首页> 美国卫生研究院文献>Plant Physiology >Loss-of-Function Mutation of REDUCED WALL ACETYLATION2 in Arabidopsis Leads to Reduced Cell Wall Acetylation and Increased Resistance to Botrytis cinerea
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Loss-of-Function Mutation of REDUCED WALL ACETYLATION2 in Arabidopsis Leads to Reduced Cell Wall Acetylation and Increased Resistance to Botrytis cinerea

机译:拟南芥中减少的壁乙酰化2的功能丧失突变导致减少的细胞壁乙酰化和增加对灰葡萄孢的抗性。

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摘要

Nearly all polysaccharides in plant cell walls are O-acetylated, including the various pectic polysaccharides and the hemicelluloses xylan, mannan, and xyloglucan. However, the enzymes involved in the polysaccharide acetylation have not been identified. While the role of polysaccharide acetylation in vivo is unclear, it is known to reduce biofuel yield from lignocellulosic biomass by the inhibition of microorganisms used for fermentation. We have analyzed four Arabidopsis (Arabidopsis thaliana) homologs of the protein Cas1p known to be involved in polysaccharide O-acetylation in Cryptococcus neoformans. Loss-of-function mutants in one of the genes, designated REDUCED WALL ACETYLATION2 (RWA2), had decreased levels of acetylated cell wall polymers. Cell wall material isolated from mutant leaves and treated with alkali released about 20% lower amounts of acetic acid when compared with the wild type. The same level of acetate deficiency was found in several pectic polymers and in xyloglucan. Thus, the rwa2 mutations affect different polymers to the same extent. There were no obvious morphological or growth differences observed between the wild type and rwa2 mutants. However, both alleles of rwa2 displayed increased tolerance toward the necrotrophic fungal pathogen Botrytis cinerea.
机译:植物细胞壁中几乎所有的多糖都是O-乙酰化的,包括各种果胶多糖和半纤维素木聚糖,甘露聚糖和木葡聚糖。然而,尚未鉴定出参与多糖乙酰化的酶。尽管不清楚多糖乙酰化在体内的作用,但已知通过抑制用于发酵的微生物来降低木质纤维素生物质的生物燃料产量。我们已经分析了Cas1p蛋白的四个拟南芥(Arabidopsis thaliana)同源物,已知其与新隐球菌的多糖O-乙酰化有关。其中一个基因的功能丧失突变体,称为“降低壁乙酰化”(RWA2),具有降低水平的乙酰化细胞壁聚合物。与野生型相比,从突变叶片分离并用碱处理的细胞壁材料释放出的乙酸量降低了约20%。在几种果胶聚合物和木葡聚糖中发现了相同水平的醋酸盐缺乏症。因此,rwa2突变以相同程度影响不同的聚合物。在野生型和rwa2突变体之间没有观察到明显的形态或生长差异。但是,rwa2的两个等位基因显示出对坏死性真菌病原体灰葡萄孢的耐受性增加。

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