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果胶在高镉积累水稻品种(Oryza sativa L.)根细胞壁中结合 Cd 中的主要作用。

The predominant role of pectin in binding Cd in the root cell wall of a high Cd accumulating rice line (Oryza sativa L.).

机构信息

College of Resources, Sichuan Agricultural University, Chengdu, 611130, Sichuan, China.

College of Resources, Sichuan Agricultural University, Chengdu, 611130, Sichuan, China.

出版信息

Ecotoxicol Environ Saf. 2020 Dec 15;206:111210. doi: 10.1016/j.ecoenv.2020.111210. Epub 2020 Sep 2.

Abstract

Cell wall (CW) plays an important role in Cd accumulation in roots of metal-tolerant plants, including rice. The role of CW polysaccharides, especially pectin, in binding Cd in roots of a high Cd accumulating (HA) rice line of Lu527-8 and a non-high Cd accumulating (NHA) rice line of Lu527-4 was investigated in this study. About 59%-63% of Cd in roots of the two rice lines was bound to CWs, indicating that CW was the main site for Cd accumulation in roots of the two rice lines. Cd adsorbed on the root CWs of the HA was 1.1-1.2 times more than that of the NHA, demonstrating the root CWs of the HA showed greater Cd binding ability. Cd exposure induced more Cd accumulation in pectin and hemicellulose in the HA. In particular, up to 65% of Cd accumulation in root CWs of the HA was observed in pectin. The removal of pectin lead to a 50% decrease for the amounts of Cd adsorption on root CWs of the HA, indicating that pectin was the major binding site for Cd in root CWs of the HA. The HA showed greater pectin methylesterase activities, resulting in lower degree of pectin methylesterification along with more low-methylesterified pectins in root CWs than the NHA. The more accumulation of low-methylesterified pectins in CWs induced by Cd contributed greatly to the high Cd accumulation in roots of the HA rice line of Lu527-8.

摘要

细胞壁 (CW) 在金属耐受植物(包括水稻)根中积累 Cd 方面起着重要作用。本研究探讨了 CW 多糖,特别是果胶,在高 Cd 积累(HA)水稻品系 Lu527-8 和非高 Cd 积累(NHA)水稻品系 Lu527-4 根中结合 Cd 的作用。这两个水稻品系的根中约有 59%-63%的 Cd 与 CW 结合,表明 CW 是这两个水稻品系根中 Cd 积累的主要部位。HA 根 CW 吸附的 Cd 比 NHA 多 1.1-1.2 倍,表明 HA 根 CW 具有更强的 Cd 结合能力。Cd 暴露导致 HA 中果胶和半纤维素中的 Cd 积累增加。特别是,HA 根 CW 中高达 65%的 Cd 积累存在于果胶中。果胶的去除导致 HA 根 CW 上 Cd 吸附量减少了 50%,表明果胶是 HA 根 CW 中 Cd 的主要结合位点。HA 表现出更高的果胶甲酯酶活性,导致果胶甲酯化程度降低,根 CW 中的低甲酯化果胶增多。Cd 诱导的 CW 中更多低甲酯化果胶的积累,极大地促进了 Lu527-8 水稻品系 HA 根中 Cd 的高积累。

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