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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Spatial and temporal escape from fungal parasitism in natural communities of anciently asexual bdelloid rotifers
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Spatial and temporal escape from fungal parasitism in natural communities of anciently asexual bdelloid rotifers

机译:远古无性轮枝del轮虫自然群落中真菌寄生的时空逃逸

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Sexual reproduction is costly, but it is nearly ubiquitous among plants and animals, whereas obligately asexual taxa are rare and almost always shortlived. The Red Queen hypothesis proposes that sex overcomes its costs by enabling organisms to keep pace with coevolving parasites and pathogens. If so, the few cases of stable long-term asexuality ought to be found in groups whose coevolutionary interactions with parasites are unusually weak. In theory, antagonistic coevolution will be attenuated if hosts disperse among patches within a metapopulation separately from parasites and more rapidly. We examined whether these conditions are met in natural communities of bdelloid rotifers, one of the longest-lived asexual lineages. At any life stage, these microscopic invertebrates can tolerate the complete desiccation of their ephemeral freshwater habitats, surviving as dormant propagules that are readily carried by the wind. In our field experiments, desiccation and wind transport enabled bdelloids to disperse independently of multiple fungal parasites, in both time and space. Surveys of bdelloid communities in unmanipulated moss patches confirmed that fungal parasitism was negatively correlated with extended drought and increasing height (exposure to wind). Bdelloid ecology therefore matches a key condition of models in which asexuals persist through spatio-temporal decoupling from coevolving enemies.
机译:有性生殖的成本很高,但在动植物中几乎无处不在,而专性无性类群则很少见,而且几乎总是短命的。红色女王假说提出,通过使生物能够跟上不断发展的寄生虫和病原体的步伐,性可以克服其代价。如果是这样,应该在与寄生虫的共进化相互作用异常弱的群体中找到稳定的长期无性恋的少数情况。从理论上讲,如果宿主与寄生虫分开并更快地分散在一个种群内的斑块之间,那么拮抗性的协同进化将被减弱。我们研究了在寿命最长的无性世系之一的双倍体轮虫的自然群落中是否满足这些条件。在任何生命阶段,这些无脊椎动物都可以忍受其短暂的淡水栖息地的完全干燥,以休眠繁殖体的形式存活,这些繁殖体很容易随风携带。在我们的野外实验中,干燥和风的传播使软藻能够在时空上独立于多种真菌寄生虫而散播。对未操纵的苔藓丛中的小del类群落的调查证实,真菌寄生性寄生虫与长期干旱和身高增加(暴露于风)呈负相关。因此,Bdelloid生态学符合模型的关键条件,在该模型中,无性恋者通过与时空分离的敌人不断进化而持续存在。

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