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Outcomes of reciprocal invasions between genetically diverse and genetically uniform populations of Daphnia obtusa (Kurz)

机译:基因多样性和遗传上统一的水蚤(Daphnia obtusa(Kurz))种群之间相互入侵的结果

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Ecological theory predicts that genetic variation produced by sexual reproduction results in niche diversification and provides a competitive advantage both to facilitate invasion into genetically uniform asexual populations and to withstand invasion by asexual competitors. We tested the hypothesis that a large group of diverse clones of Daphnia obtusa has greater competitive advantage when invading into genetically uniform populations of this species than a smaller group with inherently less genetic diversity. We compared competitive outcomes to those of genetically uniform groups of small and large size invading into genetically diverse populations. Genetically diverse invaders of initially large group size increased their representation by more than those of initially small size; in contrast. genetically uniform invaders of initially large group size diminished on average by more than those of initially small size. These results demonstrate an advantage to the genetic variation produced by sexual reproduction, both in invasion and resisting invasion, which we attribute to competitive release experienced by individuals in genetically diverse populations.
机译:生态学理论预测,有性生殖产生的遗传变异会导致生态位多样化,并提供竞争优势,既有利于入侵遗传上统一的无性种群,又可抵御无性竞争者的入侵。我们检验了以下假说:入侵水蚤的一大批不同克隆比起固有遗传多样性较低的一小群具有更大的竞争优势。我们将竞争成果与入侵遗传多样性人群的大小一致的遗传统一群体的竞争结果进行了比较。最初种群规模较大的遗传多样性入侵者所占的比例要比最初种群规模较小的入侵者所增加的比例更大。相反。最初规模较大的群体在遗传上均一的入侵者的平均减少幅度要大于最初规模较小的群体。这些结果证明了有性繁殖在入侵和抵抗入侵中产生的遗传变异具有优势,我们将其归因于遗传多样性人群中个体经历的竞争性释放。

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