SFR 4207 QUASAV, UMR 1345 IRHS, Université d'Angers Angers Cedex, France ; SFR 4207 QUASAV, INRA, UMR 1345 IRHS Angers Cedex, France ; SFR 4207 QUASAV, Agrocampus-Ouest, UMR 1345 IRHS Angers Cedex, France.
Front Plant Sci. 2013 May 13;4:131. doi: 10.3389/fpls.2013.00131. eCollection 2013.
In this study, the physiological functions of fungal mannitol metabolism in the pathogenicity and protection against environmental stresses were investigated in the necrotrophic fungus Alternaria brassicicola. Mannitol metabolism was examined during infection of Brassica oleracea leaves by sequential HPLC quantification of the major soluble carbohydrates and expression analysis of genes encoding two proteins of mannitol metabolism, i.e., a mannitol dehydrogenase (AbMdh), and a mannitol-1-phosphate dehydrogenase (AbMpd). Knockout mutants deficient for AbMdh or AbMpd and a double mutant lacking both enzyme activities were constructed. Their capacity to cope with various oxidative and drought stresses and their pathogenic behavior were evaluated. Metabolic and gene expression profiling indicated an increase in mannitol production during plant infection. Depending on the mutants, distinct pathogenic processes, such as leaf and silique colonization, sporulation, survival on seeds, were impaired by comparison to the wild-type. This pathogenic alteration could be partly explained by the differential susceptibilities of mutants to oxidative and drought stresses. These results highlight the importance of mannitol metabolism with respect to the ability of A. brassicicola to efficiently accomplish key steps of its pathogenic life cycle.
在这项研究中,我们研究了腐生真菌交替镰刀菌中真菌甘露醇代谢在致病性和环境胁迫防护中的生理功能。通过对 Brassica oleracea 叶片感染过程中主要可溶性碳水化合物的连续 HPLC 定量分析和甘露醇代谢相关的两个基因(即甘露醇脱氢酶[AbMdh]和甘露醇-1-磷酸脱氢酶[AbMpd])的表达分析,检测了甘露醇代谢。构建了 AbMdh 或 AbMpd 缺失的突变体和缺乏两种酶活性的双突变体。评估了它们应对各种氧化和干旱胁迫的能力及其致病性行为。代谢和基因表达谱分析表明,在植物感染过程中甘露醇的产量增加。与野生型相比,依赖于突变体,叶片和种荚定殖、产孢、在种子上存活等不同的致病过程受到损害。这种致病性的改变部分可以用突变体对氧化和干旱胁迫的不同敏感性来解释。这些结果强调了甘露醇代谢对交替镰刀菌有效完成其致病生命周期关键步骤的能力的重要性。