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国家自然科学基金(31125019)

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植物细胞壁形成机制的新进展被引量:62
2015年
细胞壁是植物细胞重要的特征结构,也是地球上最大的可再生碳水化合物资源库.随着近20多年研究技术的发展和多学科交叉手段的应用,植物细胞壁的形成机理得到了很大程度的揭示,勾画出了细胞壁合成、物质转运、形成调控、沉积重构等基本的代谢框架,涉及从胞内到胞外一系列的合成、转运和调控途径.本文概述了近年来细胞壁形成机理研究的热点问题和最新进展,包括对细胞壁结构和成分的新认识,纤维素合成场所(细胞质膜)和非纤维素多糖合成场所(高尔基体)中关键蛋白的挖掘及作用机制的新发现,细胞壁物质膜泡转运与细胞骨架的关系,以及细胞壁形成信号与转录调控网络的新进展.这些发现不仅使人们对细胞壁的合成机理有了更深入的认识,也为细胞壁经济价值的开发与利用奠定了重要的理论基础.同时本文还对该领域未来可能的热点和研究方向进行了展望.
张保才周奕华
关键词:细胞壁纤维素半纤维素果胶质
Disruption of Secondary Wall Cellulose Biosynthesis Alters Cadmium Translocation and Tolerance in Rice Plants被引量:12
2013年
Tricheary elements (TEs), wrapped by secondary cell wall, play essential roles in water, mineral, and nutrient transduction. Cadmium (Cd) is a toxic heavy metal that is absorbed by roots and transported to shoot, leaves, and grains through vascular systems in plants. As rice is a major source of Cd intake, many efforts have been made to establish 'low- Cd rice'. However, no links have been found between cellulose biosynthesis and cadmium accumulation. We report here a rice brittle culm13 mutant, resulting from a novel missense mutation (G101K) in the N-terminus of cellulose synthase subunit 9 (CESA9). Except for the abnormal mechanical strength, the mutant plants are morphologically indistinguishable from the wild-type plants. Transmission electron microscopy (TEM) and chemical analyses showed a slight reduction in secondary wall thickness and 22% decrease in cellulose content in bc13 plants. Moreover, this mutation unexpectedly confers the mutant plants Cd tolerance due to less Cd accumulation in leaves. Expression analysis of the genes required for Cd uptake and transport revealed complicated alterations after applying Cd to wild-type and bc13. The mutants were further found to have altered vascular structure. More importantly, Cd concentration in the xylem saps from the bc13 plants was significantly lower than that from the wild-type. Combining the analyses of CESA9 gene expression and Cd content retention in the cell-wall residues, we conclude that CESA9^G101K mutation alters cell-wall properties in the conducting tissues, which consequently affects Cd translocation efficiency that largely contributes to the low Cd accumulation in the mutant plants.
Xue-Qin SongLi-Feng LiuYi-Jun JiangBao-Cai ZhangYa-Ping GaoXiang-Ling LiuQing-Shan LinHong-Qing LingYi-Hua Zhou
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