Isolation and characterization of halotolerant bacilli from chickpea (Cicer arietinum L.) rhizosphere for plant growth promotion and biocontrol traits

被引:0
作者
Anjney Sharma
Prem Lal Kashyap
Alok Kumar Srivastava
Y. K. Bansal
Rajeev Kaushik
机构
[1] ICAR-National Bureau of Agriculturally Important Microorganisms,Division of Microbiology
[2] ICAR-Indian Institute of Wheat and Barley Research (IIWBR),undefined
[3] Department of Post Graduate Studies and Research in Biological Science,undefined
[4] Indian Agricultural Research Institute,undefined
来源
European Journal of Plant Pathology | 2019年 / 153卷
关键词
Antagonism; Chickpea; Plant growth promotion; Salinity;
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中图分类号
学科分类号
摘要
The present study describes the identification and polyphasic characterization of salt tolerant bacilli displaying plant growth promoting and broad spectrum antifungal activities. A total of 110 strains were isolated, out of which nine were selected on the basis of halotolerance, in vitro plant growth promoting attributes and antagonism against multiple phytopathogens. Preliminary identification of strains was done on the basis of phylogenetic analysis and comparison of 16S RNA sequences with type strains. The test strains were identified as Bacillus pumilus, B. subtilis, B. licheniformis, B. safensis and B. cereus. These strains possess ability to tolerate high salt (8–10% NaCl), form endospore, showed broad spectrum antifungal activity and therefore might cope with adverse environments. Scanning electron microscopy of promising test strains (CG18 and CM25) and pathogen interaction indicated destruction of fungal mycelia by halotolerant antagonists due to cytoplasmic extrusion. Moreover, PCR amplification of bacillomycin (bmyB), chitinase (ChiA), and β-glucanase genes and production of hydrolytic enzymes suggested that test strains could have a role to manage plant pathogens under saline conditions. Finally, the selected strains exhibited some plant growth promotion traits. Overall, this study demonstrated that the evaluated strains could be useful in developing microbial products to enhance tolerance to biotic and abiotic stresses and boost plant growth.
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页码:787 / 800
页数:13
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共 232 条
  • [21] Chauhan S(2006)Identification of genes associated with pathogen inhibition in different strains Microbial Ecology 51 257-146
  • [22] Diomandé SE(1980)Optimization of protease activity of alkaliphilic bacteria isolated from an alkaline lake in India Nature 286 885-56
  • [23] Nguyen-The C(2007) for climate resilient agriculture Applied Microbiology and Biotechnology 75 1401-947
  • [24] Guinebretière M-H(1948)Effect of biofilm forming plant growth promoting rhizobacteria on salinity tolerance in barley Physiologia Plantarum 1 142-6
  • [25] Broussolle V(2001)Salinity induced physiological and biochemical changes in chickpea ( Current Microbiology 43 51-15
  • [26] Brillard J(2015) L.) genotypes PLoS One 10 942-370
  • [27] Esitken A(2016)Exploiting new systems-based strategies to elucidate plant-bacterial interactions in the rhizosphere Geomicrobiology Journal 33 3-246
  • [28] Yildiz HE(2007)Enhanced plant growth by siderophores produced by plant growth-promoting rhizobacteria Plant Pathology Journal 23 10-71
  • [29] Ercisli S(2003)Screening of high-yielding biocontrol bacterium Bs-916 mutant by ion implantation Physiologia Plantarum 118 362-532
  • [30] Donmez MF(1948)Production of hydrocyanic acid by bacteria Microbiology 17 236-425