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Evolution of an obligate social cheater to a superior cooperator

机译:专职社交骗子向高级合作者的演变

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Obligate relationships have evolved many times and can be parasitic or mutualistic. Obligate organisms rely on others to survive and thus coevolve with their host or partner. An important but little explored question is whether obligate status is an evolutionarily terminal condition or whether obligate lineages can evolve back to an autonomous lifestyle. The bacterium Myxococcus xanthus survives starvation by the social development of spore-bearing fruiting bodies. Some M. xanthus genotypes defective at fruiting body development in isolation can nonetheless exploit proficient genotypes in chimaeric groups. Here we report an evolutionary transition from obligate dependence on an altruistic host to an autonomous mode of social cooperation. This restoration of social independence was caused by a single mutation of large effect that confers fitness superiority over both ancestral genotypes, including immunity from exploitation by the ancestral cheater. Thus, a temporary state of obligate cheating served as an evolutionary stepping-stone to a novel state of autonomous social dominance.
机译:专职的关系已经发展了很多次,并且可能是寄生的或互惠的。专性有机体依靠他人生存,因此可以与其宿主或伴侣共同进化。一个重要但很少探讨的问题是专性地位是进化上的终末状态还是专制宗族是否可以进化回自主生活方式。由于带有孢子的子实体的社会发展,黄曲霉细菌得以幸免于饥饿。孤立地在子实体发育中有缺陷的一些黄腐分支杆菌基因型仍然可以利用嵌合型群体的熟练基因型。在这里,我们报告了从专心于利他主义主体到自主的社会合作模式的进化过渡。这种社会独立性的恢复是由单个突变产生的,该突变产生的巨大影响赋予了两个祖先基因型都适宜的优势,包括免受祖先作弊者剥削的免疫力。因此,暂时的专职作弊状态成为了自主社会支配地位新状态的进化基石。

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