African Journal of
Microbiology Research

  • Abbreviation: Afr. J. Microbiol. Res.
  • Language: English
  • ISSN: 1996-0808
  • DOI: 10.5897/AJMR
  • Start Year: 2007
  • Published Articles: 5233

Full Length Research Paper

Cleopatra mandarin (Citrus reshni Hort. Ex Tan.) modulate physiological mechanisms to tolerate drought stress due to arbuscular mycorrhizal fungi and mycorrhizal helper bacteria

Prananath Barman*
  • Prananath Barman*
  • Division of Crop Production, Central Institute for Subtropical Horticulture, Rehmankhera, P.O. Kakori, Lucknow, Uttar Pradesh, 227 107 India
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Sanjay Kumar Singh
  • Sanjay Kumar Singh
  • Division of Fruit Science and Horticulture Technology, Indian Agricultural Research Institute, New Delhi, 110 012 India
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Vishwa Bandhu Patel
  • Vishwa Bandhu Patel
  • Division of Fruit Science, Bihar Agricultural University, Sabour, Bihar, 813 210 India
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Lata Nain
  • Lata Nain
  • Division of Microbiology, Indian Agricultural Research Institute, New Delhi, 110 012 India
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Avnish Pandey
  • Avnish Pandey
  • Division of Crop Improvement, Central Institute for Subtropical Horticulture, Rehmankhera, P.O. Kakori, Lucknow, Uttar Pradesh, 227 107 India
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  •  Received: 16 January 2015
  •  Accepted: 27 April 2015
  •  Published: 06 May 2015

Abstract

The influence of Glomus intraradices colonisation on growth and reactive oxygen metabolism of Cleopatra mandarin (Citrus reshni Hort. Ex Tan.) seedlings treated with mycorrhizal helper bacteria, that is, phosphate solubilising bacteria containing a mixture of Bacilus subtilis and B. megaterium, Azospirillum braisilence or Providencia sp.) in potted culture was studied under well-watered or drought stress conditions. Results indicate that mycorrhizal inoculation increased plant growth and nutrient acquisition independent of the water regime, particularly when associated with mycorrhizal helper bacteria. Exposure of plant to drought stress led to generation of superoxide radicals and hydrogen peroxide in leaf tissues, however, their concentrations were lower in seedlings inoculated with G. intraradices and phosphate solubilising bacteria, as compared to other treatments including control. This particular treatment also increased total glutathione content and enhanced antioxidant enzyme activity in plant and microbial activity in soil. Mycorrhizal colonization was positively correlated with antioxidant metabolite, plant antioxidant enzymes, rhizospheric microbial activity and microbial biomass carbon and negatively correlated with reactive oxygen species under drought stress, which indicated that its inoculation could enhance plant defence system and alleviates oxidative damages to membrane lipids and proteins.

Key words: Cleopatra mandarin, superoxide radicals, hydrogen peroxide, anti-scavenging enzymes, plant nutrients, soil microbial biomass, soil microbial activity.

Abbreviation

AMF, Arbuscular mycorrhizal fungi; MHB, mycorrhizal helper bacteria; PSB, phosphate solubilising bacteria; WS, water stress; WW, well-watered; DAI, days after inoculation