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首页> 外文期刊>European Journal of Biological Research >Capability of Plant Growth-Promoting Rhizobacteria (PGPR) for producing indole acetic acid (IAA) under extreme conditions
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Capability of Plant Growth-Promoting Rhizobacteria (PGPR) for producing indole acetic acid (IAA) under extreme conditions

机译:极端条件下植物促生根瘤菌(PGPR)产生吲哚乙酸(IAA)的能力

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Plant Growth-Promoting Rhizobacteria (PGPR) inhabiting the area around the plant roots or in plant tissues and stimulate plant growth directly or indirectly. Synthesis of the phytohormone auxin indole-3-acetic acid (IAA) is one of the direct effects of PGPR on plant growth. This study aimed to isolate and screen IAA producing bacteria from soil and study the impacts of the alkalinity and salinity on IAA production and total antioxidant activity of the highly IAA producing strain. From the fifteen isolates tested, six were selected as efficient IAA producer, from which one isolate was highly IAA producer. The highly producing isolate was identified based on molecular characteristics using 16S rRNA. The sequence analysis showed 99% similarity with Bacillus subtilis from GenBank data base. The strain yielded IAA in a wide range of pH (5-9), giving its maximum IAA production at pH 8. High IAA concentration was also observed in the presence of 0.5% and 1% NaCl in comparison with control (with no NaCl). Furthermore, the results indicated that, total antioxidant was increased in acidic (pH 5 and pH 6) and alkaline (pH 8) media, as well as in salinity up to 2%. This study could be stated as the prospective of IAA producing bacterial isolate in the field, as a result, using it as alternative valuable biofertilizer.
机译:促进植物生长的根瘤菌(PGPR)栖息在植物根部周围或植物组织中,并直接或间接刺激植物的生长。植物激素生长素吲哚-3-乙酸(IAA)的合成是PGPR对植物生长的直接影响之一。这项研究旨在从土壤中分离和筛选产生IAA的细菌,并研究碱度和盐度对IAA产生和高IAA产生菌株总抗氧化活性的影响。从测试的15种分离物中,选择了6种作为有效的IAA生产者,其中一种分离物是高度IAA生产者。使用16S rRNA根据分子特征鉴定了高产分离株。序列分析表明与GenBank数据库中的枯草芽孢杆菌有99%的相似性。该菌株在很宽的pH值(5-9)范围内产生IAA,在pH 8时产生最大的IAA产量。与对照(无NaCl)相比,在存在0.5%和1%NaCl的情况下,还观察到高IAA浓度。此外,结果表明,在酸性(pH 5和pH 6)和碱性(pH 8)介质中,总抗氧化剂含量均增加了,并且盐分高达2%。这项研究可以说是IAA在该领域生产细菌分离株的前途,因此将其用作替代有价值的生物肥料。

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