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Cooperation-mediated plasticity in dispersal and colonization

机译:合作媒介在扩散和殖民化中的可塑性

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Kin selection theory predicts that costly cooperative behaviors evolve most readily when directed toward kin. Dispersal plays a controversial role in the evolution of cooperation: dispersal decreases local population relatedness and thus opposes the evolution of cooperation, but limited dispersal increases kin competition and can negate the benefits of cooperation. Theoretical work has suggested that plasticity of dispersal, where individuals can adjust their dispersal decisions according to the social context, might help resolve this paradox and promote the evolution of cooperation. Here, we experimentally tested the hypothesis that conditional dispersal decisions are mediated by a cooperative strategy: we quantified the density-dependent dispersal decisions and subsequent colonization efficiency from single cells or groups of cells among six genetic strains of the unicellular Tetrahymena thermophila that differ in their aggregation level (high, medium, and low), a behavior associated with cooperation strategy. We found that the plastic reaction norms of dispersal rate relative to density differed according to aggregation level: highly aggregative genotypes showed negative density-dependent dispersal, whereas low-aggregation genotypes showed maximum dispersal rates at intermediate density, and medium-aggregation genotypes showed density-independent dispersal with intermediate dispersal rate. Dispersers from highly aggregative genotypes had specialized long-distance dispersal phenotypes, contrary to low-aggregation genotypes; medium-aggregation genotypes showing intermediate dispersal phenotype. Moreover, highly aggregation genotypes showed evidence for beneficial kin-cooperation during dispersal. Our experimental results should help to resolve the evolutionary conflict between cooperation and dispersal: cooperative individuals are expected to avoid kin-competition by dispersing long distances, but maintain the benefits of cooperation by dispersing in small groups.
机译:亲属选择理论预测,针对亲属,昂贵的合作行为最容易演变。分散在合作的演变中具有争议性的作用:分散降低了当地人口的亲和性,因此反对合作的演变,但分散有限会增加亲属竞争,并且会否定合作的利益。理论研究表明,传播的可塑性(个人可以根据社会背景调整其传播决定)可能有助于解决这一悖论,并促进合作的发展。在这里,我们实验性地检验了条件散布决定是由一种合作策略介导的假设:我们对密度依赖性散布决定和随后的定植效率进行了定量,这些散布决定和随后的定植效率来自于单细胞四膜膜嗜热菌的六个遗传株之间的单细胞或细胞群,它们的区别在于聚合级别(高,中和低),与合作策略相关的行为。我们发现分散速率相对于密度的塑性反应范式根据聚集水平而有所不同:高度聚集的基因型表现出负的密度依赖性扩散,而低聚集的基因型在中等密度下表现出最大的扩散速率,而中等聚集的基因型表现出密度-具有中间分散速率的独立分散。与低聚集基因型相反,来自高度聚集基因型的分散体具有专门的长距离扩散表型。中等聚集的基因型,表现出中等的分散表型。此外,高度聚集的基因型显示出在扩散过程中有益的亲缘合作的证据。我们的实验结果应有助于解决合作与分散之间的进化冲突:期望合作个体通过分散距离来避免亲属竞争,而通过分散小组保持合作的好处。

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