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Evolution of signal emission by uninfested plants to help nearby infested relatives

机译:未受感染的植物向附近受感染的亲戚提供帮助的信号发射过程

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摘要

Herbivory by arthropods often induces the emission of plant volatiles, which attract natural enemies of the herbivores. This induced emission of volatiles is considered to be a strategy of plants to effectively defend against herbivores by employing bodyguards. Recent empirical research has revealed that these volatiles can also affect neighboring undamaged plants and cause them to emit volatiles secondarily. Provided that signal emission imposes some cost on plants, the evolutionary advantage to undamaged plants in the emission of such secondary signals is unclear. We hypothesized that plants have evolved to emit a secondary signal to help nearby relatives by promoting the recruitment of natural enemies, whereby they increase inclusive fitness. We constructed a simulation model to evaluate this hypothesis. Our simulations suggest that a secondary signal evolves if the following five conditions are met: the cost of the signal is low; the potential risk of infestation is high; the attractiveness of the signal to natural enemies is highly positively correlated with the local density of the signal chemical; dispersal of offspring is spatially restricted, causing population viscosity, and; sufficient vacant space is available, allowing the population to be elastic.
机译:节肢动物的食草动物通常会诱发植物挥发物的排放,从而吸引食草动物的天敌。这种诱导的挥发物排放被认为是植物通过采用保镖来有效防御草食动物的一种策略。最近的经验研究表明,这些挥发物还会影响附近未损坏的植物,并使其次生地释放出挥发物。如果信号发射给植物增加了一些成本,那么在这种二次信号的发射中未受损植物的进化优势尚不清楚。我们假设植物已经进化为发出次级信号,通过促进天敌的募集来帮助附近的亲戚,从而增加包容性。我们构建了一个仿真模型来评估该假设。我们的仿真表明,如果满足以下五个条件,则将产生次级信号:信号成本低;潜在的侵扰风险很高;信号对天敌的吸引力与信号化学物质的局部密度高度正相关;后代的散布在空间上受到限制,导致种群黏稠,并且;有足够的可用空间,可以使总体具有弹性。

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