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叶锈菌 F-box 蛋白编码基因:全基因组鉴定、特征分析及发病过程中的表达动态。

The F-box protein encoding genes of the leaf-rust fungi Puccinia triticina: genome-wide identification, characterization and expression dynamics during pathogenesis.

机构信息

School of Genomics and Molecular Breeding, ICAR-Indian Institute of Agricultural Biotechnology, Garhkhatanga, Ranchi, Jharkhand, 834003, India.

Division of Genetics, ICAR-Indian Agricultural Research Institute, New Delhi, 110012, India.

出版信息

Arch Microbiol. 2024 Apr 8;206(5):209. doi: 10.1007/s00203-024-03936-2.

Abstract

The F-box proteins in fungi perform diverse functions including regulation of cell cycle, circadian clock, development, signal transduction and nutrient sensing. Genome-wide analysis revealed 10 F-box genes in Puccinia triticina, the causal organism for the leaf rust disease in wheat and were characterized using in silico approaches for revealing phylogenetic relationships, gene structures, gene ontology, protein properties, sequence analysis and gene expression studies. Domain analysis predicted functional domains like WD40 and LRR at C-terminus along with the obvious presence of F-box motif in N-terminus. MSA showed amino acid replacements, which might be due to nucleotide substitution during replication. Phylogenetic analysis revealed the F-box proteins with similar domains to be clustered together while some sequences were spread out in different clades, which might be due to functional diversity. The clustering of Puccinia triticina GG705409 with Triticum aestivum TaAFB4/TaAFB5 in a single clade suggested the possibilities of horizontal gene transfer during the coevolution of P. triticina and wheat. Gene ontological annotation categorized them into three classes and were functionally involved in protein degradation through the protein ubiquitination pathway. Protein-protein interaction network revealed F-box proteins to interact with other components of the SCF complex involved in protein ubiquitination. Relative expression analysis of five F-box genes in a time course experiment denoted their involvement in leaf rust susceptible wheat plants. This study provides information on structure elucidation of F-box proteins of a basidiomycetes plant pathogenic fungi and their role during pathogenesis.

摘要

真菌中的 F-box 蛋白具有多种功能,包括细胞周期、生物钟、发育、信号转导和营养感应的调节。全基因组分析显示,在小麦叶锈病的病原体小麦柄锈菌中存在 10 个 F-box 基因,并通过计算机方法进行了特征描述,以揭示系统发育关系、基因结构、基因本体论、蛋白质特性、序列分析和基因表达研究。结构域分析预测了 C 末端具有 WD40 和 LRR 等功能结构域,以及 N 末端明显存在的 F-box 基序。多序列比对显示氨基酸替换,这可能是由于复制过程中的核苷酸替换。系统发育分析显示,具有相似结构域的 F-box 蛋白聚类在一起,而一些序列则分散在不同的分支中,这可能是由于功能多样性。小麦柄锈菌 GG705409 与小麦 TaAFB4/TaAFB5 聚类在单个分支中,表明在小麦柄锈菌和小麦的共同进化过程中存在水平基因转移的可能性。基因本体论注释将它们分为三类,并通过蛋白质泛素化途径参与蛋白质降解。蛋白质-蛋白质相互作用网络揭示了 F-box 蛋白与参与蛋白质泛素化的 SCF 复合物的其他成分相互作用。在时间过程实验中对五个 F-box 基因的相对表达分析表明它们参与了感病小麦植物的叶锈病。这项研究提供了关于担子菌植物病原真菌 F-box 蛋白结构阐明及其在发病机制中的作用的信息。

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