首页> 外文期刊>Evolution: International Journal of Organic Evolution >EXPERIMENTAL EVOLUTION SHOWS DROSOPHILA MELANOGASTER RESISTANCE TO A MICROSPORIDIAN PATHOGEN HAS FITNESS COSTS
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EXPERIMENTAL EVOLUTION SHOWS DROSOPHILA MELANOGASTER RESISTANCE TO A MICROSPORIDIAN PATHOGEN HAS FITNESS COSTS

机译:实验进化显示果蝇对微孢子虫病原菌的抵抗力较轻

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Most organisms experience strong selection to develop mechanisms to resist or tolerate their pathogens or parasites. Limits to adaptation are set by correlated responses to selection, for example reduced abilities to detect other parasites or trade-offs with other fitness components. For a few model systems it is now becoming possible to compare the evolutionary response to a broad range of natural enemies. In Drosophila, the evolutionary responses to ectoparasitic mites, parasitoids, and fungal and bacterial pathogens have previously been studied. Here replicate lines of D. melanogaster were exposed to the microsporidian parasite Tubulinosema kingi over a period of 61 weeks, with overlapping generations. Compared to controls, exposed lines had higher early-life fecundity and increased longevity when infected suggesting successful selection for resistance or tolerance. In the absence of the pathogen, exposed lines had lower fecundity when reared under harsh environmental conditions, and were poorer larval competitors than controls. They also had relatively higher densities of haemocytes, a component of the cellular immune system. Defense against this pathogen resembles more that against macroparasites than microsparasites, and this is interpreted in the light of what is known about the mechanisms of resistance to microsporidians.
机译:大多数生物都经历强烈的选择,以发展出抵抗或耐受其病原体或寄生虫的机制。适应的极限是通过对选择的相关响应来设置的,例如,降低检测其他寄生虫的能力或与其他适应性因素之间的权衡。对于某些模型系统,现在已经可以比较进化对各种天敌的反应。在果蝇中,以前已经研究了对果蝇寄生螨,寄生虫以及真菌和细菌病原体的进化反应。在这里,黑腹果蝇的复制品系在61周的时间内暴露于微孢子虫寄生虫金氏微管虫(Tubulinosema kingi),世代重叠。与对照相比,裸露的品系在感染时具有较高的早期繁殖力和更长的寿命,表明成功选择了抗性或耐受性。在没有病原体的情况下,裸露的品系在恶劣的环境条件下饲养时繁殖力较低,并且幼虫的竞争性比对照差。它们还具有相对较高的血红细胞密度,这是细胞免疫系统的组成部分。对这种病原体的防御比对微寄生虫的防御更像对微寄生虫的防御,这是根据对微孢子虫的抗性机制的已知知识来解释的。

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