首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >Cytonuclear Epistasis Controls the Density of Symbiont Wolbachia pipientis in Nongonadal Tissues of Mosquito Culex quinquefasciatus
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Cytonuclear Epistasis Controls the Density of Symbiont Wolbachia pipientis in Nongonadal Tissues of Mosquito Culex quinquefasciatus

机译:胞核上皮控制蚊子库克斯蚊的非性腺组织中共生Wolbachia pipientis的密度。

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摘要

Wolbachia pipientis, a bacterial symbiont infecting arthropods and nematodes, is vertically transmitted through the female germline and manipulates its host’s reproduction to favor infected females. Wolbachia also infects somatic tissues where it can cause nonreproductive phenotypes in its host, including resistance to viral pathogens. Wolbachia-mediated phenotypes are strongly associated with the density of Wolbachia in host tissues. Little is known, however, about how Wolbachia density is regulated in native or heterologous hosts. Here, we measure the broad-sense heritability of Wolbachia density among families in field populations of the mosquito Culex pipiens, and show that densities in ovary and nongonadal tissues of females in the same family are not correlated, suggesting that Wolbachia density is determined by distinct mechanisms in the two tissues. Using introgression analysis between two different strains of the closely related species C. quinquefasciatus, we show that Wolbachia densities in ovary tissues are determined primarily by cytoplasmic genotype, while densities in nongonadal tissues are determined by both cytoplasmic and nuclear genotypes and their epistatic interactions. Quantitative-trait-locus mapping identified two major-effect quantitative-trait loci in the C. quinquefasciatus genome explaining a combined 23% of variance in Wolbachia density, specifically in nongonadal tissues. A better understanding of how Wolbachia density is regulated will provide insights into how Wolbachia density can vary spatiotemporally in insect populations, leading to changes in Wolbachia-mediated phenotypes such as viral pathogen resistance.
机译:pipientis Wolbachia pipientis是一种感染节肢动物和线虫的细菌共生体,可通过雌性种系垂直传播,并操纵宿主的繁殖,从而有利于感染的雌性。沃尔巴克氏菌还会感染体细胞组织,在该组织中会引起宿主的非生殖表型,包括对病毒病原体的抗性。 Wolbachia介导的表型与宿主组织中Wolbachia的密度密切相关。然而,关于如何在天然或异源宿主中调节沃尔巴克氏菌密度知之甚少。在这里,我们测量了蚊子库蚊(Culex pipiens)野外种群中各科之间的沃尔巴氏密度的广义遗传力,并显示同一家庭中女性卵巢和非性腺组织的密度不相关,这表明沃尔巴氏密度是由不同的在两个组织中的机制。使用紧密相关物种西洋参C.quinquefasciatus的两个不同菌株之间的基因渗入分析,我们发现卵巢组织中的Wolbachia密度主要由细胞质基因型决定,而非性腺组织中的密度由细胞质和核基因型及其上位相互作用决定。数量性状基因座作图鉴定了西洋参毛线虫基因组中的两个主要影响数量性状基因座,解释了沃尔巴克氏菌密度(特别是在非性腺组织中)的23%的方差组合。对Wolbachia密度如何调控的更好理解将提供有关Wolbachia密度如何在昆虫种群中时空变化,从而导致Wolbachia介导的表型(例如病毒病原体抗性)变化的见解。

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