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ProA,一种真菌生殖体发育的转录调控因子,调控内生真菌 Epichloë festucae-黑麦草共生体中叶片菌丝网络的发育。

ProA, a transcriptional regulator of fungal fruiting body development, regulates leaf hyphal network development in the Epichloë festucae-Lolium perenne symbiosis.

机构信息

Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa, Nagoya, 464-8601, Japan; Institute of Fundamental Sciences, Massey University, Private Bag 11222, Palmerston North, 4442, New Zealand.

出版信息

Mol Microbiol. 2013 Nov;90(3):551-68. doi: 10.1111/mmi.12385. Epub 2013 Sep 18.

Abstract

Transcription factors containing a Zn(II)2 Cys6 binuclear cluster DNA-binding domain are unique to fungi and are key regulators of fungal growth and development. The C6-Zn transcription factor, Pro1, in Sordaria macrospora is crucial for maturation of sexual fruiting bodies. In a forward genetic screen to identify Epichloë festucae symbiosis genes we identified a mutant with an insertion in proA. Plants infected with the proA mutant underwent premature senescence. Hyphae of ΔproA had a proliferative pattern of growth within the leaves of Lolium perenne. Targeted deletion of proA recapitulated this phenotype and introduction of a wild-type gene complemented the mutation. ΔproA was defective in hyphal fusion. qPCR analysis of E. festucae homologues of S. macrospora genes differentially expressed in Δpro1 identified esdC, encoding a glycogen-binding protein, as a target of ProA. Electrophoretic mobility shift assay analysis identified two binding sites for ProA in the intergenic region of esdC and a divergently transcribed gene, EF320. Both esdC and EF320 are highly expressed in a wild-type E. festucae-grass association but downregulated in a proA-mutant association. These results show that ProA is a key regulator of in planta specific growth of E. festucae, and therefore crucial for maintaining a mutualistic symbiotic interaction.

摘要

含有 Zn(II)2 Cys6 双核簇 DNA 结合域的转录因子是真菌所特有的,是真菌生长和发育的关键调节剂。 Sordaria macrospora 中的 C6-Zn 转录因子 Pro1 对于成熟的有性生殖体至关重要。在正向遗传筛选以鉴定 Epichloë festucae 共生基因时,我们在 proA 中发现了一个插入突变体。感染 proA 突变体的植物会过早衰老。ΔproA 的菌丝在 Lolium perenne 的叶片内呈现出增殖性生长模式。proA 的靶向缺失重现了这种表型,并且引入野生型基因可弥补该突变。ΔproA 在菌丝融合方面存在缺陷。对 S. macrospora 基因在Δpro1 中差异表达的 E. festucae 同源物进行 qPCR 分析,确定编码糖原结合蛋白的 esdC 是 ProA 的靶标。电泳迁移率变动分析鉴定了 ProA 在 esdC 和一个转录方向相反的基因 EF320 的基因间区域的两个结合位点。esdC 和 EF320 在野生型 E. festucae-草共生体中高度表达,但在 proA 突变体共生体中下调。这些结果表明 ProA 是 E. festucae 在植物体内特定生长的关键调节剂,因此对于维持互利共生关系至关重要。

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