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Multivariate selection shapes environment-dependent variation in the clonal morphology of a red seaweed

机译:多变量选择影响红海藻克隆形态的环境依赖性变异

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Within-individual strategies of variation (e.g., phenotypic plasticity) are particularly relevant to modular organisms, in which ramets of the same genetic individual may encounter diverse environments imposing diverse patterns of selection. Hence, measuring selection in heterogeneous environments is essential to understanding whether environment-dependent phenotypic change enhances the fitness of modular individuals. In sublittoral marine habitats, competition for light and space among modular taxa generates extreme patchiness in resource availability. Little is known, however, of the potential for plasticity within individuals to arise from spatially-variable selection in such systems. We tested whether plasticity enhances genet-level fitness in Asparagopsis armata, a clonal seaweed in which correlated traits mediate morphological responses to variation in light. Using the capacity for rapid, clonal growth to measure fitness, we identified aspects of ramet morphology targeted by selection in two contrasting light environments and compared patterns of selection across environments. We found that directional selection on single traits, coupled with linear and nonlinear selection on multi-trait interactions, shape ramet morphology within environments and favor different phenotypes in each. Evidence of environment-dependent, multivariate selection on correlated traits is novel for any marine modular organism and demonstrates that seaweeds, such as A armata, may potentially adapt to environmental heterogeneity via plasticity in clonal morphology.
机译:个体内的变异策略(例如表型可塑性)与模块化生物特别相关,其中同一遗传个体的分株可能会遇到施加不同选择模式的不同环境。因此,在异质环境中测量选择对于了解环境依赖性表型变化是否能增强模块化个体的适应性至关重要。在沿海沿岸海洋生境中,模块分类群之间光与空间的竞争在资源可用性方面产生了极大的局限性。然而,人们几乎不知道在这种系统中由于空间可变的选择而在个体内部产生可塑性的可能性。我们测试了可塑性是否增强了芦笋(Aparagopsis armata)(一种无性海藻)的基因水平适应性,其中相关性状介导了对光变化的形态学响应。利用快速,克隆生长的能力来测量适应度,我们确定了在两个相对的光照环境中进行选择并针对目标的分株形态的各个方面,并比较了跨环境的选择模式。我们发现,对单个性状进行定向选择,对多性状相互作用进行线性和非线性选择,可以在环境中塑造分株形态,并在每种环境中有利于不同的表型。对任何海洋模块化生物而言,对相关性状进行依赖环境的多变量选择的证据对于任何海洋模块化生物都是新颖的,并表明海藻(如A armata)可能通过克隆形态的可塑性适应环境异质性。

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