首页> 外文期刊>The Plant Cell >The jiaoyao1 Mutant Is an Allele of korrigan1 That Abolishes Endoglucanase Activity and Affects the Organization of Both Cellulose Microfibrils and Microtubules in Arabidopsis
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The jiaoyao1 Mutant Is an Allele of korrigan1 That Abolishes Endoglucanase Activity and Affects the Organization of Both Cellulose Microfibrils and Microtubules in Arabidopsis

机译:jiaoyao1突变体是korrigan1的等位基因,它消除了内切葡聚糖酶的活性并影响拟南芥中纤维素微纤维和微管的组织。

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In higher plants, cellulose is synthesized by plasma membrane-localized cellulose synthase complexes (CSCs). Arabidopsis thaliana GH9A1/KORRIGAN1 is a membrane-bound, family 9 glycosyl hydrolase that is important for cellulose synthesis in both primary and secondary cell walls. Most previously identified korrigan1 mutants show severe phenotypes such as embryo lethality; therefore, the role of GH9A1 in cellulose synthesis remains unclear. Here, we report a novel A577V missense mutation, designated jiaoyao1 (jia1), in the second of the glycosyl hydrolase family 9 active site signature motifs in GH9A1. jia1 is defective in cell expansion in dark-grown hypocotyls, roots, and adult plants. Consistent with its defect in cell expansion, this mutation in GH9A1 resulted in reduced cellulose content and reduced CSC velocity at the plasma membrane. Green fluorescent protein-GH9A1 is associated with CSCs at multiple locations, including the plasma membrane, Golgi, trans-Golgi network, and small CESA-containing compartments or microtubule-associated cellulose synthase compartments, indicating a tight association between GH9A1 and CSCs. GH9A1(A577V) abolishes the endoglucanase activity of GH9A1 in vitro but does not affect its interaction with CESAs in vitro, suggesting that endoglucanase activity is important for cellulose synthesis. Interestingly, jia1 results in both cellulose microfibril andmicrotubule disorganization. Our study establishes the important role of endoglucanase in cellulose synthesis and cellulose microfibril organization in plants.
机译:在高等植物中,纤维素是通过质膜定位的纤维素合酶复合物(CSC)合成的。拟南芥GH9A1 / KORRIGAN1是膜结合的家族9糖基水解酶,对于一级和二级细胞壁中的纤维素合成很重要。大多数先前鉴定出的korrigan1突变体表现出严重的表型,例如胚胎致死率。因此,GH9A1在纤维素合成中的作用仍不清楚。在这里,我们报告了一个新的A577V错义突变,命名为jiaoyao1(jia1),位于GH9A1的第二个糖基水解酶家族9个活性位点签名基序中。 jia1在暗生长的下胚轴,根和成年植物的细胞扩增中存在缺陷。与其细胞扩增缺陷相一致,GH9A1的这种突变导致纤维素含量降低和质膜上CSC速度降低。绿色荧光蛋白-GH9A1与CSCs在多个位置相关联,包括质膜,高尔基体,反高尔基网络和包含CESA的小隔室或与微管相关的纤维素合酶小室,表明GH9A1与CSC之间紧密结合。 GH9A1(A577V)在体外废除了GH9A1的内切葡聚糖酶活性,但在体外不影响其与CESA的相互作用,这表明内切葡聚糖酶活性对于纤维素合成很重要。有趣的是,jia1导致纤维素微纤维和微管的混乱。我们的研究建立了内切葡聚糖酶在植物纤维素合成和纤维素微纤维组织中的重要作用。

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