Department of Medical Microbiology and Immunology, University of Wisconsin-Madison, Madison, WI, United States.
Front Cell Infect Microbiol. 2020 Dec 14;10:604897. doi: 10.3389/fcimb.2020.604897. eCollection 2020.
and spp. are widely prevalent Coccidian parasites that undergo sexual reproduction during their life cycle. can infect any warm-blooded animal in its asexual cycle; however, its sexual cycle is restricted to felines. spp. are usually restricted to one host species, and their whole life cycle is completed within this same host. The literature reviewed in this article comprises the recent findings regarding the unique biology of the sexual development of and spp. The molecular basis of sex in these pathogens has been significantly unraveled by new findings in parasite differentiation along with transcriptional analysis of and spp. pre-sexual and sexual stages. Focusing on the metabolic networks, analysis of these transcriptome datasets shows enrichment for several different metabolic pathways. Transcripts for glycolysis enzymes are consistently more abundant in cat infection stages than the asexual tachyzoite stage and spp. merozoite and gamete stages compared to sporozoites. Recent breakthroughs in host-pathogen interaction and host restriction have significantly expanded the understating of the unique biology of these pathogens. This review aims to critically explore advances in the sexual cycle of Coccidia parasites with the ultimate goal of comparing and analyzing the sexual cycle of spp. and .
和 spp. 是广泛存在的肉孢子虫寄生虫,在其生命周期中进行有性繁殖。 可以在无性循环中感染任何温血动物;然而,它的有性周期仅限于猫科动物。 spp. 通常局限于一种宿主物种,它们的整个生命周期都在同一宿主中完成。本文综述的文献包括关于 和 spp. 性发育独特生物学的最新发现。随着寄生虫分化的新发现以及对 和 spp. 性前和性阶段的转录分析,这些病原体中性别形成的分子基础已经得到了显著揭示。本文聚焦于代谢网络,对这些转录组数据集的分析显示,几种不同的代谢途径都有富集。在猫感染阶段,糖酵解酶的转录本比无性速殖子阶段和 spp. 裂殖子和配子阶段的转录本更为丰富,而与孢子阶段相比则更为丰富。宿主-病原体相互作用和宿主限制的最新突破显著扩展了对这些病原体独特生物学的理解。本文旨在批判性地探讨球虫寄生虫有性周期的进展,最终目的是比较和分析 和 spp. 的有性周期。