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景观中的距离隔离:景观遗传学的考量

Isolation-by-distance in landscapes: considerations for landscape genetics.

作者信息

van Strien M J, Holderegger R, Van Heck H J

机构信息

1] Planning of Landscape and Urban Systems, ETH Zurich, Stefano-Franscini-Platz 5, Zurich, Switzerland [2] WSL Swiss Federal Research Institute, Zürcherstrasse 111, Birmensdorf, Switzerland.

1] WSL Swiss Federal Research Institute, Zürcherstrasse 111, Birmensdorf, Switzerland [2] Department of Environmental System Sciences, ETH Zurich, Universitätsstrasse 16, Zurich, Switzerland.

出版信息

Heredity (Edinb). 2015 Jan;114(1):27-37. doi: 10.1038/hdy.2014.62. Epub 2014 Jul 23.

Abstract

In landscape genetics, isolation-by-distance (IBD) is regarded as a baseline pattern that is obtained without additional effects of landscape elements on gene flow. However, the configuration of suitable habitat patches determines deme topology, which in turn should affect rates of gene flow. IBD patterns can be characterized either by monotonically increasing pairwise genetic differentiation (for example, FST) with increasing interdeme geographic distance (case-I pattern) or by monotonically increasing pairwise genetic differentiation up to a certain geographical distance beyond which no correlation is detectable anymore (case-IV pattern). We investigated if landscape configuration influenced the rate at which a case-IV pattern changed to a case-I pattern. We also determined at what interdeme distance the highest correlation was measured between genetic differentiation and geographic distance and whether this distance corresponded to the maximum migration distance. We set up a population genetic simulation study and assessed the development of IBD patterns for several habitat configurations and maximum migration distances. We show that the rate and likelihood of the transition of case-IV to case-I FST-distance relationships was strongly influenced by habitat configuration and maximum migration distance. We also found that the maximum correlation between genetic differentiation and geographic distance was not related to the maximum migration distance and was measured across all deme pairs in a case-I pattern and, for a case-IV pattern, at the distance where the FST-distance curve flattens out. We argue that in landscape genetics, separate analyses should be performed to either assess IBD or the landscape effects on gene flow.

摘要

在景观遗传学中,距离隔离(IBD)被视为一种基线模式,它是在景观要素对基因流没有额外影响的情况下获得的。然而,适宜栖息地斑块的配置决定了deme拓扑结构,而这反过来又会影响基因流的速率。IBD模式可以通过成对遗传分化(例如FST)随着deme间地理距离增加而单调增加来表征(情况I模式),或者通过成对遗传分化在达到一定地理距离之前单调增加,超过该距离后不再检测到相关性来表征(情况IV模式)。我们研究了景观配置是否会影响情况IV模式转变为情况I模式的速率。我们还确定了在deme间距离为多少时,遗传分化与地理距离之间的相关性最高,以及这个距离是否对应于最大迁移距离。我们开展了一项种群遗传模拟研究,并评估了几种栖息地配置和最大迁移距离下IBD模式的发展情况。我们表明,情况IV到情况I的FST - 距离关系转变的速率和可能性受到栖息地配置和最大迁移距离的强烈影响。我们还发现,遗传分化与地理距离之间的最大相关性与最大迁移距离无关,在情况I模式中,它是在所有deme对之间测量得到的;对于情况IV模式,它是在FST - 距离曲线趋于平缓的距离处测量得到的。我们认为,在景观遗传学中,应该分别进行分析,以评估IBD或景观对基因流的影响。

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