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调控效应基因表达作为协同波在茎点霉属:一种两人游戏。

Regulation of effector gene expression as concerted waves in Leptosphaeria maculans: a two-player game.

机构信息

Université Paris-Saclay, INRAE, UR BIOGER, 91120, Palaiseau, France.

出版信息

New Phytol. 2024 Apr;242(1):247-261. doi: 10.1111/nph.19581. Epub 2024 Feb 15.

Abstract

Effector genes, encoding molecules involved in disease establishment, are concertedly expressed throughout the lifecycle of plant-pathogenic fungi. However, little is known about how effector gene expression is regulated. Since many effector genes are located in repeat-rich regions, the role of chromatin remodeling in their regulation was recently investigated, notably establishing that the repressive histone modification H3K9me3, deposited by KMT1, was involved in several fungal species including Leptosphaeria maculans. Nevertheless, previous data suggest that a second regulatory layer, probably involving a specific transcription factor (TF), might be required. In L. maculans, a Dothideomycete causing stem canker of oilseed rape, we identified the ortholog of Pf2, a TF belonging to the Zn2Cys6 fungal-specific family, and described as essential for pathogenicity and effector gene expression. We investigated its role together with KMT1, by inactivating and over-expressing LmPf2 in a wild-type strain and a ∆kmt1 mutant. Functional analyses of the corresponding transformants highlighted an essential role of LmPf2 in the establishment of pathogenesis and we found a major effect of LmPf2 on the induction of effector gene expression once KMT1 repression is lifted. Our results show, for the first time, a dual control of effector gene expression.

摘要

效应子基因,即编码与疾病发生相关分子的基因,在植物病原真菌的整个生命周期中都被协同表达。然而,人们对效应子基因表达的调控方式知之甚少。由于许多效应子基因位于富含重复序列的区域,因此最近研究了染色质重塑在其调控中的作用,特别是确定了由 KMT1 沉积的抑制性组蛋白修饰 H3K9me3 参与了包括 Leptosphaeria maculans 在内的几种真菌。然而,先前的数据表明,可能需要第二层调控机制,可能涉及特定的转录因子 (TF)。在导致油菜茎溃疡的长蠕孢属真菌 L. maculans 中,我们鉴定了 Pf2 的同源物,Pf2 是一种属于 Zn2Cys6 真菌特异性家族的 TF,被描述为致病性和效应子基因表达所必需。我们通过在野生型菌株和 ∆kmt1 突变体中灭活和过表达 LmPf2 来研究其与 KMT1 的共同作用。相应转化体的功能分析突出了 LmPf2 在发病机制建立中的重要作用,我们发现一旦解除 KMT1 的抑制作用,LmPf2 对效应子基因表达的诱导就会产生重大影响。我们的研究结果首次表明,效应子基因表达受到双重控制。

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