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A Threefold Genetic Allee Effect: Population Size Affects Cross-Compatibility, Inbreeding Depression and Drift Load in the Self-Incompatible Ranunculus reptans

机译:遗传Allee效应的三倍:种群大小影响自我不相容毛R毛草的交叉相容性,近交抑制和漂移负荷

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摘要

A decline in population size can lead to the loss of allelic variation, increased inbreeding, and the accumulation of genetic load through drift. We estimated the fitness consequences of these processes in offspring of controlled within-population crosses from 13 populations of the self-incompatible, clonal plant Ranunculus reptans. We used allozyme allelic richness as a proxy for long-term population size, which was positively correlated with current population size. Crosses between plants of smaller populations were less likely to be compatible. Inbreeding load, assessed as the slope of the relationship between offspring performance and parental kinship coefficients, was not related to population size, suggesting that deleterious mutations had not been purged from small populations. Offspring from smaller populations were on average more inbred, so inbreeding depression in clonal fitness was higher in small populations. We estimated variation in drift load from the mean fitness of outbred offspring and found enhanced drift load affecting female fertility within small populations. We conclude that self-incompatibility systems do not necessarily prevent small populations from suffering from inbreeding depression and drift load and may exacerbate the challenge of finding suitable mates.
机译:种群数量的减少会导致等位基因变异的丧失,近亲繁殖的增加以及通过漂移的遗传负载的积累。我们估计了这些过程在自交不亲和的无性系毛R毛的13个种群的受控种群内杂交的后代中的适应性后果。我们使用等位酶等位基因丰富度作为长期人口规模的代表,长期人口规模与当前人口规模呈正相关。种群较小的植物之间的杂交不太可能相容。近交负载(以后代表现与父母亲属关系之间的关系的斜率评估)与种群规模无关,这表明尚未从小种群中清除有害突变。平均而言,人口较少的后代的近交程度更高,因此人口较少的克隆适应度中的近交沮丧程度更高。我们根据近交后代的平均适应度估算了漂移负荷的变化,发现漂移负荷的增加会影响小种群中女性的生育能力。我们得出的结论是,自我不兼容系统并不一定能防止小种群遭受近亲衰退和漂移负荷的困扰,并且可能加剧寻找合适伴侣的挑战。

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