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根际细菌对甜菜碱的利用:苜蓿根瘤菌中参与葫芦巴碱、水苏碱和肉碱分解代谢的必需基因位于共生区域的共生质粒(pSym)上。

Betaine use by rhizosphere bacteria: genes essential for trigonelline, stachydrine, and carnitine catabolism in Rhizobium meliloti are located on pSym in the symbiotic region.

作者信息

Goldmann A, Boivin C, Fleury V, Message B, Lecoeur L, Maille M, Tepfer D

机构信息

Laboratoire de Biologie de la Rhizosphere, Institut National de la Recherche Agronomique, Versailles, France.

出版信息

Mol Plant Microbe Interact. 1991 Nov-Dec;4(6):571-8. doi: 10.1094/mpmi-4-571.

Abstract

Rhizobium meliloti is known to use betaines synthesized by its host, Medicago sativa, as osmoprotectants and sources of energy. It is shown in the present report that the symbiotic megaplasmid (pSym) of R. meliloti RCR2011 encodes functions essential to the catabolism of three betaines, trigonelline (nicotinic acid N-methylbetaine), stachydrine (proline betaine or dimethylproline), and carnitine (gamma-trimethyl-beta-hydroxybutyrobetaine). Preliminary evidence is presented showing that functions on pSym also influence the catabolism of choline and its oxidative product, glycine betaine. Genes implicated in betaine catabolism are found in the symbiotic region of pSym. Trigonelline catabolism functions lie between two clusters of symbiotic genes, nifKDH and nok/fixVI'. Stachydrine and carnitine functions lie to the right of trigonelline catabolism functions, immediately to the right of fixVI'. Information necessary to choline and glycine betaine catabolism is probably encoded to the right of stachydrine catabolism functions.

摘要

已知苜蓿根瘤菌利用其宿主紫花苜蓿合成的甜菜碱作为渗透保护剂和能量来源。本报告表明,苜蓿根瘤菌RCR2011的共生大质粒(pSym)编码三种甜菜碱(胡芦巴碱(烟酸N-甲基甜菜碱)、水苏碱(脯氨酸甜菜碱或二甲基脯氨酸)和肉碱(γ-三甲基-β-羟基丁酸甜菜碱))分解代谢所必需的功能。初步证据表明,pSym上的功能也影响胆碱及其氧化产物甘氨酸甜菜碱的分解代谢。参与甜菜碱分解代谢的基因位于pSym的共生区域。胡芦巴碱分解代谢功能位于两个共生基因簇(nifKDH和nok/fixVI')之间。水苏碱和肉碱功能位于胡芦巴碱分解代谢功能的右侧,紧挨着fixVI'的右侧。胆碱和甘氨酸甜菜碱分解代谢所需的信息可能编码在水苏碱分解代谢功能的右侧。

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