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细尺度景观异质性对拟南芥 lyrata 进化潜力的微弱影响。

Weak impact of fine-scale landscape heterogeneity on evolutionary potential in Arabidopsis lyrata.

机构信息

Evolutionary Botany, Institute of Biology, University of Neuchâtel, Neuchâtel, Switzerland.

出版信息

J Evol Biol. 2013 Nov;26(11):2331-40. doi: 10.1111/jeb.12220. Epub 2013 Aug 28.

Abstract

Microhabitat heterogeneity can lead to fine-scale local adaptation when gene flow is restricted, which may be important for the maintenance of genetic variation within populations. This study tested whether microhabitat heterogeneity was associated with trait differences in a population of Arabidopsis lyrata and studied its impact on the genetic variance-covariance (G) matrix. Maternal seed families were collected from dune tops and bottoms, two microhabitats known to vary significantly in water availability. In a common garden experiment, replicate individuals per family were raised under wet and dry conditions, and physiological, morphological and life-history traits were assessed. Plants from the two microenvironments differed in their response to treatment in two performance components, in stomata density and most strongly in flowering time. Under wet conditions, plants originating from dune bottoms flowered 4 weeks earlier than those from dune tops. Only one of three G-matrix comparisons revealed that habitat heterogeneity and evolutionary potential were positively linked. The number of independent trait dimensions was larger in the entire population than within subpopulations separated by microhabitat under wet conditions. However, the size of the G-matrix was no larger in the entire population than within subpopulations separated by microhabitat, and trait correlation structure between microhabitats and treatments was not significantly different. These results indicate that fine-scale habitat heterogeneity likely led to local adaptation, which weakly affected levels of across-trait genetic variation.

摘要

微生境异质性在基因流动受到限制时会导致精细尺度的局部适应,这对于维持种群内的遗传变异可能很重要。本研究检验了微生境异质性是否与拟南芥 lyrata 种群的性状差异有关,并研究了其对遗传方差-协方差(G)矩阵的影响。从沙丘顶部和底部这两个已知水分可利用性差异显著的小生境中收集了母体种子家系。在一个共同的园林实验中,每个家系的重复个体在湿和干条件下被培养,并评估了生理、形态和生活史性状。来自两个微环境的植物在两个性能成分中对处理的反应不同,在气孔密度和开花时间上的差异最大。在潮湿条件下,来自沙丘底部的植物比来自沙丘顶部的植物早开花 4 周。只有三种 G 矩阵比较中的一种表明,生境异质性和进化潜力呈正相关。在整个种群中,独立性状维度的数量大于在潮湿条件下通过小生境分离的亚种群中的数量。然而,整个种群中的 G 矩阵大小并不大于通过小生境分离的亚种群中的 G 矩阵大小,并且小生境和处理之间的性状相关结构没有显著差异。这些结果表明,精细尺度的生境异质性可能导致了局部适应,这对跨性状遗传变异的水平影响较弱。

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