The C2H2-type zinc-finger regulator AoKap5 is required for the growth and kojic acid synthesis in Aspergillus oryzae

IF 2.4 3区 生物学 Q3 GENETICS & HEREDITY
Yuzhen Li , Ziming Chen , Feng Zhang , Tianming Chen , Junxia Fan , Xin Deng , Xiaocui Lei , Bin Zeng , Zhe Zhang
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Abstract

Aspergillus oryzae is an important filamentous fungus widely used for the industrial production of fermented foods and secondary metabolites. The clarifying of the mechanism of the growth and secondary metabolites in A. oryzae is important for its industrial production and utilization. Here, the C2H2-type zinc-finger protein AoKap5 was characterized to be involved in the growth and kojic acid production in A. oryzae. The Aokap5-disrupted mutants were constructed by the CRISPR/Cas9 system, which displayed increased colony growth but decreased conidial formation. Deletion of Aokap5 enhanced the tolerance to cell-wall and oxidative but not osmotic stress. The transcriptional activation assay revealed that AoKap5 itself didn’t have transcriptional activation activity. Disruption of Aokap5 resulted in the reduced production of kojic acid, coupled with the reduced expression of the kojic acid synthesis genes kojA and kojT. Meanwhile, overexpression of kojT could rescue the decreased production of kojic acid in Aokap5-deletion strain, indicating that Aokap5 serves upstream of kojT. Furthermore, the yeast one-hybrid assay demonstrated that AoKap5 could directly bind to the kojT promoter. These findings suggest that AoKap5 regulates kojic acid production through binding to the kojT promoter. This study provides an insight into the role of zinc finger protein in the growth and kojic acid biosynthesis of A. oryzae.

c2h2型锌指调节剂AoKap5是米曲霉生长和合成曲酸所必需的
米曲霉是一种重要的丝状真菌,广泛应用于发酵食品和次生代谢物的工业生产。阐明米霉的生长机制和次生代谢产物对米霉的工业生产和利用具有重要意义。在这里,c2h2型锌指蛋白AoKap5被表征参与了a.m oryzae的生长和曲酸的产生。通过CRISPR/Cas9系统构建的aokap5突变体显示集落生长增加,但分生孢子形成减少。Aokap5的缺失增强了对细胞壁和氧化胁迫的耐受性,而不是渗透胁迫。转录激活实验显示,AoKap5本身不具有转录激活活性。破坏Aokap5导致曲酸产量减少,同时曲酸合成基因kojA和kojT的表达减少。同时,在Aokap5缺失菌株中,kojT的过表达可以弥补曲酸产量的减少,说明Aokap5在kojT的上游起作用。此外,酵母单杂交实验表明,AoKap5可以直接结合kojT启动子。这些发现表明,AoKap5通过结合kojT启动子来调节曲酸的产生。本研究揭示了锌指蛋白在米曲霉生长和曲酸生物合成中的作用。
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来源期刊
Fungal Genetics and Biology
Fungal Genetics and Biology 生物-遗传学
CiteScore
6.20
自引率
3.30%
发文量
66
审稿时长
85 days
期刊介绍: Fungal Genetics and Biology, formerly known as Experimental Mycology, publishes experimental investigations of fungi and their traditional allies that relate structure and function to growth, reproduction, morphogenesis, and differentiation. This journal especially welcomes studies of gene organization and expression and of developmental processes at the cellular, subcellular, and molecular levels. The journal also includes suitable experimental inquiries into fungal cytology, biochemistry, physiology, genetics, and phylogeny. Fungal Genetics and Biology publishes basic research conducted by mycologists, cell biologists, biochemists, geneticists, and molecular biologists. Research Areas include: • Biochemistry • Cytology • Developmental biology • Evolutionary biology • Genetics • Molecular biology • Phylogeny • Physiology.
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