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生活史性状和环境特异性权衡的遗传结构。

Genetic architecture of life history traits and environment-specific trade-offs.

机构信息

Department of Botany Program in Ecology, 1000 E. University Ave., University of Wyoming, Laramie, WY 82071, USA.

出版信息

Mol Ecol. 2011 Oct;20(19):4042-58. doi: 10.1111/j.1365-294X.2011.05227.x. Epub 2011 Sep 9.

Abstract

Life history theory predicts the evolution of trait combinations that enhance fitness, and the occurrence of trade-offs depends in part on the magnitude of variation in growth rate or acquisition. Using recombinant inbred lines, we examined the genetic architecture of age and size at reproduction across abiotic conditions encountered by cultivars and naturalized populations of Brassica rapa. We found that genotypes are plastic to seasonal setting, such that reproduction was accelerated under conditions encountered by summer annual populations and genetic variances for age at reproduction varied across simulated seasonal settings. Using an acquisition-allocation model, we predicted the likelihood of trade-offs. Consistent with predicted relationships, we observed a trade-off where early maturity is associated with small size at maturity under simulated summer and fall annual conditions but not under winter annual conditions. The trade-off in the summer annual setting was observed despite significant genotypic variation in growth rate, which is often expected to decouple age and size at reproduction because rapidly growing genotypes could mature early and attain a larger size relative to slowly growing genotypes that mature later. The absence of a trade-off in the winter setting is presumably attributable to the absence of genotypic differences in age at reproduction. We observed QTL for age at reproduction that jointly regulated size at reproduction in both the summer and fall annual settings, but these QTL were environment-specific (i.e. different QTL contributed to the trade-off in the fall vs. summer annual settings). Thus, at least some of the genetic mechanisms underlying observed trade-offs differed across environments.

摘要

生活史理论预测了那些能增强适应性的特征组合的进化,而权衡的发生部分取决于增长率或获取率的变化幅度。使用重组自交系,我们研究了芸薹属植物在不同环境条件下繁殖年龄和大小的遗传结构,这些环境条件包括栽培品种和归化种群所遇到的非生物条件。我们发现,基因型对季节设定具有可塑性,因此在夏季一年生种群所遇到的条件下,繁殖会加快,而繁殖年龄的遗传方差在模拟的季节性设定中也会发生变化。使用获取-分配模型,我们预测了权衡的可能性。与预测的关系一致,我们观察到一种权衡关系,即在模拟的夏季和秋季一年生条件下,早期成熟与成熟时的小体型相关,但在冬季一年生条件下则不然。尽管生长率存在显著的基因型差异,这通常会使繁殖年龄和成熟时的体型脱钩,因为快速生长的基因型可以更早成熟并获得相对于生长较慢的基因型更大的体型,但在夏季一年生环境中仍观察到了权衡。在冬季环境中不存在权衡,可能是因为繁殖年龄的基因型差异不存在。我们观察到了与繁殖年龄共同调节夏季和秋季一年生环境中繁殖大小的 QTL,但这些 QTL 是特定于环境的(即不同的 QTL 对秋季和夏季一年生环境中的权衡有贡献)。因此,至少一些观察到的权衡背后的遗传机制在不同环境中存在差异。

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