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Specialized feeding behavior influences both ecological specialization and assortative mating in sympatric host races of pea aphids

机译:专门的摄食行为会影响豌豆蚜虫同伴寄主种族的生态专业化和分类交配

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Not only is ecological specialization a defining feature of much of Earth's biological diversity, the evolution of specialization may also play a central role in generating diversity by facilitating speciation. To understand how ecological specialization evolves, we must know the particular characters that cause organisms to be specialized. For example, most theories of specialization in herbivorous insects emphasize physiological trade-offs in response to toxic plant chemicals. However, even in herbivores, it is likely that other characters are also involved in resource specialization. Knowing the causes of ecological specialization is also crucial for linking specialization to speciation. When the same character(s) that cause specialization also influence assortative mating, speciation may occur particularly rapidly because specialization and reproductive isolation become coupled in a positive feedback that speeds the evolution of both. Indeed, a central hypothesis in the study of ecological speciation is that specialization in recently diverged taxa may often be due to characters that also produce assortative mating. We test this hypothesis by evaluating the causes of ecological specialization among host-associated populations of an herbivorous insect, the pea aphid (Acyrthosiphon pisum). These populations are highly specialized on different host plants (alfalfa or clover; "alternate hosts"), and the races are partially reproductively isolated. Here, we identify key characters responsible for host plant specialization. Our results suggest that the major proximal determinant of host specialization is the behavioral acceptance of a plant rather than the toxicity of the food source. Pea aphids rapidly assess alfalfa and clover and reject the alternate host based on chemical cues that are perceived before the initiation of feeding. This rapid behavioral rejection of the alternate host by a given race has two consequences. First, unrestrained aphids quickly leave the alternate host and search for other plants. Because pea aphids mate on their host plants, divergence in host acceptance among ecologically specialized races leads to congregation on the favored host. This results in de facto assortative mating when sexual forms are produced in late summer. Second, specialized aphids that are held on the alternate host will not leed in a 7.2-h trial, even in the face of starvation. Thus, a complex trait, behavioral acceptance of a plant as host, influences both reproductive isolation (through host-associated assortative mating) and ecological specialization (because of low nutritional uptake on the alternate host). This dual influence of feeding behavior on both assortative mating and resource specialization is central to the maintenance of these divergent races, and it may also have been involved in their origin. [References: 56]
机译:生态专业化不仅是地球许多生物多样性的决定性特征,而且专业化的演变还可以通过促进物种形成在产生多样性中发挥核心作用。要了解生态专业化是如何发展的,我们必须知道导致生物专业化的特定特征。例如,大多数专门针对草食性昆虫的理论都强调了对有毒植物化学物质的生理折衷。但是,即使在草食动物中,其他角色也有可能参与资源专业化。了解生态专业化的原因对于将专业化与物种联系起来也至关重要。当引起特化的相同特征也影响分类交配时,物种形成可能会特别迅速地发生,因为特化和生殖隔离以正反馈的方式耦合在一起,从而加速了两者的进化。的确,在生态物种研究中的中心假设是,最近分化的生物分类的专业化通常可能归因于也会产生交配的特征。我们通过评估草食性昆虫豌豆蚜虫(寄养蚜)的寄主相关种群之间生态专业化的原因来检验该假设。这些种群在不同的寄主植物(苜蓿或三叶草;“候补寄主”)上高度专业化,并且这些种族部分生殖繁殖。在这里,我们确定负责寄主植物专业化的关键特征。我们的结果表明,宿主专业化的主要近端决定因素是植物的行为接受程度,而不是食物来源的毒性。豌豆蚜虫根据开始喂食前所感知到的化学线索快速评估苜蓿和三叶草并拒绝其他寄主。给定种族对候补主持人的这种迅速的行为排斥有两个后果。首先,不受约束的蚜虫会迅速离开备用寄主并寻找其他植物。由于豌豆蚜虫在其寄主植物上交配,因此在生态学专业的种族之间寄主的接受程度不同会导致偏爱的寄主聚集。当夏末产生性形式时,这实际上导致了交配。其次,即使面对饥饿,留在备用宿主上的专门蚜虫也不会参加7.2小时的试验。因此,一种复杂的性状,即植物作为寄主的行为接受能力,既影响生殖隔离(通过寄主相关的交配交配),也影响生态专业化(由于对替代寄主的营养摄取较低)。饲养行为对配偶交配和资源专业化的双重影响是维持这些不同种族的关键,并且可能也与它们的起源有关。 [参考:56]

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