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Pleiotropy and the low cost of individual traits promote cooperation

机译:多效性和个性特质的低成本促进了合作

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摘要

The evolution of cooperation is thought to be promoted by pleiotropy, whereby cooperative traits are coregulated with traits that are important for personal fitness. However, this hypothesis faces a key challenge: what happens if mutation targets a cooperative trait specifically rather than the pleiotropic regulator? Here, we explore this question with the bacterium Pseudomonas aeruginosa, which cooperatively digests complex proteins using elastase. We empirically measure and theoretically model the fate of two mutantsone missing the whole regulatory circuit behind elastase production and the other with only the elastase gene mutatedrelative to the wild-type (WT). We first show that, when elastase is needed, neither of the mutants can grow if the WT is absent. And, consistent with previous findings, we show that regulatory gene mutants can grow faster than the WT when there are no pleiotropic costs. However, we find that mutants only lacking elastase production do not outcompete the WT, because the individual cooperative trait has a low cost. We argue that the intrinsic architecture of molecular networks makes pleiotropy an effective way to stabilize cooperative evolution. Although individual cooperative traits experience loss-of-function mutations, these mutations may result in weak benefits, and need not undermine the protection from pleiotropy.
机译:人们认为,多效性促进了合作的发展,在这种情况下,合作特质与对个人适应性很重要的特质相互融合。但是,该假设面临一个关键挑战:如果突变专门针对合作性特征而不是多效性调节剂,会发生什么?在这里,我们用铜绿假单胞菌(Pseudomonas aeruginosa)探讨了这个问题,该细菌利用弹性蛋白酶协同消化复杂的蛋白质。我们凭经验测量和理论上建模两个突变体的命运,它们缺失了产生弹性蛋白酶的整个调控回路,而另一个仅突变了相对于野生型(WT)突变的弹性蛋白酶基因。我们首先表明,当需要弹性蛋白酶时,如果不存在野生型,这两个突变体都无法生长。并且,与以前的发现一致,我们显示了在没有多效性成本的情况下,调控基因突变体的生长速度可以比野生型更快。然而,我们发现仅缺乏弹性蛋白酶产生的突变体不能与野生型竞争,因为个体的合作性状成本低。我们认为分子网络的内在结构使多效性成为稳定合作进化的有效途径。尽管个别合作性状会经历功能丧失的突变,但这些突变可能会导致收益微弱,并且无需破坏对多效性的保护。

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