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Plant mating system transitions drive the macroevolution of defense strategies

机译:植物交配系统的过渡推动了防御策略的宏观发展

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摘要

Understanding the factors that shape macroevolutionary patterns in functional traits is a central goal of evolutionary biology. Alternative strategies of sexual reproduction (inbreeding vs. outcrossing) have divergent effects on population genetic structure and could thereby broadly influence trait evolution. However, the broader evolutionary consequences of mating system transitions remain poorly understood, with the exception of traits related to reproduction itself (e.g., pollination). Across a phylogeny of 56 wild species of Solanaceae (nightshades), we show here that the repeated, unidirectional transition from ancestral self-incompatibility (obligate outcrossing) to self-compatibility (increased inbreeding) leads to the evolution of an inducible (vs. constitutive) strategy of plant resistance to herbivores. We demonstrate that inducible and constitutive defense strategies represent evolutionary alternatives and that the magnitude of the resulting macroevolutionary tradeoff is dependent on the mating system. Loss of self-incompatibility is also associated with the evolution of increased specificity in induced plant resistance. We conclude that the evolution of sexual reproductive variation may have profound effects on plant–herbivore interactions, suggesting a new hypothesis for the evolution of two primary strategies of plant defense.
机译:了解影响功能性状的宏观进化模式的因素是进化生物学的主要目标。性繁殖的替代策略(近交与异源杂交)对种群遗传结构有不同的影响,因此可以广泛地影响性状的进化。然而,除了与繁殖本身有关的性状(例如授粉)外,交配系统过渡的更广泛的进化后果仍然知之甚少。在茄科56种野生物种(茄属植物)的系统发育中,我们在这里表明,从祖先的自交不亲和性(专性杂交)到自交亲和性(近交繁殖)的反复单向过渡导致了诱导型(相对于组成型)的进化。 )植物对食草动物的抗性策略。我们证明了诱导型和本构防御策略代表了进化的选择,并且所产生的宏观进化权衡的大小取决于交配系统。自交不亲和性的丧失也与诱导植物抗性的特异性提高有关。我们得出的结论是,有性生殖变异的进化可能对植物-草食动物的相互作用产生深远的影响,这为植物防御的两种主要策略的进化提出了新的假设。

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