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首页> 外文期刊>Journal of bacteriology >Rhizobia catabolize nod gene-inducing flavonoids via C-ring fission mechanisms.
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Rhizobia catabolize nod gene-inducing flavonoids via C-ring fission mechanisms.

机译:根瘤菌通过C环裂变机制分解代谢nod基因的类黄酮。

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摘要

Gas chromatographic and mass spectrometric analyses of derivatized culture medium extracts were used to identify the products of flavonoid metabolism by rhizobia. A number of Rhizobium species and biovars degraded their nod gene-inducing flavonoids by mechanisms which originated in a cleavage of the C-ring of the molecule and which yielded conserved A- and B-ring products among the metabolites. In contrast, Pseudomonas putida degraded quercetin via an initial fission in its A-ring, and Agrobacterium tumefaciens displayed a nonspecific mode of flavonoid degradation which yielded no conserved A- or B-ring products. When incubated with rhizobia, flavonoids with OH substitutions at the 5 and 7 positions yielded phloroglucinol as the conserved A-ring product, and those with a single OH substitution at the 7 position yielded resorcinol. A wider range of structures was found among the B-ring derivatives, including p-coumaric, p-hydroxybenzoic, protocatechuic, phenylacetic, and caffeic acids. The isoflavonoids genistein and daidzein were also degraded via C-ring fission by Rhizobium fredii and Rhizobium sp. strain NGR234, respectively. Partially characterized aromatic metabolites with potential nod gene-inducing activity were detected among the products of naringenin degradation by Rhizobium leguminosarum bv. viciae. The initial structural modification of nod gene-inducing flavonoids by rhizobia can generate chalcones, whose open C-ring system may have implications for the binding of inducers to the nodD gene product.
机译:衍生化培养基提取物的气相色谱和质谱分析用于鉴定根瘤菌对类黄酮代谢的产物。许多根瘤菌属物种和生物变种通过分子C环裂解产生的机制降解了诱导nod基因的类黄酮,并在代谢产物中产生了保守的A环和B环产物。相反,恶臭假单胞菌通过其A环的初始裂变降解槲皮素,而根癌农杆菌显示出非特异性的类黄酮降解模式,没有产生保守的A环或B环产物。当与根瘤菌一起孵育时,在5和7位带有OH取代的类黄酮可生成间苯三酚作为保守的A环产物,而在7位带有单个OH取代的类黄酮可生成间苯二酚。在B环衍生物中发现了更广泛的结构,包括对香豆酸,对羟基苯甲酸,原儿茶酸,苯乙酸和咖啡酸。弗氏根瘤菌和根瘤菌通过C环裂变也降解了异黄酮染料木素和黄豆苷元。分别为NGR234菌株。在豆科根瘤菌降解的柚皮素降解产物中检测到了部分表征的具有潜在nod基因诱导活性的芳香族代谢物。蚕豆根瘤菌对诱导nod基因的类黄酮的初始结构修饰可以生成查耳酮,查耳酮的开放C环系统可能与诱导子与nodD基因产物的结合有关。

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