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CESA5 是合成纤维素所必需的,在拟南芥种子粘性糊状物的结构中起作用。

CESA5 is required for the synthesis of cellulose with a role in structuring the adherent mucilage of Arabidopsis seeds.

机构信息

Institut Jean-Pierre Bourgin, UMR 1318, INRA, AgroParisTech, F-78026 Versailles Cedex, France.

出版信息

Plant Physiol. 2011 Aug;156(4):1725-39. doi: 10.1104/pp.111.179077. Epub 2011 Jun 24.

Abstract

Imbibed Arabidopsis (Arabidopsis thaliana) seeds are encapsulated by mucilage that is formed of hydrated polysaccharides released from seed coat epidermal cells. The mucilage is structured with water-soluble and adherent layers, with cellulose present uniquely in an inner domain of the latter. Using a reverse-genetic approach to identify the cellulose synthases (CESAs) that produce mucilage cellulose, cesa5 mutants were shown to be required for the correct formation of these layers. Expression of CESA5 in the seed coat was specific to epidermal cells and coincided with the accumulation of mucilage polysaccharides in their apoplast. Analysis of sugar composition showed that although total sugar composition or amounts were unchanged, their partition between layers was different in the mutant, with redistribution from adherent to water-soluble mucilage. The macromolecular characteristics of the water-soluble mucilage were also modified. In accordance with a role for CESA5 in mucilage cellulose synthesis, crystalline cellulose contents were reduced in mutant seeds and birefringent microfibrils were absent from adherent mucilage. Although the mucilage-modified5 mutant showed similar defects to cesa5 in the distribution of sugar components between water-soluble and adherent mucilage, labeling of residual adherent mucilage indicated that cesa5 contained less cellulose and less pectin methyl esterification. Together, the results demonstrate that CESA5 plays a major and essential role in cellulose production in seed mucilage, which is critical for the establishment of mucilage structured in layers and domains.

摘要

被吸收的拟南芥(Arabidopsis thaliana)种子被黏液包裹,黏液由种子表皮细胞释放的水合多糖组成。黏液具有水溶性和粘性两层结构,纤维素仅存在于后者的内层域中。通过反向遗传学方法鉴定产生黏液纤维素的纤维素合酶(CESA),发现 cesa5 突变体是这些层正确形成所必需的。CESA5 在种皮中的表达特异性到表皮细胞,并且与它们质外体中黏液多糖的积累同时发生。糖组成分析表明,尽管总糖组成或量没有变化,但在突变体中,它们在层之间的分配不同,从粘性黏液重新分配到水溶性黏液。水溶性黏液的高分子特性也被修饰。与 CESA5 在黏液纤维素合成中的作用一致,突变体种子中的结晶纤维素含量降低,并且粘性黏液中没有双折射微纤维。尽管黏液修饰 5 突变体在水溶性和粘性黏液之间的糖成分分布上表现出与 cesa5 相似的缺陷,但对残留粘性黏液的标记表明 cesa5 含有较少的纤维素和较少的果胶甲酯化。总之,这些结果表明 CESA5 在种子黏液中的纤维素产生中发挥主要和必需的作用,这对于黏液分层和域结构的建立至关重要。

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