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拟南芥(十字花科)生殖阶段的个体发育表型可塑性。

Ontogenetic phenotypic plasticity during the reproductive phase in Arabidopsis thaliana (Brassicaceae).

作者信息

Pigliucci M

出版信息

Am J Bot. 1997 Jul;84(7):887.

Abstract

While phenotypic plasticity has been the focus of much research and debate in the recent ecological and evolutionary literature, the developmental nature of the phenomenon has been mostly overlooked. A developmental perspective must ultimately be an integral part of our understanding of how organisms cope with heterogeneous environments. In this paper I use the rapid cycling Arabidopsis thaliana to address the following questions concerning developmental plasticity. (1) Are there genetic and/or environmental differences in parameters describing ontogenetic trajectories? (2) Is ontogenetic variation produced by differences in genotypes and/or environments for two crucial traits of the reproductive phase of the life cycle, stem elongation and flower production? (3) Is there ontogenetic variability for the correlation between the two characters? I found genetic variation, plasticity, and variation for plasticity affecting at least some of the growth parameters, indicating potential for evolution via heterochronic shifts in ontogenetic trajectories. Within-population differences among families are determined before the onset of the reproductive phase, while among-population variation is the result of divergence during the reproductive phase of the ontogeny. Finally, the ontogenetic profiles of character correlations are very distinct between the ecologically meaningful categories of early- and late-flowering "ecotypes" in this species, and show susceptibility to environmental change.

摘要

虽然表型可塑性在最近的生态学和进化文献中一直是大量研究和争论的焦点,但该现象的发育本质大多被忽视了。从发育的角度来看,最终必须成为我们理解生物体如何应对异质环境的一个不可或缺的部分。在本文中,我利用快速循环的拟南芥来解决以下有关发育可塑性的问题。(1)在描述个体发育轨迹的参数方面是否存在遗传和/或环境差异?(2)生命周期生殖阶段的两个关键性状,即茎伸长和花的产生,其个体发育变异是由基因型和/或环境差异导致的吗?(3)这两个性状之间的相关性是否存在个体发育变异性?我发现遗传变异、可塑性以及可塑性的变异至少影响了一些生长参数,这表明通过个体发育轨迹的异时性转变存在进化潜力。种群内不同家系之间的差异在生殖阶段开始之前就已确定,而种群间的变异是个体发育生殖阶段分歧的结果。最后,在该物种中,早花和晚花“生态型”这两个具有生态意义的类别之间,性状相关性的个体发育图谱非常不同,并且显示出对环境变化的敏感性。

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