首页> 外文期刊>Biota Neotropica >Characterization of plant growth-promoting bacteria inhabiting Vriesea gigantea Gaud. and Tillandsia aeranthos (Loiseleur) L.B. Smith (Bromeliaceae)
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Characterization of plant growth-promoting bacteria inhabiting Vriesea gigantea Gaud. and Tillandsia aeranthos (Loiseleur) L.B. Smith (Bromeliaceae)

机译:居住在大金龟子中的促进植物生长的细菌的特征。和铁兰(Loiseleur)L.B.史密斯(凤梨科)

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Microorganisms that live inside and around a plant can supply it with essential substances, such as phytohormones and essential nutrients. The present investigation aimed to isolate and characterize the phyllosphere, the endophytic, and the water tank bacteria associated with Vriesea gigantea and Tillandsia aeranthos. The bacteria were tested for siderophore and indole-3-acetic acid (IAA) production, phosphate solubilization, and presence of the nif H gene. Genetic diversity of the bacterial isolates was evaluated by rep-PCR. Sixty-eight bacterial strains were isolated from 3 different microhabitats of V. gigantea and from 2 microhabitats of T. aeranthos bromeliad plants. Gram-positive, spore-forming bacilli comprised most bacterial isolates. All isolates produced IAA in vitro in presence of very low amounts of tryptophan. More than 70% of the evaluated bacteria presented the ability of siderophore production and phosphate solubilization, and possessed the nif H gene. It was not possible to distinguish well-defined groups of isolates based on the bromeliad species and microhabitat they inhabit using genetic characterization by rep-PCR. Water tanks presented the most abundant diversity compared with phyllosphere and endophytes, probably due to the high nutrient concentration, which promotes an ideal environment for complex microbial communities.
机译:生活在植物内部和周围的微生物可以为植物提供必需物质,例如植物激素和必需营养素。本研究旨在分离和表征与巨嘴鸟和铁兰的相关的叶圈,内生细菌和水箱细菌。测试细菌的铁载体和吲哚-3-乙酸(IAA)的产生,磷酸盐的增溶作用以及nif H基因的存在。通过rep-PCR评估细菌分离物的遗传多样性。从巨大的V. gigantea的3个不同微生境和从凤梨的T. aeranthos bromeliad植物的2个微生境中分离出68个细菌菌株。革兰氏阳性,形成孢子的细菌包括大多数细菌分离株。所有分离株均在极少量色氨酸存在下体外产生IAA。超过70%的评估细菌表现出铁载体生成和磷酸盐增溶的能力,并拥有nif H基因。无法使用rep-PCR进行遗传鉴定,根据它们所生活的凤梨种类和微生境区分出明确的分离群。与叶球和内生菌相比,水箱具有最丰富的多样性,这可能是由于营养物浓度高,为复杂的微生物群落提供了理想的环境。

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