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锈菌(柄锈菌目)转录因子的注释调查和生命周期转录组学研究确定了冷休克蛋白在休眠解除中的可能作用。

Annotation survey and life cycle transcriptomics of transcription factors in rust fungi (Pucciniales) identify a possible role for cold shock proteins in dormancy exit.

作者信息

Louet Clémentine, Blot Carla, Shelest Ekaterina, Guerillot Pamela, Salamov Asaf, Zannini Flavien, Pétrowski Jérémy, Grigoriev Igor V, Frey Pascal, Duplessis Sebastien

机构信息

Université de Lorraine, INRAE, IAM, F-54000 Nancy, France.

School of biological Sciences, University of Portsmouth, King Henry 1 Street, PO1 D2Y Portsmouth, United Kingdom.

出版信息

Fungal Genet Biol. 2022 Jul;161:103698. doi: 10.1016/j.fgb.2022.103698. Epub 2022 Apr 25.

Abstract

Fungi of the order Pucciniales are obligate plant biotrophs causing rust diseases. They exhibit a complex life cycle with the production of up to five spore types, infection of two unrelated hosts and an overwintering stage. Transcription factors (TFs) are key regulators of gene expression in eukaryote cells. In order to better understand genetic programs expressed during major transitions of the rust life cycle, we surveyed the complement of TFs in fungal genomes with an emphasis on Pucciniales. We found that despite their large gene numbers, rust genomes have a reduced repertoire of TFs compared to other fungi. The proportions of C2H2 and Zinc cluster - two of the most represented TF families in fungi - indicate differences in their evolutionary relationships in Pucciniales and other fungal taxa. The regulatory gene family encoding cold shock protein (CSP) showed a striking expansion in Pucciniomycotina with specific duplications in the order Pucciniales. The survey of expression profiles collected by transcriptomics along the life cycle of the poplar rust fungus revealed TF genes related to major biological transitions, e.g. response to environmental cues and host infection. Particularly, poplar rust CSPs were strongly expressed in basidia produced after the overwintering stage suggesting a possible role in dormancy exit. Expression during transition from dormant telia to basidia confirmed the specific expression of the three poplar rust CSP genes. Their heterologous expression in yeast improved cell growth after cold stress exposure, suggesting a probable regulatory function when the poplar rust fungus exits dormancy. This study addresses for the first time TF and regulatory genes involved in developmental transition in the rust life cycle opening perspectives to further explore molecular regulation in the biology of the Pucciniales.

摘要

柄锈菌目真菌是专性植物活体营养菌,可引发锈病。它们具有复杂的生命周期,可产生多达五种孢子类型,侵染两种不相关的寄主,并经历一个越冬阶段。转录因子是真核细胞中基因表达的关键调节因子。为了更好地理解锈菌生命周期主要转变过程中表达的遗传程序,我们调查了真菌基因组中转录因子的组成,重点关注柄锈菌目。我们发现,尽管锈菌基因组基因数量众多,但与其他真菌相比,其转录因子种类有所减少。真菌中最具代表性的两个转录因子家族——C2H2和锌指蛋白家族,在柄锈菌目和其他真菌类群中的比例表明它们在进化关系上存在差异。编码冷休克蛋白(CSP)的调控基因家族在担子菌亚门中显著扩张,在柄锈菌目中有特定的重复。通过转录组学对杨树锈菌生命周期各阶段收集的表达谱进行调查,发现了与主要生物学转变相关的转录因子基因,例如对环境信号和寄主侵染的反应。特别是,杨树锈菌的冷休克蛋白在越冬阶段后产生的担子中强烈表达,这表明其在休眠解除中可能发挥作用。从休眠的冬孢子到担子的转变过程中的表达证实了杨树锈菌三个冷休克蛋白基因的特异性表达。它们在酵母中的异源表达改善了冷胁迫暴露后的细胞生长,这表明杨树锈菌休眠解除时可能具有调控功能。本研究首次探讨了参与锈菌生命周期发育转变的转录因子和调控基因,为进一步探索柄锈菌目生物学中的分子调控开辟了新的视角。

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