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Chemotaxis of Rhizobium meliloti towards Nodulation Gene-Inducing Compounds from Alfalfa Roots

机译:苜蓿根瘤菌对苜蓿根系结瘤基因诱导化合物的趋化性

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摘要

Luteolin, a flavone present in seed exudates of alfalfa, induces nodulation genes (nod) in Rhizobium meliloti and also serves as a biochemically specific chemoattractant for the bacterium. The present work shows that R. meliloti RCR2011 is capable of very similar chemotactic responses towards 4′,7-dihydroxyflavone, 4′,7-Dihydroxyflavanone, and 4,4′-dihydroxy-2-methoxychalcone, the three principal nod gene inducers secreted by alfalfa roots. Chemotactic responses to the root-secreted nod inducers in capillary assays were usually two- to four-fold above background and, for the flavone and flavonone, occurred at concentrations lower than those required for half-maximal induction of the nodABC genes. Complementation experiments indicated that the lack of chemotactic responsiveness to luteolin seen in nodD1 and nodA mutants of R. meliloti was not due to mutations in the nod genes, as previously thought. Thus, while nod gene induction and flavonoid chemotaxis have the same biochemical specificity, these two functions appear to have independent receptors or transduction pathways. The wild-type strain was found to suffer selective, spontaneous loss of chemotaxis towards flavonoids during laboratory subculture.
机译:木犀草素是存在于苜蓿种子分泌物中的黄酮,可在苜蓿根瘤菌中诱导结瘤基因(nod),并且还充当细菌的生化特异性化学引诱剂。目前的工作表明,R。meliloti RCR2011能够对4',7-二羟基黄酮,4',7-二羟基黄酮和4,4'-二羟基-2-甲氧基查耳酮(分泌的三个主要nod基因诱导剂)具有非常相似的趋化反应。由苜蓿根。在毛细管测定中,对根分泌的nod诱导剂的趋化反应通常比背景高2到4倍,而对于黄酮和黄酮而言,其浓度低于nodABC基因的一半最大诱导所需的浓度。补充实验表明,在苜蓿根瘤菌的nodD1和nodA突变体中缺乏对木犀草素的趋化反应性,这并不是由于先前认为的nod基因突变引起的。因此,虽然nod基因诱导和类黄酮趋化性具有相同的生化特异性,但这两个功能似乎具有独立的受体或转导途径。发现在实验室传代培养过程中,野生型菌株选择性地,自发地失去了对类黄酮的趋化性。

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