Isolation and Phenotypic Microarray Profiling of Different Pseudomonas Strains Isolated from the Rhizosphere of Curcuma longa L.

Author:

Pathak Parul1,Singh Monika2ORCID,Naskar Ananya2,Singh Sandeep Kumar3,Bhardwaj Nikunj4,Kumar Ajay5ORCID

Affiliation:

1. Department of Microbiology, Singhania University, Pacheri Bari, Jhunjhunu 333515, India

2. Department of Biotechnology, School of Applied and Life Sciences, Uttaranchal University, Dehrdaun 248007, India

3. Division of Microbiology, ICAR-Indian Agricultural Research Institute, Pusa, New Delhi 110012, India

4. Department of Zoology, Maharaj Singh College, Maa Shakumbhari University, Saharanpur 247001, India

5. Amity Institute of Biotechnology, Amity University, Noida 201313, India

Abstract

In the present study, different Pseudomonas strains were isolated from the rhizospheric soil of Curcuma longa (turmeric) and further identified and characterized based on morphological, biochemical, and molecular characteristics through the 16S rRNA gene sequencing analysis. The identified bacterial strains belong to the Pseudomonas genus viz. Pseudomonas sp. CL10, Pseudomonas sp. CL11, and P. fluorescence CLI4. However, the isolated strains tested positive for IAA production, siderophore production, and the solubilization of tricalcium phosphate during plant growth promoting traits analysis. Further phenotype microArray (PM) technology was used to evaluate the antibiotic and chemical sensitivity of the isolated bacterial strains. The antibiotics phleomycin, oxacillin, vancomycin, novobiocin, spiramycin, and rifampicin, as well as chemicals like, 5-7 dichloro-8-hydroxy quanaldine, 5-7 dichloro-8-hydroxyquinoline, domophenbrobide, and 3-5 dimethoxy benzyl alcohol, showed resistance in all the rhizobacterial strains. However, upon further detailed study, Pseudomonas sp. CL10 exhibited resistance to thirteen antibiotics, CL11 to fourteen, and CL14 showed resistance against seventeen antibiotics and chemical classes. The results of the study indicate that some of these strains can be used as bioinoculum to enhance the plant growth and health.

Publisher

MDPI AG

Subject

General Medicine

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