首页> 外文期刊>Journal of Insect Conservation >Population isolation rather than ecological variation explains the genetic structure of endangered myrmecophilous butterfly Phengaris (=Maculinea) arion
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Population isolation rather than ecological variation explains the genetic structure of endangered myrmecophilous butterfly Phengaris (=Maculinea) arion

机译:种群隔离而不是生态变异解释了濒临灭绝的嗜温蝴蝶凤蝶(= Maculinea)Arion的遗传结构

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Genetic variation of the globally threatened obligatorily myrmecophilous Large Blue butterfly Phengaris (Maculinea) arion (Lepidoptera) was studied, using six microsatellite markers, in a country where its decline is dramatic (Poland). Material was collected on 13 sites showing considerable ecological variation as far as biotope, larval food plant and host ants of the butterfly were concerned. Genetic variability, estimated in terms of number of alleles and heterozygosity, was the lowest in the most isolated populations. However on sites localized in areas where suitable biotopes were extensive and interconnected, P. arion still held relatively high genetic diversity. Pairwise F ST values indicated small and moderate differentiation among samples (F ST = 0.01–0.15), with the exceptions of two isolated localities (0.20). We did not find clear evidence of isolation by distance. The presence of four or five genetic clusters was indicated. Analysis of the membership of each individual to each cluster showed that the vast majority of individuals from three isolated populations were clustered in three separate genetic groups. The most distinct population was the one, which had been found to be specialized towards Myrmica lobicornis in previous studies. Individuals from the remaining populations could not be clustered in separate genetic groups, however some dominance of different clusters in geographical regions was observed. Some portion of the population’s genetic variability could be explained by geographical distribution, however the percentage of variation, explaining the differences between two main regions (S and NE Poland), was very low. We conclude that the main factor shaping the current genetic structure of P. arion in Poland is the recent isolation of populations related to habitat fragmentation but local ecological specializations may be also a potential factor. Therefore the necessity of activities aiming to halt the further reduction of genetic variability, as well as the monitoring of priority populations (e.g. those belonging to unique host races), should be emphasized in future action plans in Central Europe.
机译:在一个国家(波兰)使用六种微卫星标记的情况下,研究了全球受威胁的专性嗜温性大蓝蝶Phengaris(Maculinea)arion(鳞翅目)的遗传变异。在13个地点收集了材料,这些地区在生物群落,幼虫食用植物和蝴蝶寄主蚂蚁方面表现出相当大的生态变化。根据等位基因数量和杂合性估算的遗传变异性在大多数孤立人群中最低。然而,在合适的生物群落广泛且相互联系的地区的本地站点上,芳蓬假单胞菌仍具有相对较高的遗传多样性。成对的F ST 值表明样本之间存在小而中等的差异(F ST = 0.01–0.15),除了两个孤立的位置(0.20)。我们没有找到明确的证据证明距离之间存在隔离。表明存在四个或五个遗传簇。对每个个体对每个簇的成员资格的分析表明,来自三个孤立种群的绝大多数个体都聚集在三个独立的基因组中。最独特的人群是在先前的研究中发现的专门针对Myrmica lobicornis的人群。剩余种群的个体不能聚类在不同的遗传群体中,但是观察到地理区域中不同聚类的某些优势。人口遗传变异的一部分可以通过地理分布来解释,但是解释两个主要区域(波兰南部和东北部)之间差异的变异百分比却很小。我们得出的结论是,影响波兰P. arion当前遗传结构的主要因素是与栖息地破碎化有关的种群的近期隔离,但当地生态专业化也可能是潜在因素。因此,在中欧今后的行动计划中应强调必须采取旨在停止进一步降低遗传变异性的活动以及监测优先种群(例如那些属于独特的东道国的种群)的活动。

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