Regulatory basis for reproductive flexibility in a meningitis-causing fungal pathogen

脑膜炎致病真菌病原体生殖灵活性的调控基础

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作者:Pengjie Hu # ,Hao Ding # ,Huimin Liu # ,Yulin Yang ,Lei Chen ,Guang-Jun He ,Weixin Ke ,Ping Zhu ,Xiuyun Tian ,Yan Peng ,Zhenghao Shen ,Xiaoxia Yao ,Changyu Tao ,Ence Yang ,Guojian Liao ,Xiao Liu ,Linqi Wang

Abstract

Pathogenic fungi of the genus Cryptococcus can undergo two sexual cycles, involving either bisexual diploidization (after fusion of haploid cells of different mating type) or unisexual diploidization (by autodiploidization of a single cell). Here, we construct a gene-deletion library for 111 transcription factor genes in Cryptococcus deneoformans, and explore the roles of these regulatory networks in the two reproductive modes. We show that transcription factors crucial for bisexual syngamy induce the expression of known mating determinants as well as other conserved genes of unknown function. Deletion of one of these genes, which we term FMP1, leads to defects in bisexual reproduction in C. deneoformans, its sister species Cryptococcus neoformans, and the ascomycete Neurospora crassa. Furthermore, we show that a recently evolved regulatory cascade mediates pre-meiotic unisexual autodiploidization, supporting that this reproductive process is a recent evolutionary innovation. Our findings indicate that genetic circuits with different evolutionary ages govern hallmark events distinguishing unisexual and bisexual reproduction in Cryptococcus.

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