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与健身相关的丝状真菌有性生殖。

Fitness-associated sexual reproduction in a filamentous fungus.

机构信息

Department of Biology, Center for Applied Research in Environmental Genomics, University of Ottawa, 30 Marie Curie, Ottawa, Ontario, Canada.

出版信息

Curr Biol. 2010 Aug 10;20(15):1350-5. doi: 10.1016/j.cub.2010.05.060. Epub 2010 Jul 1.

Abstract

Sex is a long-standing evolutionary enigma. Although the majority of eukaryotes reproduce sexually at least sometimes [1-3], the evolution of sex from an asexual ancestor has been difficult to explain because it requires sexually reproducing lineages to overcome the manifold costs of sex, including the destruction of favorable gene combinations created by selection [4, 5]. Conditions for the evolution of sex are much broader if individuals can reproduce either sexually or asexually (i.e., facultative sex) and allocate disproportionately more resources to sex when their fitness is low (fitness-associated-sex or FAS [6-10]). Although facultatively sexual organisms have been shown to engage in more sex when stressed [11], direct evidence for FAS is lacking. We provide evidence using 53 genotypes of the filamentous fungus Aspergillus nidulans in a reciprocal transplant experiment across three environments. Different genotypes achieved highest fitness in different environments and genotypes invested relatively more in sex in environments in which their fitness was lower, showing that allocation to sexual reproduction is a function of how well-adapted a genotype is to its environment. FAS in A. nidulans is unlikely to have evolved as a strategy to resist or avoid stress because asexual spores are more dispersive and equally resistant [12, 13].

摘要

性是一个长期存在的进化之谜。尽管大多数真核生物至少在某些时候会进行有性繁殖[1-3],但从无性祖先进化为有性繁殖却很难解释,因为它需要有性繁殖的谱系克服性繁殖的多种成本,包括破坏选择产生的有利基因组合[4,5]。如果个体可以有性繁殖或无性繁殖(即兼性繁殖),并且在适应度较低时不成比例地更多地投入资源进行繁殖(与适应度相关的繁殖或 FAS[6-10]),那么性进化的条件就广泛得多。尽管已经表明兼性繁殖的生物在受到压力时会进行更多的繁殖[11],但缺乏 FAS 的直接证据。我们使用在三个环境中进行的互移植实验中的 53 种丝状真菌构巢曲霉的基因型提供了证据。不同的基因型在不同的环境中达到了最高的适应性,并且在适应性较低的环境中,相对更多地投入到了繁殖中,这表明繁殖分配是基因型对环境适应程度的函数。构巢曲霉中的 FAS 不太可能是作为一种抵抗或避免压力的策略进化而来的,因为无性孢子更具分散性且同样具有抵抗力[12,13]。

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