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pH 对小麦全蚀病菌种间转录组的影响。

pH effect on strain-specific transcriptomes of the take-all fungus.

机构信息

IGEPP, INRAE, Institut Agro, Univ Rennes, Le Rheu, France.

AgroParisTech, INRAE, Université Paris-Saclay, BIOGER, Thiverval-Grignon, France.

出版信息

PLoS One. 2020 Jul 30;15(7):e0236429. doi: 10.1371/journal.pone.0236429. eCollection 2020.

Abstract

The soilborne fungus Gaeumannomyces tritici (G. tritici) causes the take-all disease on wheat roots. Ambient pH has been shown to be critical in different steps of G. tritici life cycle such as survival in bulk soil, saprophytic growth, and pathogenicity on plants. There are however intra-specific variations and we previously found two types of G. tritici strains that grow preferentially either at acidic pH or at neutral/alkaline pH; gene expression involved in pH-signal transduction pathway and pathogenesis was differentially regulated in two strains representative of these types. To go deeper in the description of the genetic pathways and the understanding of this adaptative mechanism, transcriptome sequencing was achieved on two strains (PG6 and PG38) which displayed opposite growth profiles in two pH conditions (acidic and neutral). PG6, growing better at acidic pH, overexpressed in this condition genes related to cell proliferation. In contrast, PG38, which grew better at neutral pH, overexpressed in this condition genes involved in fatty acids and amino acid metabolisms, and genes potentially related to pathogenesis. This strain also expressed stress resistance mechanisms at both pH, to assert a convenient growth under various ambient pH conditions. These differences in metabolic pathway expression between strains at different pH might buffer the effect of field or soil variation in wheat fields, and explain the success of the pathogen.

摘要

土传真菌禾顶囊壳(Gaeumannomyces tritici,G. tritici)会引起小麦根部的全蚀病。环境 pH 值在禾顶囊壳生命周期的不同阶段都至关重要,如在土壤中的存活、腐生生长和对植物的致病性。然而,存在种内变异,我们之前发现了两种禾顶囊壳菌株,它们在酸性 pH 值或中性/碱性 pH 值下生长偏好不同;代表这两种类型的两种菌株中,与 pH 信号转导途径和致病性相关的基因表达受到不同的调节。为了更深入地描述遗传途径和理解这种适应性机制,我们对在两种 pH 值条件(酸性和中性)下表现出相反生长模式的两个菌株(PG6 和 PG38)进行了转录组测序。在酸性 pH 值下生长更好的 PG6 在该条件下过度表达了与细胞增殖相关的基因。相比之下,在中性 pH 值下生长更好的 PG38 在该条件下过度表达了与脂肪酸和氨基酸代谢以及可能与致病性相关的基因。该菌株还在两种 pH 值下表达了应激抗性机制,以确保在各种环境 pH 值条件下都能方便地生长。这些不同 pH 值下菌株之间代谢途径表达的差异可能缓冲了田间或土壤中 pH 值变化对小麦的影响,并解释了病原体的成功。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eba2/7392285/cadea6a8f4b1/pone.0236429.g001.jpg

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