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首页> 外文期刊>Biological Control: Theory and Application in Pest Management >Phosphate solubilizers as antagonists for bacterial leaf blight with improved rice growth in phosphorus deficit soil
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Phosphate solubilizers as antagonists for bacterial leaf blight with improved rice growth in phosphorus deficit soil

机译:磷酸盐溶解剂作为细菌叶片的拮抗剂,随着磷脂土壤的改善而改善水稻生长

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摘要

Multifaceted phosphate solubilizing bacteria (PSB) promote growth of plants by acting both as biofertilizer and biopesticide. The present study aimed to use native beneficial rhizobacteria to suppress rice Bacterial Leaf Blight (BLB) pathogen as well as to combat the plant in P deficiency without reduction in crop yield. In present investigation, of 50 PSB isolated from rice rhizosphere, three bacterial strains inhibited the BLB pathogen (18-25 mm), solubilized phosphorus (up to 197 mu g mL(-1)) produced IAA (1.7-14 mu g mL(-1)). Gluconic acid produced by phosphate solubilizing antagonistic bacteria and molecular confirmation through amplification of glucose dehydrogenase genes (gcd) showed that gluconic acid may have dual role in P solubilization as well as BLB suppression. Plate germination assay showed that increase in vigor index (27%), root diameter (29%), root length volume(-1) (57%) and root projection area (43%) were observed in inoculated seedlings as compared to uninoculated control. Plant inoculation studies under net house conditions showed BLB disease suppression (up to 56%) along with increase in plant P contents (up to 0.47% in straw and 1.26% in seed) in treatments inoculated with Pseudomonas spp. MR11, MR34 and Bacillus sp. MR42. Increase in the activity of defense related enzymes Phenylalanine ammonia lyase (PAL: 5.165 activity as mu mole cinnamic acid g(-1). f. wt.), Catalase (CAT: 2.88 activity g(-1). f. wt.), Peroxidase (POD: 2.4 activity g(-1). f. wt.), beta, 1-3 glucanase (283 activity g(-1). f. wt.) and Polyphenol oxidase (PPO: 65 activity g(-1). f. wt.) were observed in response to inoculation of P-solubilizing antagonistic bacteria. BOX PCR finger printing and viable cell count coupled with Fluorescent in situ hybridization showed the competence and survival of inoculated bacteria in rhizosphere and phyllosphere. The findings of the current research work strongly encouraged the use of PSB strains for BLB suppression in phosphorus deficient soils.
机译:多刻录的磷酸盐溶解细菌(PSB)通过作为生物分析器和生物农药而作用来促进植物的生长。本研究旨在使用本地有益的根茎抑制水稻细菌叶枯(BLB)病原体以及对抗P缺乏的植物,而不会降低作物产量。在目前的调查中,从水稻根际分离的50 psb,三种细菌菌株抑制了溶解的磷(18-25mm)(高达197μg(-1))产生的IAA(1.7-14μgml( -1))。通过扩增葡萄糖脱氢酶基因(GCD)的磷酸盐溶解拮抗细菌和分子确认产生的葡萄糖酸表明,葡萄糖酸可以在P溶解中具有双重作用以及短脉冲抑制。与未处理的对照相比,板萌发测定表明,在接种幼苗中,观察到活跃指数(27%),根直径(29%),根长度体积(-1)(57%)和根突出区域(43%),与未致力于未征收的对照相比。净房局部条件下的植物接种研究表明,植物P含量增加(高达56%),植物P含量增加(吸管高达0.47%,种子中的1.26%),其接种的处理PseudomonasSPP。 MR11,MR34和BACILLUS SP。 MR42。增加国防相关酶的活性苯丙氨酸氨酶(PAL:5.165活性为Mu Mole肉桂酸G(-1)。F.WT。),过氧化氢酶(CAT:2.88活性G(-1)。F.WT。) ,过氧化物酶(POD:2.4活性G(-1)。F.WT。),β,1-3葡聚糖酶(283活性G(-1)。F.WT。)和多酚氧化酶(PPO:65活性G( - 1)。F.Wt。响应于接种P溶解拮抗细菌而观察到)。箱子PCR手指印刷和活细胞计数与荧光杂交耦合,表明了根际和文学的接种细菌的能力和存活。目前研究工作的调查结果强烈建议使用PSB菌株进行磷缺陷土壤的抑制。

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