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Plasticity of plant defense and its evolutionary implications in wild populations of Boechera stricta

机译:植物防御的可塑性及其对严格野生桦种群的进化意义

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摘要

Phenotypic plasticity is thought to impact evolutionary trajectories by shifting trait values in a direction that is either favored by natural selection (“adaptive plasticity”) or disfavored (“nonadaptive” plasticity). However, it is unclear how commonly each of these types of plasticity occurs in natural populations. To answer this question, we measured glucosinolate defensive chemistry and reproductive fitness in over 1,500 individuals of the wild perennial mustard Boechera stricta, planted in four common gardens across central Idaho, USA. Glucosinolate profiles—including total glucosinolate concentration as well as the relative abundances and overall diversity of different compounds—were strongly plastic both among habitats and within habitats. Patterns of glucosinolate plasticity varied greatly among genotypes. Plasticity among sites was predicted to affect fitness in 27.1% of cases; more often than expected by chance, glucosinolate plasticity increased rather than decreased relative fitness. In contrast, we found no evidence for within-habitat selection on glucosinolate reaction norm slopes (i.e., plasticity along a continuous environmental gradient). Together, our results indicate that glucosinolate plasticity may improve the ability of B. stricta populations to persist after migration to new habitats.
机译:表型可塑性被认为会通过向着自然选择(“适应性可塑性”)或不利(“非适应性”可塑性)偏向的方向移动特征值来影响进化轨迹。但是,尚不清楚这些可塑性类型在自然种群中普遍发生的频率。为了回答这个问题,我们在美国爱达荷州中部的四个常见花园中种植的野生多年生芥菜Boechera stricta的1,500多个个体中测量了芥子油苷的防御化学和生殖适应性。芥子油苷概况-包括总芥子油苷浓度以及不同化合物的相对丰度和整体多样性-在生境之间和生境内都具有很强的可塑性。芥子油苷可塑性的模式在基因型之间差异很大。预计站点间的可塑性会影响27.1%的情况;芥子油苷的可塑性通常比偶然地增加,而不是相对适合度降低。相比之下,我们没有发现关于芥子油苷反应规范斜率(即沿连续环境梯度的可塑性)的栖息地选择的证据。总之,我们的结果表明,芥子油苷的可塑性可能会提高严格的双歧杆菌种群迁移到新的栖息地后的持久能力。

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