首页> 外文期刊>Journal of Experimental Botany >Cell wall composition and penetration resistance against the fungal pathogen Colletotrichum higginsianum are affected by impaired starch turnover in Arabidopsis mutants
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Cell wall composition and penetration resistance against the fungal pathogen Colletotrichum higginsianum are affected by impaired starch turnover in Arabidopsis mutants

机译:细胞壁组成和针对真菌病原体Colletottrichum Higginsianum的渗透性抗性受拟南芥突变体的淀粉换档受损的影响

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Penetration resistance represents the first level of plant defense against phytopathogenic fungi. Here, we report that the starch-deficient Arabidopsis thaliana phosphoglucomutase (pgm) mutant has impaired penetration resistance against the hemibiotrophic fungus Colletotrichum higginsianum. We could not determine any changes in leaf cutin and epicuticular wax composition or indolic glucosinolate levels, but detected complex alterations in the cell wall monosaccharide composition of pgm. Notably, other mutants deficient in starch biosynthesis (adg1) or mobilization (sex1) had similarly affected cell wall composition and penetration resistance. Glycome profiling analysis showed that both overall cell wall polysaccharide extractability and relative extractability of specific pectin and xylan epitopes were affected in pgm, suggesting extensive structural changes in pgm cell walls. Screening of mutants with alterations in content or modification of specific cell wall monosaccharides indicated an important function of pectic polymers for penetration resistance and hyphal growth of C. higginsianum during the biotrophic interaction phase. While mutants with affected pectic rhamnogalacturonan-I (mur8) were hypersusceptible, penetration frequency and morphology of fungal hyphae were impaired on pmr5 pmr6 mutants with increased pectin levels. Our results reveal a strong impact of starch metabolism on cell wall composition and suggest a link between carbohydrate availability, cell wall pectin and penetration resistance.
机译:渗透性代表植物疗法真菌的第一级植物防御水平。在这里,我们认为淀粉缺乏拟南芥拟南芥磷酸血糖酶(PGM)突变体具有抗血管纤维植物菌冠状植物的渗透性抗性抗性。我们无法确定叶片切割和脉络膜组合物或吲哚糖苷酸盐水平的任何变化,但是检测到PGM的细胞壁单糖组合物中的复杂变化。值得注意的是,缺乏淀粉生物合成(ADG1)或动员(SEX1)的其他突变体具有相似影响的细胞壁组合物和渗透性。 Glycome分析分析表明,在PGM的情况下,特定果胶和木聚合物表察带的整体细胞壁多糖可提取性和相对可提取性受到影响,表明PGM Cell壁的广泛结构变化。筛选具有特定细胞壁单糖的含量或改性的改变的突变体表明了在生物营养相互作用期间C. higginsianum的渗透性抗性和亚酚醛生长的果蝇聚合物的重要功能。虽然受影响的果皮菌肌肌炎-i(MUR8)的突变体是高度感知的,但在PMR5 PMR6突变体中受到果胶水平增加的PMR5 PMR6突变体的渗透频率和形态。我们的结果揭示了淀粉代谢对细胞壁组成的强烈影响,并表明了碳水化合物可用性,细胞壁果胶和渗透性的联系。

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