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首页> 外文期刊>Biotechnology Advances: An International Review Journal >Rhizobitoxine modulates plant-microbe interactions by ethylene inhibition.
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Rhizobitoxine modulates plant-microbe interactions by ethylene inhibition.

机译:根除毒素通过乙烯抑制来调节植物-微生物相互作用。

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Bradyrhizobium elkanii produces rhizobitoxine, an enol-ether amino acid, which has been regarded as a phytotoxin because it causes chlorosis in soybeans. However, recent studies have revealed that rhizobitoxine plays a positive role in establishing symbiosis between B. elkanii and host legumes: rhizobitoxine enhances the nodulation process by inhibiting ACC (1-aminocyclopropane-1-carboxylate) synthase in the ethylene biosynthesis of host roots. B. elkanii rtxA and rtxC genes are required for rhizobitoxine production. In particular, rtxC gene is involved in the desaturation of dihydrorhizobitoxine into rhizobitoxine. A legume with a mutated ethylene receptor gene produced markedly higher numbers of rhizobial infection threads and nodule primordia. Thus, endogenous ethylene in legume roots negatively regulates the formation of nodule primordia, which is overcome by rhiozbitoxine. Although a plant pathogen Burkholderia andropogonis has been known to produce rhizobitoxine, the genome sequence of Xanthomonas oryzae showed the existence of a putative rhizobitoxine transposon in the genome. The cumulative evidence suggests that rhizobitoxine-producing bacteria modulate plant-microbe interactions via ethylene in the rhizosphere and phyllosphere environments. In addition, rhizobitoxine-producing capability might be utilized as tools in agriculture and biotechnology.
机译:Elkanii缓生根瘤菌产生的根瘤菌毒素是一种烯醇醚氨基酸,被认为是一种植物毒素,因为它会导致大豆发生绿化。但是,最近的研究表明,根瘤菌毒素在建立埃尔卡氏芽孢杆菌和宿主豆类之间的共生中起积极作用:根瘤菌毒素通过抑制宿主根的乙烯生物合成中的ACC(1-氨基环丙烷-1-羧酸酯)合酶来增强结瘤过程。 B. elkanii rtxA和rtxC基因是生产根除氧还蛋白所必需的。特别是,rtxC基因参与了二氢根除胆碱的去饱和成为根除胆碱的过程。具有突变的乙烯受体基因的豆类产生显着更高数量的根瘤菌感染线和根瘤原基。因此,豆科植物根中的内源性乙烯负面调节根瘤原基的形成,而其被硫唑嘌呤所克服。尽管已知一种植物病原体伯克霍尔德氏菌(Andrewogonis)会产生根瘤菌毒素,但米氏黄单胞菌的基因组序列显示基因组中存在假定的根瘤菌毒素转座子。累积的证据表明,在根际和叶际环境中,产生根除二氧嘧啶的细菌通过乙烯调节植物与微生物的相互作用。此外,生产根除恶魔碱的能力可以用作农业和生物技术的工具。

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