northern Australia.

机构信息

School of Molecular and Life Sciences, Curtin University, Perth, WA, Australia.

Research Institute for the Environment and Livelihoods, Charles Darwin University, Darwin, NT, 0909, Australia.

出版信息

Heredity (Edinb). 2023 May;130(5):278-288. doi: 10.1038/s41437-023-00601-0. Epub 2023 Mar 10.

Abstract

Genomic diversity is a fundamental component of Earth's total biodiversity, and requires explicit consideration in efforts to conserve biodiversity. To conserve genomic diversity, it is necessary to measure its spatial distribution, and quantify the contribution that any intraspecific evolutionary lineages make to overall genomic diversity. Here, we describe the range-wide population genomic structure of a threatened Australian rodent, the black-footed tree-rat (Mesembriomys gouldii), aiming to provide insight into the timing and extent of population declines across a large region with a dearth of long-term monitoring data. By estimating recent trajectories in effective population sizes at four localities, we confirm widespread population decline across the species' range, but find that the population in the peri-urban area of the Darwin region has been more stable. Based on current sampling, the Melville Island population made the greatest contribution to overall allelic richness of the species, and the prioritisation analysis suggested that conservation of the Darwin and Cobourg Peninsula populations would be the most cost-effective scenario to retain more than 90% of all alleles. Our results broadly confirm current sub-specific taxonomy, and provide crucial data on the spatial distribution of genomic diversity to help prioritise limited conservation resources. Along with additional sampling and genomic analysis from the far eastern and western edges of the black-footed tree-rat distribution, we suggest a range of conservation and research priorities that could help improve black-footed tree-rat population trajectories at large and fine spatial scales, including the retention and expansion of structurally complex habitat patches.

摘要

基因组多样性是地球总生物多样性的一个基本组成部分,在保护生物多样性的努力中需要明确考虑。为了保护基因组多样性,有必要测量其空间分布,并量化任何种内进化谱系对总体基因组多样性的贡献。在这里,我们描述了受威胁的澳大利亚啮齿动物——黑足树鼠(Mesembriomys gouldii)的全范围种群基因组结构,旨在深入了解在一个长期监测数据匮乏的大区域内种群下降的时间和程度。通过估计四个地点的近期有效种群规模轨迹,我们证实了该物种在其分布范围内广泛的种群下降,但发现达尔文地区城郊地区的种群更为稳定。基于当前的采样,梅尔维尔岛种群对物种的总体等位基因丰富度贡献最大,优先级分析表明,保护达尔文和科堡半岛的种群将是保留超过 90%的所有等位基因的最具成本效益的方案。我们的研究结果大致证实了当前的亚种分类,为基因组多样性的空间分布提供了关键数据,有助于优先考虑有限的保护资源。除了在黑足树鼠分布的最东端和最西端进行额外的采样和基因组分析之外,我们还提出了一系列保护和研究重点,这些重点可以帮助在大尺度和小尺度上改善黑足树鼠的种群轨迹,包括保留和扩大结构复杂的栖息地斑块。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19d0/10162988/dd088761b6e4/41437_2023_601_Fig1_HTML.jpg

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