Development of siderophore-based rhizobacterial consortium for the mitigation of biotic and abiotic environmental stresses in tomatoes: Anin vitroandin plantaapproach

Author:

Karuppiah Vijay1ORCID,Natarajan Suganthy2,Gangatharan Muralitharan3,Aldayel Munirah Fahad4,Alsowayeh Noorah5,Thangavel Kavitha1ORCID

Affiliation:

1. Department of Microbiology, Science Campus Alagappa University Karaikudi Tamilnadu India

2. Department of Nanoscience and Technology, Science Campus Alagappa University Karaikudi Tamilnadu India

3. Department of Microbiology Bharathidasan University Tiruchirappalli Tamilnadu India

4. Biological Sciences Department, College of Science King Faisal University Al Hofuf Saudi Arabia

5. Department of Biology, College of Education (Majmaah) Majmaah University Al-Majmaah Saudi Arabia

Abstract

AbstractAimTomato-associated plant-growth-promoting rhizosphere bacteria were screened for effective antagonistic activity against the fungal vascular wilt pathogens; tolerance to heavy metals; and enhancing the bioavailability of iron for tomato plants through in vitro and in vivo approaches.Methods and ResultsAmong the 121 rhizobacteria screened for siderophores, 25 isolates were observed to be siderophore producers and out of these, seven isolates chelate copper and iron thus exhibiting in vitro antagonism against the virulent strains of Fusarium oxysporum f. sp. lycopersici MTCC10270 (Fol), Fusarium equiseti MFol and Sarocladium sp. SWL isolated from infected tomatoes. Pseudomonas stutzeri KRP8 was identified to be the most potent strain among the siderophore producers and its siderophores were chemically characterized by mass spectra as metal bound and metal-free forms. Upon bio-inoculation of fortified bacterial consortium (siderozote) into the rhizosphere of vermiculite pot cultured tomatoes supplied with varying concentrations of iron and copper ions, we observed in planta growth improvements, antagonism, enhancement of bioavailability of iron and heavy metal tolerance using Inductively Coupled Plasma-Optical Emission Spectrometry.Conclusion and Significance of the StudyOur rhizobacterial consortium provides an opportunity for soil reclamation through an ecofriendly method for a heavy metal-free agricultural landscape.

Funder

Science and Engineering Research Board; RUSA

RUSA

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,General Medicine,Biotechnology

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