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自然选择作用于综合表型:功能叶性状间的协方差增加植物适应性。

Natural selection acting on integrated phenotypes: covariance among functional leaf traits increases plant fitness.

机构信息

Instituto de Ecología, Universidad Nacional Autónoma de México, AP 70-275, Ciudad Universitaria, Coyoacán, 04510, CDMX, México.

Posgrado en Ciencias Biológicas, Unidad de Posgrado Edificio A, 1º Piso, Circuito de Posgrados, Ciudad Universitaria, Coyoacán, 04510, CDMX, Mexico.

出版信息

New Phytol. 2020 Jan;225(1):546-557. doi: 10.1111/nph.16116. Epub 2019 Sep 18.

Abstract

Plant functional strategies are usually accomplished through the simultaneous expression of different traits, and hence their correlations should be promoted by natural selection. The adaptive value of correlations among leaf functional traits, however, has not been assessed in natural populations. We estimated intraspecific variation in leaf functional traits related to the primary metabolism and anti-herbivore defence in a population of Turnera velutina. We analysed whether natural selection favoured the expression of individual traits, particular combinations of traits or leaf phenotypic integration. Patterns of covariation among traits were related to water and nitrogen economy, and were similar among genotypes, but the magnitude of their phenotypic integration differed by 10-fold. Although families did not differ in the mean values of leaf functional traits, directional selection favoured low nitrogen content and low chemical defence, high content of chlorophyll, sugar in extrafloral nectar and trichome density. Families with higher phenotypic integration among leaf traits grew faster and produced more flowers. We suggest that the coordinated expression of leaf traits has an adaptive value, probably related to optimisation in the expression of traits related to water conservation and nitrogen acquisition.

摘要

植物功能策略通常是通过同时表达不同的性状来实现的,因此它们之间的相关性应该受到自然选择的促进。然而,在自然种群中,叶片功能性状之间相关性的适应价值尚未得到评估。我们在特纳拉·韦卢蒂纳(Turnera velutina)的一个种群中估计了与初级代谢和抗草食动物防御有关的叶片功能性状的种内变异。我们分析了自然选择是否有利于单个性状、特定性状组合或叶片表型整合的表达。性状之间的协变模式与水和氮素经济有关,在基因型之间相似,但它们的表型整合程度相差 10 倍。尽管家族之间的叶片功能性状平均值没有差异,但定向选择有利于低氮含量和低化学防御、高叶绿素含量、花外蜜中糖含量和毛状体密度。叶片性状之间表型整合程度较高的家族生长速度更快,产生的花更多。我们认为,叶片性状的协调表达具有适应价值,可能与水和氮素获取相关性状的表达优化有关。

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