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新型隐球菌中不依赖信息素的孤雌生殖发育

Pheromone independent unisexual development in Cryptococcus neoformans.

作者信息

Gyawali Rachana, Zhao Youbao, Lin Jianfeng, Fan Yumeng, Xu Xinping, Upadhyay Srijana, Lin Xiaorong

机构信息

Department of Biology, Texas A&M University, College Station, United States of America.

出版信息

PLoS Genet. 2017 May 3;13(5):e1006772. doi: 10.1371/journal.pgen.1006772. eCollection 2017 May.

Abstract

The fungus Cryptococcus neoformans can undergo a-α bisexual and unisexual reproduction. Completion of both sexual reproduction modes requires similar cellular differentiation processes and meiosis. Although bisexual reproduction generates equal number of a and α progeny and is far more efficient than unisexual reproduction under mating-inducing laboratory conditions, the α mating type dominates in nature. Population genetic studies suggest that unisexual reproduction by α isolates might have contributed to this sharply skewed distribution of the mating types. However, the predominance of the α mating type and the seemingly inefficient unisexual reproduction observed under laboratory conditions present a conundrum. Here, we discovered a previously unrecognized condition that promotes unisexual reproduction while suppressing bisexual reproduction. Pheromone is the principal stimulus for bisexual development in Cryptococcus. Interestingly, pheromone and other components of the pheromone pathway, including the key transcription factor Mat2, are not necessary but rather inhibitory for Cryptococcus to complete its unisexual cycle under this condition. The inactivation of the pheromone pathway promotes unisexual reproduction despite the essential role of this pathway in non-self-recognition during bisexual reproduction. Nonetheless, the requirement for the known filamentation regulator Znf2 and the expression of hyphal or basidium specific proteins remain the same for pheromone-dependent or independent sexual reproduction. Transcriptome analyses and an insertional mutagenesis screen in mat2Δ identified calcineurin being essential for this process. We further found that Znf2 and calcineurin work cooperatively in controlling unisexual development in this fungus. These findings indicate that Mat2 acts as a repressor of pheromone-independent unisexual development while serving as an activator for a-α bisexual development. The bi-functionality of Mat2 might have allowed it to act as a toggle switch for the mode of sexual development in this ubiquitous eukaryotic microbe.

摘要

新型隐球菌真菌可进行a-α两性和单性繁殖。两种有性繁殖模式的完成都需要相似的细胞分化过程和减数分裂。尽管在诱导交配的实验室条件下,两性繁殖产生的a和α后代数量相等,且比单性繁殖效率高得多,但α交配型在自然界中占主导地位。群体遗传学研究表明,α分离株的单性繁殖可能导致了这种交配型的急剧偏态分布。然而,α交配型的优势以及在实验室条件下观察到的看似低效的单性繁殖,构成了一个难题。在此,我们发现了一种先前未被认识的条件,它促进单性繁殖,同时抑制两性繁殖。信息素是新型隐球菌两性发育的主要刺激因素。有趣的是,在这种条件下,信息素和信息素途径的其他成分,包括关键转录因子Mat2,并非新型隐球菌完成其单性周期所必需,反而具有抑制作用。尽管信息素途径在两性繁殖的非自我识别中起着重要作用,但其失活仍能促进单性繁殖。尽管如此,对于依赖信息素或不依赖信息素的有性繁殖,已知的丝状化调节因子Znf2以及菌丝或担子特异性蛋白的表达需求保持不变。转录组分析和对mat2Δ进行的插入诱变筛选确定钙调神经磷酸酶是这一过程所必需的。我们进一步发现,Znf2和钙调神经磷酸酶在控制这种真菌的单性发育中协同发挥作用。这些发现表明,Mat2在作为a-α两性发育的激活因子的同时,还作为不依赖信息素的单性发育的抑制因子。Mat2的双功能性可能使其成为这种普遍存在的真核微生物有性发育模式的切换开关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91d6/5435349/fba0752bc7ff/pgen.1006772.g001.jpg

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