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首页> 外文期刊>Advances in Research >Antagonistic ACC Deaminase Producing Pseudomonas fluorescens with Polymer Seed Coating for the Management of Rice Fallow Black Gram Diseases
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Antagonistic ACC Deaminase Producing Pseudomonas fluorescens with Polymer Seed Coating for the Management of Rice Fallow Black Gram Diseases

机译:拮抗ACC脱氨酶生产荧光假单胞菌与聚合物种子包衣处理水稻小黑病

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摘要

Plant growth promoting bacterial (PGPB) strains of Pseudomonas fluorescens were tested for their capacity to overcome the water stress under rice fallow condition in black gram plants. Among the different bacteria used, P. fluorescens TRRI-1 were exhibited the highest antagonistic activity, 1-aminocyclopropane-1-carboxylic acid (ACC) deaminase positive reaction to PCR amplification, increased the vigour index, Germination, Seedling dry matter production, No. of nodules in black gram seedlings grow out test and pot culture. Quantitative and qualitative analyses of stress-related enzymes indicated the greater activity of catalase and peroxidase in black gram plants bacterized with P. fluorescens TRRI-1 when compared to untreated plants. The greater accumulation of proline was recorded in TRRI-1 treated plants compared to untreated plants. The greater activity of stress-related enzymes in green gram plants mediated by PGPB could pave the way for developing drought management strategies. The field trials revealed the greater reduction in disease incidence and increase yield by black gram plants treated with P. fluorescens TRRI-1compared to untreated plants. The promising role of antagonistic and ACC deaminase from Ps. fluorescens strain TRRI1 in alleviating biotic and abiotic stresses has been concluded in black gram plants.
机译:测试了荧光假单胞菌(Pseudomonas fluorescens)的植物生长促进细菌(PGPB)菌株在黑克植物中在水稻休耕条件下克服水分胁迫的能力。在使用的不同细菌中,荧光假单胞菌TRRI-1表现出最高的拮抗活性,对PCR扩增的1-氨基环丙烷-1-羧酸(ACC)脱氨酶阳性反应,增加了活力指数,发芽,幼苗干物质产生,无黑克幼苗中的结节长出试验和盆栽。胁迫相关酶的定量和定性分析表明,与未经处理的植物相比,用荧光假单胞菌TRRI-1细菌培养的黑克植物中过氧化氢酶和过氧化物酶的活性更高。与未处理的植物相比,TRRI-1处理的植物中脯氨酸的积累量更大。 PGPB介导的绿豆植物中与胁迫相关的酶的更大活性可以为开发干旱管理策略铺平道路。田间试验表明,与未经处理的植物相比,用荧光假单胞菌TRRI-1处理的黑克植物可更大程度地降低疾病发生率,并增加产量。来自PS的拮抗和ACC脱氨酶的有前途的作用。在黑克植物中已经得出了减轻生物和非生物胁迫的荧光菌株TRRI1。

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