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Genomic analysis of the causative agents of coccidiosis in domestic chickens

机译:家禽球虫病病原体的基因组分析

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摘要

Global production of chickens has trebled in the past two decades and they are now the most important source of dietary animal protein worldwide. Chickens are subject to many infectious diseases that reduce their performance and productivity. Coccidiosis, caused by apicomplexan protozoa of the genus Eimeria, is one of the most important poultry diseases. Understanding the biology of Eimeria parasites underpins development of new drugs and vaccines needed to improve global food security. We have produced annotated genome sequences of all seven species of Eimeria that infect domestic chickens, which reveal the full extent of previously described repeat-rich and repeat-poor regions and show that these parasites possess the most repeat-rich proteomes ever described. Furthermore, while no other apicomplexan has been found to possess retrotransposons, Eimeria is home to a family of chromoviruses. Analysis of Eimeria genes involved in basic biology and host-parasite interaction highlights adaptations to a relatively simple developmental life cycle and a complex array of co-expressed surface proteins involved in host cell binding.
机译:在过去的二十年中,鸡肉的全球产量增长了两倍,现在已成为全世界饮食动物蛋白的最重要来源。鸡患有许多传染病,会降低鸡的性能和生产率。球虫病是由艾美球虫属的复合体原生动物引起的,是最重要的家禽疾病之一。了解艾美球虫寄生虫的生物学,将为开发提高全球粮食安全所需的新药物和疫苗奠定基础。我们已经产生了所有7种感染家禽的艾美球虫的注释基因组序列,这些序列揭示了先前描述的重复富集区和重复富集区的完整范围,并表明这些寄生虫拥有迄今为止描述的最多重复富集的蛋白质组。此外,虽然没有发现其他apicomplexan具有逆转录转座子,但艾美球虫却是许多色病毒的家。对参与基本生物学和宿主-寄生虫相互作用的艾美球虫基因的分析突出显示了对相对简单的发育生命周期和参与宿主细胞结合的共表达表面蛋白复杂阵列的适应。

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