生物
配合类型
有性生殖
新生隐球菌
交配
群体感应
遗传学
细胞生物学
进化生物学
毒力
基因
作者
Xiuyun Tian,Guang‐Jun He,Pengjie Hu,Lei Chen,Changyu Tao,Yinglu Cui,Lan Shen,Weixin Ke,Hai-Jiao Xu,Youbao Zhao,Qijiang Xu,Feng‐Yan Bai,Bian Wu,Ence Yang,Xiaorong Lin,Linqi Wang
出处
期刊:Nature microbiology
日期:2018-05-17
卷期号:3 (6): 698-707
被引量:56
标识
DOI:10.1038/s41564-018-0160-4
摘要
Bacterial quorum sensing is a well-characterized communication system that governs a large variety of collective behaviours. By comparison, quorum sensing regulation in eukaryotic microbes remains poorly understood, especially its functional role in eukaryote-specific behaviours, such as sexual reproduction. Cryptococcus neoformans is a prevalent fungal pathogen that has two defined sexual cycles (bisexual and unisexual) and is a model organism for studying sexual reproduction in fungi. Here, we show that the quorum sensing peptide Qsp1 serves as an important signalling molecule for both forms of sexual reproduction. Qsp1 orchestrates various differentiation and molecular processes, including meiosis, the hallmark of sexual reproduction. It activates bisexual mating, at least in part through the control of pheromone, a signal necessary for bisexual activation. Notably, Qsp1 also plays a major role in the intercellular regulation of unisexual initiation and coordination, in which pheromone is not strictly required. Through a multi-layered genetic screening approach, we identified the atypical zinc finger regulator Cqs2 as an important component of the Qsp1 signalling cascade during both bisexual and unisexual reproduction. The absence of Cqs2 eliminates the Qsp1-stimulated mating response. Together, these findings extend the range of behaviours governed by quorum sensing to sexual development and meiosis. Quorum sensing (QS) is shown to control eukaryotic-specific behaviours. QS peptide Qsp1 plays a crucial role in the intercellular regulation of unisexual and bisexual reproduction in the ubiquitous fungal pathogen Cryptococcus neoformans.
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