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首页> 外文期刊>Frontiers in Plant Science >A Novel FC116/ BC10 Mutation Distinctively Causes Alteration in the Expression of the Genes for Cell Wall Polymer Synthesis in Rice
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A Novel FC116/ BC10 Mutation Distinctively Causes Alteration in the Expression of the Genes for Cell Wall Polymer Synthesis in Rice

机译:一种新颖的<斜斜体> Fc116 / <斜斜体> BC10 突变显着地导致水稻细胞壁聚合物合成基因表达的改变

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We report isolation and characterization of a fragile culm mutant fc116 that displays reduced mechanical strength caused by decreased cellulose content and altered cell wall structure in rice. Map-based cloning revealed that fc116 was a base substitution mutant (G to A) in a putative beta-1,6-N-acetylglucosaminyltransferase (C2GnT) gene (LOC_Os05g07790, allelic to BC10 ). This mutation resulted in one amino acid missing within a newly-identified protein motif “R, RXG, RA.” The FC116/BC10 gene was lowly but ubiquitously expressed in the all tissues examined across the whole life cycle of rice, and slightly down-regulated during secondary growth. This mutant also exhibited a significant increase in the content of hemicelluloses and lignins, as well as the content of pentoses (xylose and arabinose). But the content of hexoses (glucose, mannose, and galactose) was decreased in both cellulosic and non-cellulosic (pectins and hemicelluloses) fractions of the mutant. Transcriptomic analysis indicated that the typical genes in the fc116 mutant were up-regulated corresponding to xylan biosynthesis, as well as lignin biosynthesis including p -hydroxyphenyl (H), syringyl (S), and guaiacyl (G). Our results indicate that FC116 has universal function in regulation of the cell wall polymers in rice.
机译:我们报告了脆弱的秆突变体Fc116的分离和表征,其显示通过降低的纤维素含量和水稻细胞壁结构改变引起的机械强度。基于地图的克隆显示FC116在推定的β-1,6- N-乙酰氨基氨基氨基氨基丙烯基转移酶(C2GNT)基因(LOM_OS05G07790,BC10)中是一种基础取代突变体(G至A)。该突变导致在新鉴定的蛋白质基序“R,RXG,RA”中缺少一个氨基酸。 FC116 / BC10基因低,但在整个寿命周期检查的所有组织中普遍地表达,并且在二次生长期间略微下调。该突变体还表现出半纤维素和木质素含量的显着增加,以及戊酮的含量(木糖和阿拉伯糖)。但是,在凝集纤维素和非纤维素(果胶和半纤维素)的突变体中的含量下降(葡萄糖,甘露糖和半乳糖)的含量。转录组分析表明,FC116突变体中的典型基因对应于木聚糖生物合成,以及包括对羟基苯基(H),陶氏肾上腺素(G)的木质素生物合成。我们的结果表明,FC116在水稻中细胞壁聚合物的调节方面具有通用功能。

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