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一个错义突变在 CESA9 的跨膜结构域影响细胞壁生物合成和植物生长在水稻。

A missense mutation in the transmembrane domain of CESA9 affects cell wall biosynthesis and plant growth in rice.

机构信息

College of Agronomy and Plant Protection, Qingdao Agricultural University, Qingdao 266109, China.

出版信息

Plant Sci. 2012 Nov;196:117-24. doi: 10.1016/j.plantsci.2012.08.002. Epub 2012 Aug 9.

Abstract

Rice is a model organism in poaceae plants to study cell wall biosynthesis. In this study, a mutant S1-60 isolated from an EMS mutagenized japonica cultivar Nipponbare, is characterized by brittle culms that can be easily broken by bending. The reduction in mechanical strength was due to defect in thickening of the sclerenchyma cell wall. The amount of cellulose in S1-60 culms was reduced to 44.7% of that of wild-type plants. Besides, the mutant also exhibited pleiotropic phenotypes, such as dwarfism and partial sterility. Genetic analysis and map-based cloning showed that all the phenotype of S1-60 mutant was caused by a recessive point mutation in the OsCESA9 gene, which encodes the cellulose synthase A subunit 9. This yet uncharacterized missense mutation changed the highly conserved G905 to D at the beginning of the fifth transmembrane domain. The OsCESA9 gene is predominantly expressed in the culms of mature stage plants, consistent with the brittle phenotype in the culm. These results indicate that OsCESA9 plays an important role in cell wall biosynthesis and plant growth.

摘要

水稻是禾本科植物中研究细胞壁生物合成的模式生物。本研究中,从 EMS 诱变粳稻品种 Nipponbare 中分离得到的一个突变体 S1-60 表现为易碎的茎,易弯曲折断。机械强度的降低是由于厚壁组织细胞壁加厚缺陷所致。S1-60 茎中的纤维素含量减少到野生型植株的 44.7%。此外,该突变体还表现出矮化和部分不育等多种表型。遗传分析和图谱克隆表明,S1-60 突变体的所有表型均由 OsCESA9 基因的隐性点突变引起,该基因编码纤维素合酶 A 亚基 9。这个尚未被描述的错义突变使高度保守的第五跨膜结构域起始处的 G905 突变为 D。OsCESA9 基因主要在成熟阶段植株的茎中表达,与茎的易碎表型一致。这些结果表明,OsCESA9 在细胞壁生物合成和植物生长中起着重要作用。

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