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Growth enhancement of rice (Oryza sativa) by phosphate solubilizing Gluconacetobacter sp. (MTCC 8368) and Burkholderia sp. (MTCC 8369) under greenhouse conditions

机译:通过磷酸盐增溶葡糖杆菌属细菌提高水稻(Oryza sativa)的生长。 (MTCC 8368)和Burkholderia sp。 (MTCC 8369)在温室条件下

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摘要

Two indigenous rhizospheric phosphate solubilizing isolates PSB 12 identified as Gluconacetobacter sp. (MTCC 8368) and PSB 73 identified as Burkholderia sp. (MTCC 8369) were examined for their growth enhancement potential of rice (Jyothi PTB 39) under pot culture assays. The results showed significant impact on microbial count and PSB population, phosphatase and dehydrogenase activity, available phosphorous in the soil, plant nutrient uptake and yield parameters. Gluconacetobacter sp. + RP60 treatment (30.96 µg PNP g−1 soil) retained highest phosphatase activity whereas Gluconacetobacter sp. + Burkholderia sp. + RP60 treatment recorded maximum dehydrogenase activity (38.88 µg TPF g−1 soil) after 60 days of treatment. The treatments Burkholderia sp. + RP60 and Gluconacetobacter sp. + RP60 produced comparable amount of P and these treatments were statistically at par throughout the growth period. Highest nutrient uptake and yield was noted in Gluconacetobacter sp. + Burkholderia sp. + RP60 treatment. A positive synergistic interaction between strains of Gluconacetobacter sp. and Burkholderia sp. has been noticed for their plant growth promotion activity. These strains could be of potential to develop as biofertilizers after testing their performance under field conditions either alone or as components of integrated nutrient management systems.
机译:两种本地根际可溶性磷酸盐分离株PSB 12被鉴定为Gluconacetobacter sp.。 (MTCC 8368)和PSB 73确定为Burkholderia sp。 (MTCC 8369)通过盆栽培养法检测了水稻(Jyothi PTB 39)的生长潜力。结果显示对微生物数量和PSB数量,磷酸酶和脱氢酶活性,土壤中有效磷,植物养分吸收和产量参数有显着影响。葡糖杆菌属+ RP60处理(30.96 µg PNP g −1 土壤)保留了最高的磷酸酶活性,而葡糖杆菌属则保持最高。 +伯克霍尔德氏菌+ RP60处理在60天后记录了最大的脱氢酶活性(38.88 µg TPF g -1 土壤)。治疗伯克霍尔德氏菌。 + RP60和葡糖杆菌属+ RP60产生了相当数量的P,这些处理在整个生长期均达到统计学水平。 Gluconacetobacter sp。的养分吸收和产量最高。 +伯克霍尔德氏菌+ RP60处理。葡糖杆菌属菌株之间的正协同相互作用。和伯克霍尔德氏菌。已因其促进植物生长的活动而闻名。这些菌株在单独或作为综合养分管理系统的组件在田间条件下测试其性能后,有可能发展成为生物肥料。

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