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毛稔根黏液的特性,重点关注其在铝积累中的作用。

Characterization of root mucilage from Melastoma malabathricum, with emphasis on its roles in aluminum accumulation.

作者信息

Watanabe Toshihiro, Misawa Seiji, Hiradate Syuntaro, Osaki Mitsuru

机构信息

Research Faculty of Agriculture, Hokkaido University, Kita 9, Nishi 9, Kitaku, Sapporo 060-8589, Japan.

出版信息

New Phytol. 2008;178(3):581-9. doi: 10.1111/j.1469-8137.2008.02397.x. Epub 2008 Mar 26.

Abstract

Plant roots exude viscous polysaccharides, called mucilage. One of the suggested roles of mucilage is immobilization of toxic metal cations, including aluminum (Al), in the rhizosphere. Mucilage exuded from roots of Melastoma malabathricum (Al accumulator) was characterized in comparison with that of Zea mays (maize; Al nonaccumulator). Removal of mucilage significantly reduced Al accumulation in M. malabathricum. The cation adsorption affinity of M. malabathricum mucilage was higher for Al and lanthanum (La) than for barium (Ba), whereas that of maize mucilage was in the order Ba > La > Al. A (27)Al nuclear magnetic resonance (NMR) spectrum of the Al-adsorbed mucilage and bioassay with alfalfa seedlings indicated that the concentrated Al in the mucilage of M. malabathricum, unlike that of maize, bound very weakly to cation exchange sites of mucilage. The higher charge density in M. malabathricum mucilage, derived from unmethylated uronic acid, is inferred to be related to preferential adsorption of trivalent cation. Not only a higher degree of methylation in the uronic acid (glucuronic acid) but also H(+) release from roots to the mucilage appears to be responsible for the loose binding of Al in M. malabathricum mucilage. These characteristics of mucilage may help Al hyperaccumulation in M. malabathricum.

摘要

植物根系会分泌出一种粘性多糖,称为黏液。黏液的一个推测作用是在根际固定包括铝(Al)在内的有毒金属阳离子。对紫金牛(一种铝积累植物)根系分泌的黏液与玉米(一种非铝积累植物)根系分泌的黏液进行了特性比较。去除黏液显著降低了紫金牛中的铝积累。紫金牛黏液对铝和镧(La)的阳离子吸附亲和力高于钡(Ba),而玉米黏液的阳离子吸附亲和力顺序为Ba>La>Al。吸附铝的黏液的(27)Al核磁共振(NMR)光谱以及用苜蓿幼苗进行的生物测定表明,与玉米不同,紫金牛黏液中浓缩的铝与黏液的阳离子交换位点结合非常弱。推测紫金牛黏液中源自未甲基化糖醛酸的较高电荷密度与三价阳离子的优先吸附有关。不仅糖醛酸(葡萄糖醛酸)中较高的甲基化程度,而且根系向黏液中释放H(+)似乎也是紫金牛黏液中铝结合松散的原因。黏液的这些特性可能有助于紫金牛超积累铝。

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