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社会细菌中自私警察的实验进化。

Experimental evolution of selfish policing in social bacteria.

机构信息

Department of Biology, Indiana University, Bloomington, IN 47405, USA.

出版信息

Proc Natl Acad Sci U S A. 2011 May 17;108(20):8357-62. doi: 10.1073/pnas.1014695108. Epub 2011 Apr 29.

Abstract

Cooperative organisms evolve within socially diverse populations. In populations harboring both cooperators and cheaters, cooperators might adapt by evolving novel interactions with either social type or both. Diverse animal traits suppress selfish behaviors when cooperation is important for fitness, but the potential for prokaryotes to evolve such traits is unclear. We allowed a strain of the bacterium Myxococcus xanthus that is proficient at cooperative fruiting body development to evolve while repeatedly encountering a non-evolving developmental cheater. Evolving populations greatly increased their fitness in the presence of the cheater, both relative to their ancestor and in terms of absolute spore productivity. However, the same evolved lineages exhibited a net disadvantage to the ancestor in the cheater's absence. Evolving populations reversed a large ancestral disadvantage to the cheater into competitive superiority and also evolved to strongly suppress cheater productivity. Moreover, in three-party mixes with the cheater, evolved populations enhanced their ancestor's productivity relative to mixes of only the ancestor and cheater. Thus, our evolved populations function as selfish police that inhibit cheaters, both to their own advantage and to the benefit of others as well. Cheater suppression was general across multiple unfamiliar cheaters but was more pronounced against the evolutionarily familiar cheater. Also, evolution generated three new mutually beneficial relationships, including complementary defect rescue between evolved cells and the selection-regime cheater. The rapid evolution of cheater suppression documented here suggests that coevolving social strategies within natural populations of prokaryotes are more diverse and complex than previously appreciated.

摘要

合作生物体会在社会多样化的种群中进化。在同时存在合作者和骗子的种群中,合作者可能会通过与社会类型或两者都发生新的相互作用来适应。当合作对适应性很重要时,多样的动物特征会抑制自私行为,但原核生物进化出这种特征的潜力尚不清楚。我们让一种能够熟练进行合作生殖体发育的粘细菌(Myxococcus xanthus)菌株在不断遇到非进化发育骗子的情况下进化。与祖先相比,进化种群在骗子存在的情况下大大提高了它们的适应性,无论是相对的还是绝对的孢子生产力。然而,相同的进化谱系在没有骗子的情况下相对于祖先表现出净劣势。进化种群将对骗子的巨大祖先劣势转化为竞争优势,并进化为强烈抑制骗子的生产力。此外,在与骗子的三方混合中,进化种群提高了它们的祖先相对于仅祖先和骗子的混合物的生产力。因此,我们的进化种群作为自私警察发挥作用,既对自己有利,也对其他生物有利,抑制骗子。对多个不熟悉的骗子的抑制是普遍的,但对进化上熟悉的骗子的抑制更为明显。此外,进化产生了三种新的互利关系,包括进化细胞和选择型骗子之间的互补缺陷挽救。这里记录的对骗子抑制的快速进化表明,原核生物自然种群中共同进化的社会策略比以前认为的更加多样化和复杂。

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