不同环境条件下临时蛙幼虫生活史性状的数量遗传学研究。

Ane T Laugen, Loeske E B Kruuk, Anssi Laurila, Katja Räsänen, Jonathan Stone, Juha Merilä
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引用次数: 62

摘要

在野生脊椎动物物种中,在同一物种的不同种群和不同环境中,特定性状的遗传变异程度的差异很少被量化。研究了两栖动物临时蛙(Rana temporaria)三个幼虫生活史性状的遗传变异表达和母系效应。在一项析因实验室实验中,5个分布广泛的种群(最多为5个)。1600公里)进行了两种不同的环境处理。动物模型分析表明,在所有群体和大多数处理组合下,所有性状均可遗传(h(2)约为0.20)。虽然不同食物处理的遗传相关性接近统一,但限制食物处理的遗传力往往低于自由食物处理。同样,在大多数性状中都存在母体效应(m(2)约为0.05),并且在限制性食物条件下表现得最为明显。结果表明,基因型-环境相互作用和母系效应-环境相互作用是表型变异的重要来源。研究结果表明,尽管遗传效应和母源效应在同一物种不同种群中的表达可能相对均匀,但环境条件的局部差异可能通过基因型-环境和母源效应-环境的相互作用导致数量性状的表型表达发生显著变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantitative genetics of larval life-history traits in Rana temporaria in different environmental conditions.

The degree to which genetic variation in a given trait varies among different populations of the same species and across different environments has seldom been quantified in wild vertebrate species. We investigated the expression of genetic variability and maternal effects in three larval life-history traits of the amphibian Rana temporaria. In a factorial laboratory experiment, five widely separated populations (max. 1600 km) were subjected to two different environmental treatments. Animal model analyses revealed that all traits were heritable (h(2) approximately 0.20) in all populations and under most treatment combinations. Although the cross-food treatment genetic correlations were close to unity, heritabilities under a restricted food regime tended to be lower than those under an ad libitum food regime. Likewise, maternal effects (m(2) approximately 0.05) were detected in most traits, and they tended to be most pronounced under restricted food conditions. We detected several cross-temperature genetic and maternal effects correlations that were lower than unity, suggesting that genotype-environment interactions and maternal effect-environment interactions are a significant source of phenotypic variation. The results reinforce the perspective that although the expression of genetic and maternal effects may be relatively homogeneous across different populations of the same species, local variation in environmental conditions can lead to significant variation in phenotypic expression of quantitative traits through genotype-environment and maternal effect-environment interactions.

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