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反复洪灾对大理石鳟种群遗传组成的影响。

The effect of recurrent floods on genetic composition of marble trout populations.

机构信息

Department of Biology, University of Padova, Padova, Italy.

出版信息

PLoS One. 2011;6(9):e23822. doi: 10.1371/journal.pone.0023822. Epub 2011 Sep 8.

Abstract

A changing global climate can threaten the diversity of species and ecosystems. We explore the consequences of catastrophic disturbances in determining the evolutionary and demographic histories of secluded marble trout populations in Slovenian streams subjected to weather extremes, in particular recurrent flash floods and debris flows causing massive mortalities. Using microsatellite data, a pattern of extreme genetic differentiation was found among populations (global F(ST) of 0.716), which exceeds the highest values reported in freshwater fish. All locations showed low levels of genetic diversity as evidenced by low heterozygosities and a mean of only 2 alleles per locus, with few or no rare alleles. Many loci showed a discontinuous allele distribution, with missing alleles across the allele size range, suggestive of a population contraction. Accordingly, bottleneck episodes were inferred for all samples with a reduction in population size of 3-4 orders of magnitude. The reduced level of genetic diversity observed in all populations implies a strong impact of genetic drift, and suggests that along with limited gene flow, genetic differentiation might have been exacerbated by recurrent mortalities likely caused by flash flood and debris flows. Due to its low evolutionary potential the species might fail to cope with an intensification and altered frequency of flash flood events predicted to occur with climate change.

摘要

全球气候变化可能威胁物种和生态系统的多样性。我们研究了灾难性干扰对受极端天气影响的斯洛文尼亚溪流中孤立的大理石鳟种群进化和种群历史的影响,特别是反复发生的洪水和泥石流造成大量死亡。利用微卫星数据,发现种群之间存在极端遗传分化的模式(全球 F(ST)为 0.716),超过了淡水鱼类报告的最高值。所有地点的遗传多样性水平都很低,表现为低杂合度和每个位点平均只有 2 个等位基因,很少或没有稀有等位基因。许多位点的等位基因分布不连续,等位基因大小范围内存在缺失等位基因,表明种群收缩。因此,所有样本都推断存在瓶颈期,种群数量减少了 3-4 个数量级。所有种群观察到的遗传多样性水平降低表明遗传漂变的影响很大,并表明随着基因流的限制,遗传分化可能因洪水和泥石流等反复发生的死亡率而加剧。由于其低进化潜力,该物种可能无法应对气候变化预测的洪水事件强度和频率的增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3299/3169565/b2c8b4d9b0a5/pone.0023822.g001.jpg

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