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栖息地选择在微观进化动态中的作用:关于地中海鳉鱼(鲤齿鳉科)的一项实验研究

The role of habitat choice in micro-evolutionary dynamics: An experimental study on the Mediterranean killifish (Cyprinodontidae).

作者信息

Angeletti Dario, Sebbio Claudia, Carlini Alessandro, Strinati Claudia, Nascetti Giuseppe, Carere Claudio, Cimmaruta Roberta

机构信息

Department of Ecological and Biological Sciences Ichthyogenic Experimental Marine Center (CISMAR) Tuscia University Tarquinia VT Italy.

Department of Monitoring of Environmental Quality Italian National Institute for Environmental Protection and Research (ISPRA) Rome Italy.

出版信息

Ecol Evol. 2017 Nov 1;7(24):10536-10545. doi: 10.1002/ece3.3540. eCollection 2017 Dec.

Abstract

Habitat choice is defined as a nonrandom distribution of genotypes in different microhabitats. Therefore, it could exert a great impact on the genetic variance of natural populations by promoting genetic divergence, local adaptation, and may even lead to sympatric speciation. Despite this potential role in micro- and macro-evolutionary processes, there is little empirical evidence that the various genotypes within a population may differ in habitat choice-related behaviors. Here, we tested whether habitat choice may have contributed to genetic divergence within a local population of the Mediterranean killifish , which emerged between groups inhabiting microhabitats with different oxygen concentrations during previous field studies. In a first experiment, we studied the distribution of individuals in conditions of hypoxia and normoxia to test whether they had a different ability to shy away from a hypoxic environment; in a second experiment, we analyzed the individual behavior of fish separately in the two conditions, to verify whether they showed peculiar behavioral responses linked to a possible differential distribution. We then analyzed the six allozyme loci, whose allelic and genotypic frequencies were significantly divergent in the previous studies. In the first test, we found that the distribution of the two homozygote genotypes of the glucose-6-phosphate isomerase-1 locus (GPI-1) was significantly different between the hypoxic and the normoxic conditions. During the second test, all individuals were more active in hypoxic conditions, but the two GPI-1 homozygotes showed a significant difference in time spent performing surface breathing, which was consistent with their distribution observed in the first experiment. These results provide evidence that individual behavioral traits, related to genetic features, may lead to a nonrandom distribution of genotypes in heterogeneous although contiguous microhabitats and, consequently, that habitat choice can play a significant role in driving the micro-evolutionary dynamics of this species.

摘要

栖息地选择被定义为不同微生境中基因型的非随机分布。因此,它可能通过促进遗传分化、局部适应对自然种群的遗传变异产生重大影响,甚至可能导致同域物种形成。尽管在微观和宏观进化过程中具有这种潜在作用,但几乎没有实证证据表明种群中的各种基因型在与栖息地选择相关的行为上可能存在差异。在这里,我们测试了栖息地选择是否可能导致了地中海鳉鱼当地种群内的遗传分化,在之前的野外研究中,该种群在栖息于不同氧气浓度微生境的群体之间出现了分化。在第一个实验中,我们研究了个体在缺氧和常氧条件下的分布,以测试它们逃避缺氧环境的能力是否不同;在第二个实验中,我们分别分析了两种条件下鱼的个体行为,以验证它们是否表现出与可能的差异分布相关的特殊行为反应。然后,我们分析了六个等位酶位点,在之前的研究中,它们的等位基因和基因型频率存在显著差异。在第一次测试中,我们发现葡萄糖 -6-磷酸异构酶 -1 位点(GPI -1)的两种纯合子基因型在缺氧和常氧条件下分布显著不同。在第二次测试中,所有个体在缺氧条件下都更活跃,但两种 GPI -1 纯合子在进行水面呼吸所花费的时间上存在显著差异,这与在第一个实验中观察到的它们的分布一致。这些结果提供了证据,表明与遗传特征相关的个体行为特征可能导致基因型在异质但相邻的微生境中呈非随机分布,因此,栖息地选择在推动该物种的微观进化动态中可以发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e02f/5743487/5bca748f39aa/ECE3-7-10536-g001.jpg

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