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田间合作细菌毒力的动态变化。

The dynamics of cooperative bacterial virulence in the field.

机构信息

School of Biological Sciences, Royal Holloway University of London, Egham, UK.

出版信息

Science. 2012 Jul 6;337(6090):85-8. doi: 10.1126/science.1218196.

Abstract

Laboratory experiments have shown that the fitness of microorganisms can depend on cooperation between cells. Although this insight has revolutionized our understanding of microbial life, results from artificial microcosms have not been validated in complex natural populations. We investigated the sociality of essential virulence factors (crystal toxins) in the pathogen Bacillus thuringiensis using diamondback moth larvae (Plutella xylostella) as hosts. We show that toxin production is cooperative, and in a manipulative field experiment, we observed persistent high relatedness and frequency- and density-dependent selection, which favor stable cooperation. Conditions favoring social virulence can therefore persist in the face of natural population processes, and social interactions (rapid cheat invasion) may account for the rarity of natural disease outbreaks caused by B. thuringiensis.

摘要

实验室实验表明,微生物的适应性可以取决于细胞之间的合作。尽管这一发现彻底改变了我们对微生物生命的理解,但人工微宇宙的结果尚未在复杂的自然种群中得到验证。我们使用小菜蛾幼虫(Plutella xylostella)作为宿主,研究了病原体苏云金芽孢杆菌(Bacillus thuringiensis)中必需毒力因子(晶体毒素)的社会性。我们表明,毒素的产生是合作的,并且在操纵性田间实验中,我们观察到了持久的高亲缘关系以及频率和密度依赖性选择,这有利于稳定的合作。因此,有利于社会毒力的条件可以在面对自然种群过程时持续存在,并且社会相互作用(快速欺骗入侵)可能解释了由苏云金芽孢杆菌引起的自然疾病爆发的罕见性。

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