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Metabolism and the Evolution of Social Behavior

机译:新陈代谢与社会行为的演变

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How does metabolism influence social behavior? This fundamental question at the interface of molecular biology and social evolution is hard to address with experiments in animals, and therefore, we turned to a simple microbial system: swarming in the bacterium Pseudomonas aeruginosa . Using genetic engineering, we excised a locus encoding a key metabolic regulator and disrupted P. aeruginosa ’s metabolic prudence, the regulatory mechanism that controls expression of swarming public goods and protects this social behavior from exploitation by cheaters. Then, using experimental evolution, we followed the joint evolution of the genome, the metabolome and the social behavior as swarming re-evolved. New variants emerged spontaneously with mutations that reorganized the metabolome and compensated in distinct ways for the disrupted metabolic prudence. These experiments with a unicellular organism provide a detailed view of how metabolism—currency of all physiological processes—can determine the costs and benefits of a social behavior and ultimately influence how an organism behaves towards other organisms of the same species.
机译:新陈代谢如何影响社会行为?分子生物学和社会进化界面上的这个基本问题很难通过动物实验来解决,因此,我们转向了一个简单的微生物系统:在细菌中蜂拥而至铜绿假单胞菌。利用基因工程,我们切除了一个编码关键代谢调节因子的位点,并破坏了铜绿假单胞菌的代谢审慎性,这是一种控制蜂拥而至的公共物品表达并保护这种社会行为免受作弊者利用的调节机制。然后,利用实验进化,我们跟踪了基因组、代谢组和社会行为的联合进化,因为蜂群重新进化。新的变种自发出现,其突变重组了代谢组,并以不同的方式补偿了被破坏的代谢谨慎。这些对单细胞生物的实验提供了关于新陈代谢(所有生理过程的货币)如何决定社会行为的成本和收益并最终影响生物体对同一物种的其他生物体的行为的详细视图。

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