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光合慢生根瘤菌( Bradyrhizobium sp. )菌株 ORS285 合成 2-O-甲基岩藻糖基脂寡糖,用于依赖于 nod 基因与含羞草属植物的相互作用。

Photosynthetic Bradyrhizobium Sp. strain ORS285 synthesizes 2-O-methylfucosylated lipochitooligosaccharides for nod gene-dependent interaction with Aeschynomene plants.

机构信息

Laboratoire des Symbioses Tropicales et Mediterraneennes, UMR IRD, Montpellier, France.

出版信息

Mol Plant Microbe Interact. 2011 Dec;24(12):1440-7. doi: 10.1094/MPMI-05-11-0104.

Abstract

Bradyrhizobium sp. strain ORS285 is a photosynthetic bacterium that forms nitrogen-fixing nodules on the roots and stems of tropical aquatic legumes of the Aeschynomene genus. The symbiotic interaction of Bradyrhizobium sp. strain ORS285 with certain Aeschynomene spp. depends on the presence of nodulation (nod) genes whereas the interaction with other species is nod gene independent. To study the nod gene-dependent molecular dialogue between Bradyrhizobium sp. strain ORS285 and Aeschynomene spp., we used a nodB-lacZ reporter strain to monitor the nod gene expression with various flavonoids. The flavanones liquiritigenin and naringenin were found to be the strongest inducers of nod gene expression. Chemical analysis of the culture supernatant of cells grown in the presence of naringenin showed that the major Nod factor produced by Bradyrhizobium sp. strain ORS285 is a modified chitin pentasaccharide molecule with a terminal N-C(18:1)-glucosamine and with a 2-O-methyl fucose linked to C-6 of the reducing glucosamine. In this respect, the Bradyrhizobium sp. strain ORS285 Nod factor is the same as the major Nod factor produced by the nonphotosynthetic Bradyrhizobium japonicum USDA110 that nodulates the roots of soybean. This suggests a classic nod gene-dependent molecular dialogue between Bradyrhizobium sp. strain ORS285 and certain Aeschynomene spp. This is supported by the fact that B. japonicum USDA110 is able to form N(2)-fixing nodules on both the roots and stems of Aeschynomene afraspera.

摘要

慢生根瘤菌(Bradyrhizobium sp.)菌株 ORS285 是一种光合细菌,它在热带水生豆科含羞草属植物的根和茎上形成固氮结瘤。慢生根瘤菌(Bradyrhizobium sp.)菌株 ORS285 与某些含羞草属物种的共生相互作用依赖于结节(nod)基因的存在,而与其他物种的相互作用则与 nod 基因无关。为了研究慢生根瘤菌(Bradyrhizobium sp.)菌株 ORS285 与含羞草属物种之间依赖 nod 基因的分子对话,我们使用了一个 nodB-lacZ 报告菌株,用各种类黄酮来监测 nod 基因的表达。发现黄烷酮甘草素和柚皮素是诱导 nod 基因表达最强的物质。在存在柚皮素的条件下生长的细胞培养上清液的化学分析表明,慢生根瘤菌(Bradyrhizobium sp.)菌株 ORS285 产生的主要 Nod 因子是一种带有末端 N-C(18:1)-葡萄糖胺和与还原葡萄糖胺 C-6 相连的 2-O-甲基岩藻糖的修饰几丁质五糖分子。在这方面,慢生根瘤菌(Bradyrhizobium sp.)菌株 ORS285 的 Nod 因子与非光合的大豆根瘤菌 USDA110 产生的主要 Nod 因子相同,后者可以使大豆的根结瘤。这表明慢生根瘤菌(Bradyrhizobium sp.)菌株 ORS285 与某些含羞草属物种之间存在经典的依赖 nod 基因的分子对话。这一事实得到了支持,即大豆根瘤菌 USDA110 能够在含羞草属非洲亚种的根和茎上形成固氮结瘤。

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