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重建丹麦一个大型蓝蝶 Maculinea arion 隔离种群 80 年来的遗传变异。

Reconstructing eight decades of genetic variation in an isolated Danish population of the large blue butterfly Maculinea arion.

机构信息

Centre for Social Evolution, University of Copenhagen, Universitetsparken 15, DK-2100 Copenhagen, Denmark.

出版信息

BMC Evol Biol. 2011 Jul 11;11:201. doi: 10.1186/1471-2148-11-201.

Abstract

BACKGROUND

Fragmentation of terrestrial ecosystems has had detrimental effects on metapopulations of habitat specialists. Maculinea butterflies have been particularly affected because of their specialized lifecycles, requiring both specific food-plants and host-ants. However, the interaction between dispersal, effective population size, and long-term genetic erosion of these endangered butterflies remains unknown. Using non-destructive sampling, we investigated the genetic diversity of the last extant population of M. arion in Denmark, which experienced critically low numbers in the 1980s.

RESULTS

Using nine microsatellite markers, we show that the population is genetically impoverished compared to nearby populations in Sweden, but less so than monitoring programs suggested. Ten additional short repeat microsatellites were used to reconstruct changes in genetic diversity and population structure over the last 77 years from museum specimens. We also tested amplification efficiency in such historical samples as a function of repeat length and sample age. Low population numbers in the 1980s did not affect genetic diversity, but considerable turnover of alleles has characterized this population throughout the time-span of our analysis.

CONCLUSIONS

Our results suggest that M. arion is less sensitive to genetic erosion via population bottlenecks than previously thought, and that managing clusters of high quality habitat may be key for long-term conservation.

摘要

背景

陆地生态系统的破碎化对生境专家的复合种群产生了不利影响。Maculinea 蝴蝶受到的影响尤其严重,因为它们的生命周期非常特殊,需要特定的食草植物和寄主蚂蚁。然而,这些濒危蝴蝶的扩散、有效种群大小以及长期遗传侵蚀之间的相互作用仍然未知。我们采用非破坏性采样方法,调查了丹麦最后一个现存的 M. arion 种群的遗传多样性,该种群在 20 世纪 80 年代经历了数量的严重减少。

结果

利用 9 个微卫星标记,我们发现与瑞典的邻近种群相比,该种群的遗传多样性较为贫乏,但比监测计划所显示的情况要好一些。另外使用 10 个短重复微卫星标记,从博物馆标本中重建了过去 77 年来遗传多样性和种群结构的变化。我们还测试了在历史样本中随着重复长度和样本年龄的变化,扩增效率的变化。20 世纪 80 年代的低种群数量并没有影响遗传多样性,但在我们的分析时间段内,等位基因的大量更替一直是该种群的特征。

结论

我们的研究结果表明,M. arion 对遗传侵蚀的敏感性比之前认为的要低,通过管理高质量栖息地的集群可能是长期保护的关键。

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