首页> 外文期刊>Heredity: An International Journal of Genetics >Multiple infections and diversity of cytoplasmic incompatibility in a haplodiploid species.
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Multiple infections and diversity of cytoplasmic incompatibility in a haplodiploid species.

机译:单倍体物种的多重感染和细胞质不相容性的多样性。

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摘要

Cytoplasmic incompatibility (CI) is a sperm-egg incompatibility commonly induced by the intracellular endosymbiont bacterium Wolbachia that, in diploid species, results in embryo mortality. In haplodiploid species, two types of CI exist depending on whether the incompatible fertilized eggs develop into males (male development (MD)) or abort (female mortality (FM)). CI allows multiple infections to be maintained in host populations, and thus allows interactions to occur between co-infecting strains. In Leptopilina heterotoma, three Wolbachia strains coexist naturally (wLhet1, wLhet2, wLhet3). When these three strains are all present, they induce a CI of FM type, whereas wLhet1 alone expresses a CI phenotype intermediate between MD and FM. Here, we compare CI effects in crosses involving insect lines sharing the same nuclear background, but harboring different mixtures of strains. Mating experiments showed that: (i) wLhet2 and wLhet3 also induce an intermediate CI when acting alone, and show a bidirectional incompatibility; (ii) there is no interaction between the co-infecting strains in CI expression; (iii) the diversity of Wolbachia present within a male host influences the expression of CI: an increase in the number of strains is correlated with a decrease in the proportion of the MD type, which is also correlated with an increase in bacterial density. All these data suggest that the CI of FM type results from a stronger effect than the MD type, which conflicts with the conventional hypotheses used to explain CI diversity in haplodiploids, and could provide some new information about CI mechanisms in insects.
机译:细胞质不相容性(CI)是通常由细胞内共生细菌Wolbachia引起的精卵不相容性,在二倍体物种中,这种致死性导致胚胎死亡。在二倍体物种中,根据不兼容的受精卵发育成雄性(雄性发育(MD))还是流产(雌性死亡率(FM)),存在两种CI类型。 CI允许在宿主群体中维持多种感染,因此允许在共感染菌株之间发生相互作用。在Leptopilina异质瘤中,三种Wolbachia菌株自然共存(wLhet1,wLhet2,wLhet3)。当这三个菌株都存在时,它们诱导出FM型的CI,而wLhet1单独表达MD和FM之间的CI表型。在这里,我们比较了涉及具有相同核背景但包含不同菌株混合物的昆虫品系的杂交中的CI效应。交配实验表明:(i)wLhet2和wLhet3单独作用时还诱导了一个中间CI,并表现出双向不相容性; (ii)在CI表达中的共感染菌株之间没有相互作用; (iii)雄性宿主中存在的沃尔巴氏菌的多样性影响CI的表达:菌株数目的增加与MD类型比例的减少有关,这也与细菌密度的增加有关。所有这些数据表明,FM型CI的作用要比MD型强,这与用来解释单倍体CI多样性的传统假设相抵触,并且可以提供有关昆虫CI机制的一些新信息。

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