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Evolutionary constraint on low elevation range expansion: Defense‐abiotic stress‐tolerance trade‐off in crosses of the ecological model Boechera stricta

机译:低海拔范围扩展的进化约束:生态模型Boechera stricta的防御-非生物胁迫耐受性折衷

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摘要

Most transplant experiments across species geographic range boundaries indicate that adaptation to stressful environments outside the range is often constrained. However, the mechanisms of these constraints remain poorly understood. We used extended generation crosses from diverged high and low elevation populations. In experiments across low elevation range boundaries, there was selection on the parental lines for abiotic stress‐tolerance and resistance to herbivores. However, in support of a defense‐tolerance trade‐off, extended generation crosses showed nonindependent segregation of these traits in the laboratory across a drought‐stress gradient and in the field across the low elevation range boundary. Genotypic variation in a marker from a region of the genome containing a candidate gene (MYC2) was associated with change in the genetic trade‐off. Thus, using crosses and forward genetics, we found experimental genetic and molecular evidence for a pleiotropic trade‐off that could constrain the evolution of range expansion.
机译:大多数跨物种地理范围边界的移植实验表明,对范围以外压力环境的适应通常受到限制。但是,这些约束的机制仍然知之甚少。我们使用了来自不同高海拔和低海拔人群的扩展世代杂交。在跨越低海拔范围边界的实验中,在亲本系中选择了非生物胁迫耐受性和对草食动物的抗性。然而,为支持防御与容忍的权衡,在实验室中,干旱胁迫梯度和低海拔范围边界的田间杂交显示这些性状非独立地分离。来自包含候选基因(MYC2)的基因组区域中标记的基因型变异与遗传平衡的变化有关。因此,使用交叉遗传和正向遗传学,我们发现了多效性折衷的实验遗传和分子证据,可以限制范围扩展的演变。

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