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遗传结构在生态型划分及保护管理中的相关性。

The relevance of genetic structure in ecotype designation and conservation management.

作者信息

Stronen Astrid V, Norman Anita J, Vander Wal Eric, Paquet Paul C

机构信息

Department of Biology Biotechnical Faculty University of Ljubljana Ljubljana Slovenia.

Department of Biotechnology and Life Sciences Insubria University Varese Italy.

出版信息

Evol Appl. 2022 Jan 19;15(2):185-202. doi: 10.1111/eva.13339. eCollection 2022 Feb.

Abstract

The concept of ecotypes is complex, partly because of its interdisciplinary nature, but the idea is intrinsically valuable for evolutionary biology and applied conservation. The complex nature of ecotypes has spurred some confusion and inconsistencies in the literature, thereby limiting broader theoretical development and practical application. We provide suggestions for how incorporating genetic analyses can ease confusion and help define ecotypes. We approach this by systematically reviewing 112 publications across taxa that simultaneously mention the terms e, and , to examine the current use of the term in the context of conservation and management. We found that most ecotype studies involve fish, mammals and plants with a focus on habitat use, which at 60% was the most common criterion used for categorization of ecotypes. Only 53% of the studies incorporated genetic analyses, and major discrepancies in available genomic resources among taxa could have contributed to confusion about the role of genetic structure in delineating ecotypes. Our results show that the rapid advances in genetic methods, also for nonmodel organisms, can help clarify the spatiotemporal distribution of adaptive and neutral genetic variation and their relevance to ecotype designations. Genetic analyses can offer empirical support for the ecotype concept and provide a timely measure of evolutionary potential, especially in changing environmental conditions. Genetic variation that is often difficult to detect, including polygenic traits influenced by small contributions from several genes, can be vital for adaptation to rapidly changing environments. Emerging ecotypes may signal speciation in progress, and findings from genome-enabled organisms can help clarify important selective factors driving ecotype development and persistence, and thereby improve preservation of interspecific genetic diversity. Incorporation of genetic analyses in ecotype studies will help connect evolutionary biology and applied conservation, including that of problematic groups such as natural hybrid organisms and urban or anthropogenic ecotypes.

摘要

生态型的概念很复杂,部分原因在于其跨学科性质,但这一概念对于进化生物学和应用保护学具有内在价值。生态型的复杂性质在文献中引发了一些混淆和不一致之处,从而限制了更广泛的理论发展和实际应用。我们就如何纳入遗传分析以减少混淆并帮助定义生态型提供了建议。我们通过系统回顾112篇跨分类群的出版物来进行研究,这些出版物同时提及了“生态型”以及其他相关术语,以考察该术语在保护和管理背景下的当前使用情况。我们发现,大多数生态型研究涉及鱼类、哺乳动物和植物,重点是栖息地利用,这是生态型分类中最常用的标准,占比60%。只有53%的研究纳入了遗传分析,各分类群间可用基因组资源的重大差异可能导致了对遗传结构在界定生态型中作用的混淆。我们的结果表明,遗传方法的快速发展,即使对于非模式生物也是如此,有助于阐明适应性和中性遗传变异的时空分布及其与生态型指定的相关性。遗传分析可以为生态型概念提供实证支持,并及时衡量进化潜力,尤其是在不断变化的环境条件下。通常难以检测到的遗传变异,包括受多个基因微小贡献影响的多基因性状,对于适应快速变化的环境可能至关重要。新出现的生态型可能预示着物种形成正在进行,基于基因组研究的生物体的研究结果有助于阐明驱动生态型发展和存续的重要选择因素,从而改善种间遗传多样性的保护。在生态型研究中纳入遗传分析将有助于将进化生物学与应用保护学联系起来,包括对于自然杂交生物以及城市或人为生态型等问题群体的保护。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65f1/8867706/cadbbc94b692/EVA-15-185-g001.jpg

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