首页> 外文期刊>Acta biologica Cracoviensia. Series botanica >SPATIAL GENETIC STRUCTURE WITHIN POPULATIONS OF SORBUS TORMINALIS (L.) CRANTZ: COMPARATIVE ANALYSIS OF THE SELF-INCOMPATIBILITY LOCUS AND NUCLEAR MICROSATELLITES
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SPATIAL GENETIC STRUCTURE WITHIN POPULATIONS OF SORBUS TORMINALIS (L.) CRANTZ: COMPARATIVE ANALYSIS OF THE SELF-INCOMPATIBILITY LOCUS AND NUCLEAR MICROSATELLITES

机译:桔梗(C.)群体中的空间遗传结构:自相容性位点和核微卫星的比较分析

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Distribution of genetic diversity among and within plant populations may depend on the mating system and the mechanisms underlying the efficiency of pollen and seed dispersal. In self-incompatible species, negative frequency- dependent selection acting on the self-incompatibility locus is expected to decrease intensity of spatial genetic structure (SGS) and to reduce population differentiation. We investigated two populations (peripheral and more central) of wild service tree (Sorbus torminalis (L.) Crantz), a self-incompatible, scattered tree species to test the differences in population differentiation and spatial genetic structure assessed at the self-incompatibility locus and neutral nuclear microsatellites. Although, both populations exhibited similar levels of genetic diversity regardless of the marker type, significant differentiation was noticed. Differences between FST and RST suggested that in the case of microsatellites both mutations and drift were responsible for the observed differentiation level, but in the case of the S-RNase locus drift played a major role. Microsatellites indicated a similar and significant level of spatial genetic structure in both populations; however, at the S-RNase locus significant spatial genetic structure was found only in the fragmented population located at the north-eastern species range limits. Differences in SGS between the populations detected at the self-incompatibility locus were attributed mainly to the differences in fragmentation and population history.
机译:植物种群之间和种群内部遗传多样性的分布可能取决于交配系统以及花粉和种子传播效率的基础机制。在自我不相容的物种中,作用于自我不相容基因座的负频率依赖性选择有望降低空间遗传结构(SGS)的强度并减少种群分化。我们调查了两个野生种群服务树(Sorbus torminalis(L.)Crantz)(一种自交不亲和的分散树种)的种群(外围和中央),以测试在种群自交不亲和性评估的种群分化和空间遗传结构上的差异和中性核微卫星。尽管无论标记类型如何,这两个种群均表现出相似的遗传多样性水平,但注意到显着的分化。 FST和RST之间的差异表明,在微卫星的情况下,突变和漂移都是观察到的分化水平的原因,但在S-RNase基因座的情况下,漂移起主要作用。微卫星表明两个种群的空间遗传结构相似且重要。然而,在S-RNase基因座上,仅在东北物种范围限制内的零散种群中发现了重要的空间遗传结构。自相容性基因座检测到的人群之间SGS的差异主要归因于片段化和种群历史的差异。

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