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展青霉抵抗低铜和高铜的途径及决定因素

Paths and determinants for Penicillium janthinellum to resist low and high copper.

作者信息

Xu Jian, Chen Guo-Li, Sun Xue-Zhe, Fan Xian-Wei, You-Zhi Li

机构信息

State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources; Key Laboratory of Ministry of Education for Microbial and Plant Genetic Engineering; College of Life Science and Technology, Guangxi University; 100 Daxue Road, Nanning, Guangxi 530004, P. R. China.

出版信息

Sci Rep. 2015 Aug 12;5:10590. doi: 10.1038/srep10590.

Abstract

Copper (Cu) tolerance was well understood in fungi yeasts but not in filamentous fungi. Filamentous fungi are eukaryotes but unlike eukaryotic fungi yeasts, which are a collection of various fungi that are maybe classified into different taxa but all characterized by growth as filamentous hyphae cells and with a complex morphology. The current knowledge of Cu resistance of filamentous fungi is still fragmental and therefore needs to be bridged. In this study, we characterized Cu resistance of Penicillium janthinellum strain GXCR and its Cu-resistance-decreasing mutants (EC-6 and UC-8), and conducted sequencing of a total of 6 transcriptomes from wild-type GXCR and mutant EC-6 grown under control and external Cu. Taken all the results together, Cu effects on the basal metabolism were directed to solute transport by two superfamilies of solute carrier and major facilitator, the buffering free CoA and Acyl-CoA pool in the peroxisome, F-type H(+)-transporting ATPases-based ATP production, V-type H(+)-transporting ATPases-based transmembrane transport, protein degradation, and alternative splicing of pre-mRNAs. Roles of enzymatic and non-enzymatic antioxidants in resistance to low and high Cu were defined. The backbone paths, signaling systems, and determinants that involve resistance of filamentous fungi to high Cu were determined, discussed and outlined in a model.

摘要

铜(Cu)耐受性在真菌酵母中已得到充分了解,但在丝状真菌中却并非如此。丝状真菌是真核生物,但与真核真菌酵母不同,真核真菌酵母是各种真菌的集合,这些真菌可能被归类为不同的分类群,但都以丝状菌丝细胞生长和复杂的形态为特征。目前关于丝状真菌抗铜性的知识仍然支离破碎,因此需要加以整合。在本研究中,我们对展青霉GXCR菌株及其铜抗性降低突变体(EC - 6和UC - 8)的铜抗性进行了表征,并对野生型GXCR和突变体EC - 6在对照和外源铜条件下生长的总共6个转录组进行了测序。综合所有结果,铜对基础代谢的影响涉及溶质载体和主要促进剂两个超家族的溶质运输、过氧化物酶体中游离辅酶A和酰基辅酶A池的缓冲、基于F型H(+) - 转运ATP酶的ATP产生、基于V型H(+) - 转运ATP酶的跨膜运输、蛋白质降解以及前体mRNA的可变剪接。确定了酶促和非酶促抗氧化剂在抗低铜和高铜中的作用。在一个模型中确定、讨论并概述了丝状真菌对高铜抗性所涉及的主干途径、信号系统和决定因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bca9/4642507/2d80480eb9a1/srep10590-f1.jpg

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