Imperative roles of halotolerant plant growth-promoting rhizobacteria and kinetin in improving salt tolerance and growth of black gram (Phaseolus mungo) View Full Text


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Article Info

DATE

2017-11-28

AUTHORS

Nasim Ahmad Yasin, Waheed Ullah Khan, Sajid Rashid Ahmad, Aamir Ali, Aqeel Ahmad, Waheed Akram

ABSTRACT

The salinity stress causes a major threat for plant growth, yield, and biomass production. The present study was designed to assess the effect of exogenously applied kinetin and halotolerant plant growth-promoting rhizobacteria (H-PGPR) on alleviation of salt stress in black gram (Phaseolus mungo). A total of 15 rhizobacterial isolates obtained from a salt-affected area were analyzed for their capability to improve growth of P. mungo plants growing in greenhouse conditions. Out of the tested rhizobacteria, the two bacterial isolates which exhibited maximum growth potential were screened and their growth-promoting attributes were evaluated. The role of screened H-PGPR and/or kinetin (8 and 10 μM) was evaluated in P. mungo plants irrigated with three levels of brackish water (S1 = 3, S2 = 5, and S3 = 7 dSm−1) under field condition. Salt stress reduced transpiration rate, stomatal conductance, salt tolerance index, growth, leaf area, photosynthetic pigments, leaf relative water content (LRWC), biomass production, and seed yield in subjected plants. Conversely, the salinized plants treated with kinetin and/or H-PGPR exhibited improved levels of chlorophyll contents, LRWC, root growth, shoot growth, biomass production, and seed yield. The H-PGPR and/or kinetin supplementation also reduced electrolyte leakage in salt-stressed plants. Overall, the present findings will be of great value to recognize the mechanism of salt stress alleviation in P. mungo plants under the influence of H-PGPR and/or kinetin. More... »

PAGES

4491-4505

References to SciGraph publications

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  • 2007-01-01. Salicylic Acid: Biosynthesis, Metabolism and Physiological Role in Plants in SALICYLIC ACID: A PLANT HORMONE
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  • 2011-07-09. Salt-tolerant rhizobacteria-mediated induced tolerance in wheat (Triticum aestivum) and chemical diversity in rhizosphere enhance plant growth in BIOLOGY AND FERTILITY OF SOILS
  • 2012-10-09. Salt Stress: Causes, Types and Responses of Plants in ECOPHYSIOLOGY AND RESPONSES OF PLANTS UNDER SALT STRESS
  • 2016-01-04. Altered Phenylpropanoid Metabolism in the Maize Lc-Expressed Sweet Potato (Ipomoea batatas) Affects Storage Root Development in SCIENTIFIC REPORTS
  • 2015-06-17. Plant-growth-promoting rhizobacteria: drought stress alleviators to ameliorate crop production in drylands in ANNALS OF MICROBIOLOGY
  • 2016-10-07. Native halo-tolerant plant growth promoting rhizobacteria Enterococcus and Pantoea sp. improve seed yield of Mungbean (Vigna radiata L.) under soil salinity by reducing sodium uptake and stress injury in PHYSIOLOGY AND MOLECULAR BIOLOGY OF PLANTS
  • 2012-05-05. Mitigation of salinity-induced negative impact on the growth and yield of wheat by plant growth-promoting rhizobacteria in naturally saline conditions in ANNALS OF MICROBIOLOGY
  • 2009-01-09. Salt tolerance in Zea mays (L). following inoculation with Rhizobium and Pseudomonas in BIOLOGY AND FERTILITY OF SOILS
  • 1994. Handbook for Rhizobia, Methods in Legume-Rhizobium Technology in NONE
  • 2016-02-29. Fluorescent Pseudomonas sp. PF17 as an efficient plant growth regulator and biocontrol agent for sunflower crop under saline conditions in SYMBIOSIS
  • 2014-08-03. Plant growth promoting rhizobia: challenges and opportunities in 3 BIOTECH
  • 2009-09-04. Alleviation of drought stress effects in sunflower seedlings by the exopolysaccharides producing Pseudomonas putida strain GAP-P45 in BIOLOGY AND FERTILITY OF SOILS
  • Identifiers

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    http://scigraph.springernature.com/pub.10.1007/s11356-017-0761-0

    DOI

    http://dx.doi.org/10.1007/s11356-017-0761-0

    DIMENSIONS

    https://app.dimensions.ai/details/publication/pub.1093058352

    PUBMED

    https://www.ncbi.nlm.nih.gov/pubmed/29185225


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