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来自广宿主根瘤菌菌株GRH2的脂壳寡糖结瘤信号诱导菜豆和金合欢的根瘤原基形成。

Induction of nodule primordia on Phaseolus and Acacia by lipo-chitin oligosaccharide nodulation signals from broad-host-range Rhizobium strain GRH2.

作者信息

López-Lara I M, van der Drift K M, van Brussel A A, Haverkamp J, Lugtenberg B J, Thomas-Oates J E, Spaink H P

机构信息

Leiden University, Institute of Molecular Plant Sciences, The Netherlands.

出版信息

Plant Mol Biol. 1995 Nov;29(3):465-77. doi: 10.1007/BF00020978.

Abstract

Rhizobium wild-type strain GRH2 was originally isolated from the tree, Acacia cyanophylla, and has a broad host-range which includes herbaceous legumes, such as Phaseolus and Trifolium species. Here we show that strains of Rhizobium sp. GRH2, into which heterologous nodD alleles have been introduced, produce a large diversity of both sulphated and non-sulphated lipo-chitin oligosaccharides (LCOs). Most of the molecular species contain an N-methyl group on the reducing-terminal N-acetyl-glucosamine. The LCOs vary in the nature of the fatty acyl chain and in the length of the chitin backbone. The majority of the LCOs have an oligosaccharide chain length of five GlcNAc residues, but a few are oligomers having six GlcNAc units. LCOs purified from GRH2 are able to induce root hair formation and deformation on Acacia cyanophylla and A. melanoxylon plants. We show that an N-vaccenoyl-chitopentaose bearing an N-methyl group is able to induce nodule primordia on Phaseolus vulgaris, A. cyanophylla, and A. melanoxylon, indicating that for these plants an N-methyl modification is sufficient for nodule primordia induction.

摘要

根瘤菌野生型菌株GRH2最初是从蓝叶金合欢树中分离出来的,具有广泛的宿主范围,包括草本豆科植物,如菜豆属和三叶草属物种。在这里,我们表明,已导入异源nodD等位基因的根瘤菌GRH2菌株产生了大量硫酸化和非硫酸化的脂壳寡糖(LCOs)。大多数分子物种在还原端N-乙酰葡糖胺上含有一个N-甲基基团。LCOs在脂肪酰链的性质和几丁质主链的长度上有所不同。大多数LCOs的寡糖链长度为五个GlcNAc残基,但也有一些是具有六个GlcNAc单元的寡聚物。从GRH2中纯化的LCOs能够诱导蓝叶金合欢和黑木相思植物的根毛形成和变形。我们表明,带有N-甲基基团的N-十八碳烯酰基壳五糖能够诱导菜豆、蓝叶金合欢和黑木相思的根瘤原基,这表明对于这些植物来说,N-甲基修饰足以诱导根瘤原基。

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