Jiangxi Key Laboratory of Bioprocess Engineering and Co-Innovation Center for In-Vitro Diagnostic Reagents and Devices of Jiangxi Province, College of Life Sciences, Jiangxi Science and Technology Normal University, Nanchang, 330013, China.
J Ind Microbiol Biotechnol. 2019 Dec;46(12):1769-1780. doi: 10.1007/s10295-019-02236-9. Epub 2019 Sep 20.
The ZRT, IRT-like protein (ZIP) family exists in many species and plays an important role in many biological processes, but little is known about ZIP genes in Aspergillus oryzae. Here, 10 ZIP genes in A. oryzae were identified and these were classified into four groups based on phylogenetic analysis. The structures of these AoZip genes were determined, which indicated a great divergence of AoZip members from different groups. Synteny analysis revealed that AoZip7, AoZip8, and AoZip10 are conserved among Aspergillus species. We also found that the promoter regions of AoZip2, AoZip7, AoZip8, and AoZip10 contain multiple conserved response elements. Expression analysis revealed that AoZips exhibited different expression patterns in response to different metal treatments. Moreover, overexpression and RNA-interference (RNAi) of AoZip2 led to a decrease in mycelium growth diameter and inhibited conidia formation. AoZip2 overexpression and RNAi strains showed distinct sensitivity to severely Zn/Mn-depleted stress. In addition, kojic acid production was markedly lower in AoZip2 overexpression and RNAi strains than in the control strains, and the expression of kojA, kojR, and kojT was down-regulated in AoZip2 overexpression and RNAi strains. This study provides new insights into our understanding of ZIP genes and lays a foundation for further investigation of their roles in Aspergillus oryzae.
ZRT、IRT 样蛋白(ZIP)家族存在于许多物种中,在许多生物过程中发挥着重要作用,但关于米曲霉中的 ZIP 基因知之甚少。本研究在米曲霉中鉴定了 10 个 ZIP 基因,并根据系统发育分析将其分为 4 组。这些 AoZip 基因的结构被确定,表明不同组别的 AoZip 成员具有很大的差异。共线性分析表明,AoZip7、AoZip8 和 AoZip10 在曲霉菌种中是保守的。我们还发现,AoZip2、AoZip7、AoZip8 和 AoZip10 的启动子区域含有多个保守的响应元件。表达分析表明,AoZips 对不同金属处理表现出不同的表达模式。此外,AoZip2 的过表达和 RNA 干扰(RNAi)导致菌丝生长直径减小,并抑制分生孢子形成。AoZip2 过表达和 RNAi 菌株对严重缺锌/锰胁迫表现出明显的敏感性。此外,与对照菌株相比,AoZip2 过表达和 RNAi 菌株中的曲酸产量明显降低,AoZip2 过表达和 RNAi 菌株中的 kojA、kojR 和 kojT 的表达下调。本研究为我们理解 ZIP 基因提供了新的见解,并为进一步研究其在米曲霉中的作用奠定了基础。