DNA cytosine methyltransferases differentially regulate genome-wide hypermutation and interhomolog recombination in Trichoderma reesei meiosis

Author:

Jovanska Lavernchy1,Lin I-Chen12,Yao Jhong-Syuan1,Chen Chia-Ling1,Liu Hou-Cheng1,Li Wan-Chen1,Chuang Yu-Chien1,Chuang Chi-Ning1,Yu Albert Chen-Hsin1ORCID,Lin Hsin-Nan1,Pong Wen-Li1,Yu Chang-I1,Su Ching-Yuan1,Chen Yi-Ping1,Chen Ruey-Shyang3,Hsueh Yi-Ping1ORCID,Yuan Hanna S1ORCID,Timofejeva Ljudmilla14,Wang Ting-Fang13ORCID

Affiliation:

1. Institute of Molecular Biology, Academia Sinica , Taipei  11529 , Taiwan

2. Chi-Mei Medical Center , Tainan  71004 , Taiwan

3. Department of Biochemical Science and Technology, National Chiayi University , Chiayi , Taiwan

4. Centre of Estonian Rural Research and Knowledge , J. Aamisepa 1 , Jõgeva  48309 , Estonia

Abstract

Abstract Trichoderma reesei is an economically important enzyme producer with several unique meiotic features. spo11, the initiator of meiotic double-strand breaks (DSBs) in most sexual eukaryotes, is dispensable for T. reesei meiosis. T. reesei lacks the meiosis-specific recombinase Dmc1. Rad51 and Sae2, the activator of the Mre11 endonuclease complex, promote DSB repair and chromosome synapsis in wild-type and spo11Δ meiosis. DNA methyltransferases (DNMTs) perform multiple tasks in meiosis. Three DNMT genes (rid1, dim2 and dimX) differentially regulate genome-wide cytosine methylation and C:G-to-T:A hypermutations in different chromosomal regions. We have identified two types of DSBs: type I DSBs require spo11 or rid1 for initiation, whereas type II DSBs do not rely on spo11 and rid1 for initiation. rid1 (but not dim2) is essential for Rad51-mediated DSB repair and normal meiosis. rid1 and rad51 exhibit a locus heterogeneity (LH) relationship, in which LH-associated proteins often regulate interconnectivity in protein interaction networks. This LH relationship can be suppressed by deleting dim2 in a haploid rid1Δ (but not rad51Δ) parental strain, indicating that dim2 and rid1 share a redundant function that acts earlier than rad51 during early meiosis. In conclusion, our studies provide the first evidence of the involvement of DNMTs during meiotic initiation and recombination.

Funder

Institute of Molecular Biology, Academia Sinica, Taiwan, Republic of China

National Science and Technology Council

Academia Sinica

Publisher

Oxford University Press (OUP)

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