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木聚糖为黏液黏附于拟南芥种皮提供结构驱动力。

Xylans Provide the Structural Driving Force for Mucilage Adhesion to the Arabidopsis Seed Coat.

作者信息

Ralet Marie-Christine, Crépeau Marie-Jeanne, Vigouroux Jacqueline, Tran Joseph, Berger Adeline, Sallé Christine, Granier Fabienne, Botran Lucy, North Helen M

机构信息

INRA, UR 1268 Biopolymères Interactions Assemblages, F-44316 Nantes, France (M.-C.R., M.-J.C., J.V.); andInstitut Jean-Pierre Bourgin, Institut National de la Recherche Agronomique, AgroParisTech, CNRS, Université Paris-Saclay, RD10, 78026 Versailles cedex, France (J.T., A.B., C.S., F.G., L.B., H.M.N.)

INRA, UR 1268 Biopolymères Interactions Assemblages, F-44316 Nantes, France (M.-C.R., M.-J.C., J.V.); andInstitut Jean-Pierre Bourgin, Institut National de la Recherche Agronomique, AgroParisTech, CNRS, Université Paris-Saclay, RD10, 78026 Versailles cedex, France (J.T., A.B., C.S., F.G., L.B., H.M.N.).

出版信息

Plant Physiol. 2016 May;171(1):165-78. doi: 10.1104/pp.16.00211. Epub 2016 Mar 15.

Abstract

Arabidopsis (Arabidopsis thaliana) seed coat epidermal cells produce large amounts of mucilage that is released upon imbibition. This mucilage is structured into two domains: an outer diffuse layer that can be easily removed by agitation and an inner layer that remains attached to the outer seed coat. Both layers are composed primarily of pectic rhamnogalacturonan I (RG-I), the inner layer also containing rays of cellulose that extend from the top of each columella. Perturbation in cellulosic ray formation has systematically been associated with a redistribution of pectic mucilage from the inner to the outer layer, in agreement with cellulose-pectin interactions, the nature of which remained unknown. Here, by analyzing the outer layer composition of a series of mutant alleles, a tight proportionality of xylose, galacturonic acid, and rhamnose was evidenced, except for mucilage modified5-1 (mum5-1; a mutant showing a redistribution of mucilage pectin from the inner adherent layer to the outer soluble one), for which the rhamnose-xylose ratio was increased drastically. Biochemical and in vitro binding assay data demonstrated that xylan chains are attached to RG-I chains and mediate the adsorption of mucilage to cellulose microfibrils. mum5-1 mucilage exhibited very weak adsorption to cellulose. MUM5 was identified as a putative xylosyl transferase recently characterized as MUCI21. Together, these findings suggest that the binding affinity of xylose ramifications on RG-I to a cellulose scaffold is one of the factors involved in the formation of the adherent mucilage layer.

摘要

拟南芥(Arabidopsis thaliana)种皮表皮细胞会产生大量在吸水时释放的黏液。这种黏液分为两个区域:一个外部扩散层,通过搅拌可轻易去除;以及一个内层,它仍附着在外种皮上。两层主要都由果胶鼠李半乳糖醛酸聚糖I(RG-I)组成,内层还包含从每个柱细胞顶部延伸出的纤维素束。纤维素束形成的扰动一直与果胶黏液从内层向外层的重新分布相关,这与纤维素-果胶相互作用一致,但其性质尚不清楚。在这里,通过分析一系列突变等位基因的外层组成,除了黏液修饰5-1(mum5-1;一个显示黏液果胶从内层附着层向外层可溶层重新分布的突变体)外,木糖、半乳糖醛酸和鼠李糖呈现出紧密的比例关系,mum5-1的鼠李糖-木糖比例大幅增加。生化和体外结合试验数据表明,木聚糖链附着在RG-I链上,并介导黏液吸附到纤维素微纤丝上。mum5-1黏液对纤维素的吸附非常弱。MUM5被鉴定为一种推定的木糖基转移酶,最近被表征为MUCI21。总之,这些发现表明,RG-I上木糖分支对纤维素支架的结合亲和力是参与附着黏液层形成的因素之一。

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