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角质酶基因家族在真菌与植物相互作用中的全基因组鉴定、分类及表达分析以及新月弯孢霉中一个假定的ClCUT7的功能分析

Genome-wide identification, classification and expression analysis in fungal-plant interactions of cutinase gene family and functional analysis of a putative ClCUT7 in Curvularia lunata.

作者信息

Liu Tong, Hou Jumei, Wang Yuying, Jin Yazhong, Borth Wayne, Zhao Fengzhou, Liu Zheng, Hu John, Zuo Yuhu

机构信息

Institute of Applied Microbiology and Plant Pathogenic Fungi, Agricultural College, Heilongjiang Bayi Agricultural University, Daqing, 163319, Heilongjiang, People's Republic of China.

Department of Plant and Environmental Protection Sciences, University of Hawaii, 3190 Maile Way, Honolulu, HI, 96822, USA.

出版信息

Mol Genet Genomics. 2016 Jun;291(3):1105-15. doi: 10.1007/s00438-016-1168-1. Epub 2016 Jan 14.

Abstract

Cutinase is described as playing various roles in fungal-plant pathogen interactions, such as eliciting host-derived signals, fungal spore attachment and carbon acquisition during saprophytic growth. However, the characteristics of the cutinase genes, their expression in compatible interactions and their roles in pathogenesis have not been reported in Curvularia lunata, an important leaf spot pathogen of maize in China. Therefore, a cutinase gene family analysis could have profound significance. In this study, we identified 13 cutinase genes (ClCUT1 to ClCUT13) in the C. lunata genome. Multiple sequence alignment showed that most fungal cutinase proteins had one highly conserved GYSQG motif and a similar DxVCxG[ST]-LIVMF-x(3)H motif. Gene structure analyses of the cutinases revealed a complex intron-exon pattern with differences in the position and number of introns and exons. Based on phylogenetic relationship analysis, C. lunata cutinases and 78 known cutinase proteins from other fungi were classified into four groups with subgroups, but the C. lunata cutinases clustered in only three of the four groups. Motif analyses showed that each group of cutinases from C. lunata had a common motif. Real-time PCR indicated that transcript levels of the cutinase genes in a compatible interaction between pathogen and host had varied expression patterns. Interestingly, the transcript levels of ClCUT7 gradually increased during early pathogenesis with the most significant up-regulation at 3 h post-inoculation. When ClCUT7 was deleted, pathogenicity of the mutant decreased on unwounded maize (Zea mays) leaves. On wounded maize leaves, however, the mutant caused symptoms similar to the wild-type strain. Moreover, the ClCUT7 mutant had an approximately 10 % reduction in growth rate when cutin was the sole carbon source. In conclusion, we identified and characterized the cutinase family genes of C. lunata, analyzed their expression patterns in a compatible host-pathogen interaction, and explored the role of ClCUT7 in pathogenicity. This work will increase our understanding of cutinase genes in other fungal-plant pathogens.

摘要

角质酶在真菌与植物病原体的相互作用中发挥着多种作用,如引发宿主衍生信号、真菌孢子附着以及腐生生长期间的碳获取。然而,在中国玉米重要叶斑病病原菌新月弯孢菌中,角质酶基因的特征、它们在亲和互作中的表达及其在致病过程中的作用尚未见报道。因此,对角质酶基因家族进行分析可能具有深远意义。在本研究中,我们在新月弯孢菌基因组中鉴定出13个角质酶基因(ClCUT1至ClCUT13)。多序列比对显示,大多数真菌角质酶蛋白具有一个高度保守的GYSQG基序和一个相似的DxVCxG[ST]-LIVMF-x(3)H基序。角质酶的基因结构分析揭示了一种复杂的内含子-外显子模式,内含子和外显子的位置和数量存在差异。基于系统发育关系分析,新月弯孢菌角质酶和来自其他真菌的78种已知角质酶蛋白被分为四个组及亚组,但新月弯孢菌角质酶仅聚集在四个组中的三个组中。基序分析表明,新月弯孢菌的每组角质酶都有一个共同基序。实时PCR表明,在病原体与宿主的亲和互作中,角质酶基因的转录水平具有不同的表达模式。有趣的是,ClCUT7的转录水平在发病早期逐渐升高,在接种后3小时上调最为显著。当ClCUT7缺失时,突变体在未受伤的玉米叶片上的致病性降低。然而,在受伤的玉米叶片上,突变体引起的症状与野生型菌株相似。此外,当角质是唯一碳源时,ClCUT7突变体的生长速率降低了约10%。总之,我们鉴定并表征了新月弯孢菌的角质酶家族基因,分析了它们在亲和宿主-病原体互作中的表达模式,并探讨了ClCUT7在致病性中的作用。这项工作将增进我们对其他真菌-植物病原体中角质酶基因的理解。

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