首页> 外文期刊>World Journal of Microbiology and Biotechnology >Isolation and characterization of plant growth promoting bacteria from non-rhizospheric soil and their effect on cowpea (Vigna unguiculata (L.) Walp.) seedling growth
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Isolation and characterization of plant growth promoting bacteria from non-rhizospheric soil and their effect on cowpea (Vigna unguiculata (L.) Walp.) seedling growth

机译:非根际土壤中促进植物生长的细菌的分离,鉴定及其对cow豆(Vigna unguiculata(L.)Walp。)幼苗生长的影响

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The efficacy of four potential phosphate solubilizing Enterobacter isolated from non-rhizospheric soil in Western ghat forest in India. Plant growth promoting ability of these isolates was evaluated in cowpea. All are gram negative, rod shaped, 0.8–1.6 mm in size, and psychrotrophic in nature, grow from 5 to 40°C (optimum temp. 28 ± 2°C). All isolates exhibits growth at a wide range of pH 6–12, optimum at pH 7.0 and tolerates up to 7% (w/v) salt concentration. 16S rRNA gene sequencing reveals the confirmation of isolates to Enterobacter aerogenes sp. (NII-0907 and NII-0929), Enterobacter cloacae subsp. cloacae sp. (NII-0931) and Enterobacter asburiae sp. (NII-0934) with which they share >99% sequence similarity. Under in vitro conditions, all the four isolates were found to produce indole acetic acid, P-solubilization and hydrogen cyanide. The P-solubilizing activity coincided with a concomitant decrease in pH of the medium (pH 7.0–<3.0). The plant growth promotion properties were demonstrated through a cow pea (Vigna unguiculata (L.) walp) based bioassay under greenhouse conditions. Although the bacterial inoculation was found to result in significant increment in root, shoot and biomass and it stimulated bacterial counts in the rhizosphere. Hence, these isolates can further formulated and used for field application.
机译:从印度西高止山脉森林的非根际土壤中分离出的四种潜在的磷酸盐增溶肠杆菌的功效。在cow豆中评估了这些分离株的植物生长促进能力。它们均为革兰氏阴性,呈棒状,大小为0.8–1.6 mm,本质上具有精神营养,生长温度为5至40°C(最佳温度28±2°C)。所有分离株在pH 6-12的宽范围内均表现出生长,在pH 7.0时最适,并能耐受高达7%(w / v)的盐浓度。 16S rRNA基因测序揭示了对产气肠杆菌的分离株的确认。 (NII-0907和NII-0929),阴沟肠杆菌亚种。泄殖腔(NII-0931)和白色肠杆菌。 (NII-0934)与它们共享> 99%的序列相似性。在体外条件下,发现所有四个分离株均产生吲哚乙酸,P-增溶和氰化氢。 P增溶活性与培养基的pH值随之降低(pH 7.0- <3.0)同时发生。通过greenhouse豆(Vigna unguiculata(L.)walp)在温室条件下的生物测定证明了植物的生长特性。尽管发现细菌接种会导致根,茎和生物量的显着增加,并且刺激了根际中的细菌计数。因此,这些分离物可以进一步配制并用于田间应用。

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