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法国入侵性豚草种群中与适应性相关的性状的适应性分化。

Adaptive divergence for a fitness-related trait among invasive Ambrosia artemisiifolia populations in France.

机构信息

Bio-Evaluation Center, Korea Research Institute of Bioscience and Biotechnology, Cheongwon, Korea.

出版信息

Mol Ecol. 2011 Apr;20(7):1378-88. doi: 10.1111/j.1365-294X.2011.05013.x. Epub 2011 Feb 9.

Abstract

The impact of natural selection on the adaptive divergence of invasive populations can be assessed by testing the null hypothesis that the extent of quantitative genetic differentiation (Q(ST) ) would be similar to that of neutral molecular differentiation (F(ST) ). Using eight microsatellite loci and a common garden approach, we compared Q(ST) and F(ST) among ten populations of an invasive species Ambrosia artemisiifolia (common ragweed) in France. In a common garden study with varying water and nutrient levels, we measured Q(ST) for five traits (height, total biomass, reproductive allocation, above- to belowground biomass ratio, and days to flowering). Although low F(ST) indicated weak genetic structure and strong gene flow among populations, we found significant diversifying selection (Q(ST) > F(ST) ) for reproductive allocation that may be closely related to fitness. It suggests that abiotic conditions may have exerted selection pressure on A. artemisiifolia populations to differentiate adaptively, such that populations at higher altitude or latitude evolved greater reproductive allocation. As previous studies indicate multiple introductions from various source populations of A. artemisiifolia in North America, our results suggest that the admixture of introduced populations may have increased genetic diversity and additive genetic variance, and in turn, promoted the rapid evolution and adaptation of this invasive species.

摘要

自然选择对入侵种群适应分歧的影响可以通过检验以下零假设来评估

即数量遗传分化(Q(ST))的程度与中性分子分化(F(ST))相似。我们使用了 8 个微卫星标记和一个共同的园林方法,比较了法国 10 个入侵物种 Ambrosia artemisiifolia(普通豚草)种群的 Q(ST)和 F(ST)。在一个具有不同水分和养分水平的共同园林研究中,我们测量了五个性状(高度、总生物量、生殖分配、地上到地下生物量比和开花天数)的 Q(ST)。尽管低 F(ST)表明种群之间存在较弱的遗传结构和强大的基因流,但我们发现生殖分配存在显著的多样化选择(Q(ST) > F(ST)),这可能与适应性密切相关。这表明,非生物条件可能对 A. artemisiifolia 种群施加了选择压力,使其能够适应分化,例如,海拔或纬度较高的种群进化出更大的生殖分配。由于之前的研究表明,A. artemisiifolia 从北美各种来源种群多次引入,因此我们的研究结果表明,引入种群的混合可能增加了遗传多样性和加性遗传方差,并进而促进了这一入侵物种的快速进化和适应。

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