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锈菌(柄锈菌目)中寡肽转运蛋白基因的显著扩张表明其在专性生物营养的养分获取方面具有特化现象。

A Remarkable Expansion of Oligopeptide Transporter Genes in Rust Fungi (Pucciniales) Suggests a Specialization in Nutrient Acquisition for Obligate Biotrophy.

作者信息

Guerillot Pamela, Salamov Asaf, Louet Clémentine, Morin Emmanuelle, Frey Pascal, Grigoriev Igor V, Duplessis Sébastien

机构信息

Université de Lorraine, INRAE, UMR 1136 IAM, 54000 Nancy, France.

US Department of Energy Joint Genome Institute, Lawrence Berkeley National Laboratory, Berkeley, CA, U.S.A.

出版信息

Phytopathology. 2023 Feb;113(2):252-264. doi: 10.1094/PHYTO-04-22-0128-R. Epub 2023 Feb 12.

Abstract

Nutrient acquisition by rust fungi during their biotrophic growth has been assigned to a few transporters expressed in haustorial infection structures. We performed a comparative genomic analysis of all transporter genes (hereafter termed transportome) classified according to the Transporter Classification Database, focusing specifically on rust fungi (order Pucciniales) versus other species in the Dikarya. We also surveyed expression of transporter genes in the poplar rust fungus for which transcriptomics data are available across the whole life cycle. Despite a significant increase in gene number, rust fungi presented a reduced transportome compared with most fungi in the Dikarya. However, a few transporter families in the subclass Porters showed significant expansions. Notably, three metal transport-related families involved in the import, export, and sequestration of metals were expanded in Pucciniales and expressed at various stages of the rust life cycle, suggesting a tight regulation of metal homeostasis. The most remarkable gene expansion in the Pucciniales was observed for the oligopeptide transporter (OPT) family, with 25 genes on average compared with seven to 14 genes in the other surveyed taxonomical ranks. A phylogenetic analysis showed several specific expansion events at the root of the order Pucciniales with subsequent expansions in rust taxonomical families. The OPT genes showed dynamic expression patterns along the rust life cycle and more particularly during infection of the poplar host tree, suggesting a possible specialization for the acquisition of nitrogen and sulfur through the transport of oligopeptides from the host during biotrophic growth.

摘要

锈菌在其活体营养生长阶段获取养分的过程已被归因于在吸器感染结构中表达的少数转运蛋白。我们根据转运蛋白分类数据库对所有转运蛋白基因(以下简称转运组)进行了比较基因组分析,特别关注锈菌(柄锈菌目)与双核菌亚门中的其他物种。我们还调查了杨树锈菌中转运蛋白基因的表达情况,该锈菌在其整个生命周期都有转录组学数据可用。尽管基因数量显著增加,但与双核菌亚门中的大多数真菌相比,锈菌的转运组有所减少。然而,载体亚类中的一些转运蛋白家族出现了显著扩张。值得注意的是,参与金属导入、输出和螯合的三个与金属转运相关的家族在柄锈菌目中有所扩张,并在锈菌生命周期的各个阶段表达,这表明对金属稳态有严格的调控。在柄锈菌目中观察到最显著的基因扩张是寡肽转运蛋白(OPT)家族,平均有25个基因,而在其他被调查的分类等级中为7至14个基因。系统发育分析表明,在柄锈菌目根部发生了几次特定的扩张事件,随后在锈菌分类家族中也有扩张。OPT基因在锈菌生命周期中呈现出动态表达模式,尤其是在感染杨树宿主树期间,这表明在活体营养生长阶段,通过从宿主转运寡肽来获取氮和硫可能具有特定的适应性。

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