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Temporal regulation of kin recognition maintains recognition-cue diversity and suppresses cheating

机译:亲属识别的时间调控可保持识别线索的多样性并抑制作弊

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摘要

Kin recognition, the ability to distinguish kin from non-kin, can facilitate cooperation between relatives. Evolutionary theory predicts that polymorphism in recognition cues, which is essential for effective recognition, would be unstable. Individuals carrying rare recognition cues would benefit less from social interactions than individuals with common cues, leading to loss of the genetic-cue diversity. We test this evolutionary hypothesis in Dictyostelium discoideum, which forms multicellular fruiting bodies by aggregation and utilizes two polymorphic membrane proteins to facilitate preferential cooperation. Surprisingly, we find that rare recognition variants are tolerated and maintain their frequencies among incompatible majority during development. Although the rare variants are initially excluded from the aggregates, they subsequently rejoin the aggregate and produce spores. Social cheating is also refrained in late development, thus limiting the cost of chimerism. Our results suggest a potential mechanism to sustain the evolutionary stability of kin-recognition genes and to suppress cheating.
机译:亲属识别(区分亲属和非亲属的能力)可以促进亲戚之间的合作。进化论预测,识别线索中的多态性(对于有效识别至关重要)将不稳定。携带稀有识别线索的人比具有共同线索的人从社会交往中受益较少,从而导致遗传线索多样性的丧失。我们在Disctyostelium discoideum中测试了这种进化假说,它通过聚集形成多细胞子实体,并利用两个多态性膜蛋白来促进优先合作。令人惊讶地,我们发现罕见的识别变体是可以忍受的,并且在开发过程中在不相容的多数中保持其频率。尽管最初将稀有变种从聚集体中排除,但随后它们重新加入聚集体并产生孢子。在后期开发中也避免了社交作弊,从而限制了嵌合体的成本。我们的研究结果表明维持亲属识别基因的进化稳定性并抑制作弊的潜在机制。

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