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苜蓿中华根瘤菌L5-30菌株诱导的根瘤中根瘤菌素的早期产生。

Early production of rhizopine in nodules induced by Sinorhizobium meliloti strain L5-30.

作者信息

Heinrich K, Ryder M H, Murphy P J

机构信息

Department of Applied and Molecular Ecology, University of Adelaide, South Australia, Australia.

出版信息

Can J Microbiol. 2001 Feb;47(2):165-71. doi: 10.1139/w00-136.

Abstract

The rhizopine L-3-O-methyl-scyllo-inosamine (3-O-MSI) is metabolized by approximately 10% of the strains of Rhizobium leguminosarum by. viciae and Sinorhizobium meliloti. Rhizopine strains enjoy a substantial competitive advantage in nodulation, which is manifest before 14 days post-inoculation, implying that rhizopine is produced before this time. We were able to detect this compound in the roots of alfalfa (Medicago sativum L. cv. Hunter River) four days after germination (six days post-infection) with S. meliloti strain L5-30 by gas chromatography-mass spectrometry (GC-MS). At four days, nodules were not visible, and the concentration of rhizopine was extremely low, estimated at 67 pg/gfw (picograms/gram fresh weight). The amount increased gradually but remained low until 16 days, when there was a 50-fold increase from day four, by which time nodules were well established. This pattern of synthesis is consistent with previous studies indicating that rhizopine synthesis is regulated by nifA/ntrA regulatory genes, which are maximally expressed in bacteroids at the onset of nitrogen fixation. However, the low level of rhizopine synthesis must be responsible for the early effects on competition for nodulation. Production of rhizopine at this time most likely results from micro-aerobic induction of mos genes in free-living bacteria, either in the infection threads or in the rhizosphere.

摘要

根瘤碱L-3-O-甲基-scyllo-肌醇胺(3-O-MSI)可被大约10%的豌豆根瘤菌和苜蓿中华根瘤菌菌株代谢。根瘤碱菌株在结瘤方面具有显著的竞争优势,这种优势在接种后14天之前就已显现,这意味着根瘤碱在此之前就已产生。通过气相色谱-质谱联用(GC-MS)技术,我们能够在苜蓿(Medicago sativum L. cv. Hunter River)种子萌发四天后(感染六天后)用苜蓿中华根瘤菌L5-30菌株接种的根部检测到这种化合物。在四天时,根瘤还不可见,根瘤碱的浓度极低,估计为67 pg/gfw(皮克/克鲜重)。该含量逐渐增加,但直到16天前一直保持较低水平,到16天时,较四天时增加了50倍,此时根瘤已发育良好。这种合成模式与先前的研究一致,先前研究表明根瘤碱的合成受nifA/ntrA调控基因调节,这些基因在固氮开始时在类菌体中表达量最高。然而,根瘤碱合成的低水平必定是对结瘤竞争产生早期影响的原因。此时根瘤碱的产生很可能是由于自由生活细菌中mos基因在感染丝或根际中的微需氧诱导。

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