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Field‐based insights to the evolution of specialization: plasticity and fitness across habitats in a specialist/generalist species pair

机译:对专业化演变的基于野外的见解:专家/种属对中各个生境的可塑性和适应性

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AbstractFactors promoting the evolution of specialists versus generalists have been little studied in ecological context. In a large-scale comparative field experiment, we studied genotypes from naturally evolved populations of a closely related generalist/specialist species pair (Polygonum persicaria and P. hydropiper), reciprocally transplanting replicates of multiple lines into open and partially shaded sites where the species naturally co-occur. We measured relative fitness, individual plasticity, herbivory, and genetic variance expressed in the contrasting light habitats at both low and high densities. Fitness data confirmed that the putative specialist out-performed the generalist in only one environment, the favorable full sun/low-density environment to which it is largely restricted in nature, while the generalist had higher lifetime reproduction in both canopy and dense neighbor shade. The generalist, P. persicaria, also expressed greater adaptive plasticity for biomass allocation and leaf size in shaded conditions than the specialist. We found no evidence that the ecological specialization of P. hydropiper reflects either genetically based fitness trade-offs or maintenance costs of plasticity, two types of genetic constraint often invoked to prevent the evolution of broadly adaptive genotypes. However, the patterns of fitness variance and herbivore damage revealed how release from herbivory in a new range can cause an introduced species to evolve as a specialist in that range, a surprising finding with important implications for invasion biology. Patterns of fitness variance between and within sites are also consistent with a possible role for the process of mutation accumulation (in this case, mutations affecting shade-expressed phenotypes) in the evolution and/or maintenance of specialization in P. hydropiper.
机译:摘要在生态环境中,很少研究促进专家相对于通才发展的因素。在大规模的比较野外实验中,我们研究了密切相关的通才/特殊物种对((属和水生对虾)的自然进化种群的基因型,将多系的复制品相互移植到开放且部分阴影的位置,该物种在自然环境下自然繁殖同时发生。我们测量了相对健康度,个体可塑性,草食性以及在低密度和高密度下形成对比的光生境中表达的遗传变异。健身数据证实,假定的专家仅在一个环境(自然条件受到很大限制的有利的全日照/低密度环境)中表现优于通才,而通才在冠层和浓密的邻居阴影下均具有较高的寿命再现。专家P. persicaria也表示在遮荫条件下对生物量分配和叶片大小的适应性可塑性比专家更大。我们没有发现证据表明体育斑节对虾的生态专长反映了基于遗传的适应性折衷或可塑性的维持成本,这是经常被用来阻止广泛适应性基因型进化的两种遗传约束。但是,适应性差异和草食动物损害的模式揭示了在新范围内从食草动物释放如何导致引入物种作为该范围内的专家进化,这是一个令人惊讶的发现,对入侵生物学具有重要意义。在位点之间和位点内部的适应性变异模式也与突变积累(在这种情况下,影响阴影表达表型的突变)在水生体育的专长的发展和/或维持中的可能作用相一致。

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