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Production, characterization and iron binding affinity of hydroxamate siderophores from rhizosphere associated fluorescent Pseudomonas

机译:从根际相关荧光假单胞菌中的羟肟酸盐施用的生产,表征和铁结合亲和力

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摘要

Fluorescent Pseudomonas (FP) is a major group of plant growth promoting rhizobacte-ria and a well-known synthesizer of siderophores, which imparts a selective advantage on rhizosphere competence and their biocontrol traits. The present study was aimedat examining the factors affecting the production of siderophores and their potential biocontrol traits. Sixteen FP isolates were shortlisted based on their siderophore-producing ability in chrome azural S medium. The isolates were checked for variations in siderophore production under varying incubation times, temperatures, pH, iron (Fe,+) concentrations and mutagens. In addition, the iron binding affinity of siderophores, mycelial inhibition assay and plant growth promotion traits were assessed. Results showed that the siderophore production was highly influenced by the time of incubation, changes in pH, temperature and iron concentration. Chemical characterization showed that the produced siderophores were hydroxamates. Maximum siderophore production was observed at pH 7 whereas UV and EtBr exposure invariably suppressed siderophore production drastically in all isolates. All FPs from maize rhizosphere showed excellent siderophore production which could be due to the competence in strategy-II of the plant rhizosphere and significant growth inhibition on Fusarium oxysporum. Our results suggest the inclination of siderophores to iron, in terms of various criteria affecting production and the possible role of environmental muta tions that affect thenatural iron harvesting mechanism.
机译:荧光假单胞菌(FP)是促进Rhizobacte-RIA的主要植物生长和众所周知的施工团的合成器,这赋予根际竞争力及其生物控制特征的选择性优势。目前的研究是AIMEDAT检查影响施工的因素及其潜在的生物控制特征。基于其在铬玻璃介质中的纵横化能力,十六型FP隔离物被遗传。检查分离株在不同孵育时间,温度,pH,铁(Fe,+)浓度和诱变中的阳光产生的变化。此外,评估了施工电池,菌丝体抑制测定和植物生长促进性状的铁结合亲和力。结果表明,载体生产受孵育时间的高度影响,pH,温度和铁浓度的变化。化学表征表明,所产生的施胶团是羟肟酸盐。在pH7观察到最大的膀胱生产,而UV和ETBR暴露在所有分离株中都不会抑制纵向的侧面产生。来自玉米根际的所有FPS都显示出优异的西参生产,这可能是由于植物根际战略-II的能力和对镰刀菌镰刀菌的显着生长抑制作用。我们的结果表明,在影响产量的各种标准和影响对象铁采伐机制的环境霸王队的可能作用方面,施工电池的倾向。

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