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首页> 外文期刊>Bulletin of Entomological Research >Evidence for a quiet revolution: seasonal variation in colonies of the specialist tansy aphid, Macrosiphoniella tanacetaria (Kaltenbach) (Hemiptera: Aphididae) studied using microsatellite markers.
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Evidence for a quiet revolution: seasonal variation in colonies of the specialist tansy aphid, Macrosiphoniella tanacetaria (Kaltenbach) (Hemiptera: Aphididae) studied using microsatellite markers.

机译:一场安静革命的证据:艾菊蚜虫(itan tanacetaria tanacetaria)(Kaltenbach)(半翅目:蚜虫)的菌落季节性变化是使用微卫星标记研究的。

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In cyclical parthenogens, clonal diversity is expected to decrease due to selection and drift during the asexual phase per number of asexual generations. The decrease in diversity may be counteracted by immigration of new genotypes. We analysed temporal variation in clonal diversity in colonies of the monophagous tansy aphid, Macrosiphoniella tanacetaria (Kaltenbach), sampled four times over the course of a growing season. In a related field study, we recorded aphid colony sizes and the occurrence of winged dispersers throughout the season. The number of colonies increased from April, when asexual stem mothers hatched from the sexually produced eggs, to the end of June. The proportion of colonies with winged individuals also increased over this period. After a severe reduction in colony sizes in late summer, a second expansion phase occurred in October when sexuals were produced. At the season's end, the only winged forms were males. A linked genetic study showed that the number of microsatellite multilocus genotypes and genetic variability assessed at three polymorphic loci per colony decreased from June to October. Overall, the relatedness of wingless to winged individuals within colonies was lower than average relatedness among wingless individuals, suggesting that winged forms mainly originated in different colonies. The results demonstrate that patterns of genetic diversity within colonies can be explained by the antagonistic forces of clonal selection, migration and genetic drift (largely due to midsummer population bottlenecks). We further suggest that the males emigrate over comparatively longer distances than winged asexual females.
机译:在周期性孤雌生殖中,由于无性繁殖期每无性繁殖代数的选择和漂移,预计克隆多样性会下降。新基因型的迁入可以抵消多样性的降低。我们分析了单相艾菊蚜虫(i.Macrosiphoniella tanacetaria (Kaltenbach))菌落在整个生长季节过程中四次采样的克隆多样性的时间变化。在一项相关的田间研究中,我们记录了整个季节的蚜虫菌落大小和有翼的分散器的发生。从无性干母从有性卵中孵出的4月到6月底,殖民地数量有所增加。在此期间,有翅个体的殖民地比例也有所增加。在夏末殖民地规模严重减少之后,第二个扩展阶段发生在十月,当时发生了性行为。在赛季结束时,仅有的有翼形式是雄性。一项关联的遗传研究表明,每个菌落三个多态性位点评估的微卫星多基因座基因型数量和遗传变异性从6月到10月有所下降。总体而言,殖民地中无翅个体与有翅个体的相关性低于无翅个体之间的平均相关性,这表明有翅形式主要起源于不同的殖民地。结果表明,菌落内遗传多样性的模式可以通过克隆选择,迁移和遗传漂移的对抗力来解释(很大程度上是由于仲夏人口的瓶颈)。我们进一步建议,与有翅无性雌性相比,男性移居的距离相对更长。

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