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首页> 外文期刊>Microbes and Environments >Cyanobacterial Catalase Activity Prevents Oxidative Stress Induced by Pseudomonas fluorescens DUS1-27 from Inhibiting Brassica napus L. (canola) Growth
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Cyanobacterial Catalase Activity Prevents Oxidative Stress Induced by Pseudomonas fluorescens DUS1-27 from Inhibiting Brassica napus L. (canola) Growth

机译:氨基抗性过氧化氢酶活性可防止荧光荧光荧光荧光剂DUS1-27抑制芸苔(Canola)生长诱导的氧化应激

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摘要

Plant growth-promoting bacteria (PGPB) inhabit the rhizosphere of plants and are capable of enhancing plant growth through a number of mechanisms. A strain of Pseudomonas fluorescens DUS1-27 was identified as a potential PGPB candidate based on its ability to increase the growth of Brassica napus L. (canola) over that of uninoculated control plants in a soil-based system. The same P. fluorescens isolate was found to reduce plant growth in a hydroponic growth system, with plants showing the symptoms of a microbe-associated molecular pattern (MAMP) response to the bacteria. The amperometric quantification of H2O2, fluorescence-based total peroxidase assays, and quantification of catalase gene expression levels using qRT-PCR revealed that oxidative stress reduced plant growth in the hydroponic system. The addition of the cyanobacterium Nostoc punctiforme (known to have high catalase activity levels) in the hydroponic system as a co-inoculant reduced oxidative stress (49.7% decrease in H2O2 concentrations) triggered by the addition of P. fluorescens DUS1-27, thereby enabling plants to grow larger than uninoculated control plants. These results show the advantage of inoculating with multiple bacteria to promote plant growth and, for the first time, demonstrate that N. punctiforme beneficially assists plants under oxidative stress through its catalase activity in planta.
机译:植物生长促进细菌(PGPB)居住植物的根际,并能够通过许多机制提高植物生长。基于其在基于土壤基系统中增加芸苔NAPUS L.(CANOLA)的能力,将荧光荧光荧光剂DUS1-27鉴定为潜在的PGPB候选物。发现荧光型分离物在水培生长系统中降低植物生长,植物显示对细菌的微生物相关分子模式(MAMP)反应的症状。使用QRT-PCR的H2O2,基于荧光的总过氧化物酶测定和定量过氧化氢酶基因表达水平的测量定量揭示了氧化胁迫降低了水耕系统中的植物生长。在水培系统中添加了骨髓间骨膜细菌(已知具有高过氧化氢酶活性水平)作为通过添加P.荧光型DUS1-27引发的氧化应激(H 2 O 2浓度的49.7%降低49.7%),从而实现植物生长大于未征收的对照植物。这些结果表明,接种多种细菌以促进植物生长的优点,并首次证明N.Pncterifore通过其在Planta中的过氧化酶活性在氧化胁迫下有利地帮助植物。

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