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Drift load in populations of small size and low density

机译:小规模低密度种群的漂移负荷

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摘要

According to theory, drift load in randomly mating populations is determined by past population size, because enhanced genetic drift in small populations causes accumulation and fixation of recessive deleterious mutations of small effect. In contrast, segregating load due to mutations of low frequency should decline in smaller populations, at least when mutations are highly recessive and strongly deleterious. Strong local selection generally reduces both types of load. We tested these predictions in 13 isolated, outcrossing populations of Arabidopsis lyrata that varied in population size and plant density. Long-term size was estimated by expected heterozygosity at 20 microsatellite loci. Segregating load was assessed by comparing performance of offspring from selfings versus within-population crosses. Drift load was the heterosis effect created by interpopulation outbreeding. Results showed that segregating load was unrelated to long-term size. However, drift load was significantly higher in populations of small effective size and low density. Drift load was mostly expressed late in development, but started as early as germination and accumulated thereafter. The study largely confirms predictions of theory and illustrates that mutation accumulation can be a threat to natural populations.
机译:根据理论,随机交配种群的漂移负荷由过去种群的大小决定,因为小种群中增强的遗传漂移会导致隐性有害突变的积累和固定,效果不大。相反,至少在突变具有高度隐性和严重有害性的情况下,由于低频突变引起的隔离负荷应在较小的人群中下降。强大的本地选择通常会减少两种类型的负载。我们在13个孤立的,异交的拟南芥种群中测试了这些预测,这些种群的种群大小和植物密度各不相同。长期大小是由20个微卫星基因座上的预期杂合性估计的。通过比较自交与后代杂交的后代表现来评估分离负荷。漂移负荷是种群间远交所产生的杂种优势效应。结果表明,分离负荷与长期大小无关。但是,在有效规模较小,密度较低的人群中,漂移负载明显较高。漂移负荷主要在发育后期表达,但早在发芽时就开始,并在此后积累。该研究在很大程度上证实了理论上的预测,并说明突变积累可能对自然种群构成威胁。

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