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Article

Isolation of Fluorescent Pseudomonas spp. from Degraded Agricultural Soils in the Daloa Region: Salt Stress Resistance Capacity

1Laboratory of Agrovalorisation, Department of Biochemistry and Microbiology, University Jean LOROUGNON GUEDE, Daloa, Côte d’Ivoire

2Laboratory of Biotechnology and Food Microbiology, Department of Food Sciences and Technology, University Nangui Abrogoua, Abidjan, Côte d’Ivoire


Journal of Applied & Environmental Microbiology. 2025, Vol. 13 No. 1, 33-40
DOI: 10.12691/jaem-13-1-5
Copyright © 2025 Science and Education Publishing

Cite this paper:
Toualy Serge Thibaut OUINA, Rosin Don Rodrigue VOKO Bi, Kouamé Claude YA, Pascaline Emira Wilfried KOUAMÉ, Marina KOUSSEMON-CAMARA, Ibrahim KONATE. Isolation of Fluorescent Pseudomonas spp. from Degraded Agricultural Soils in the Daloa Region: Salt Stress Resistance Capacity. Journal of Applied & Environmental Microbiology. 2025; 13(1):33-40. doi: 10.12691/jaem-13-1-5.

Correspondence to: Toualy  Serge Thibaut OUINA, Laboratory of Agrovalorisation, Department of Biochemistry and Microbiology, University Jean LOROUGNON GUEDE, Daloa, Côte d’Ivoire. Email: ouitoualy@yahoo.fr

Abstract

Salinisation due to intensive agriculture and geological alteration reduces soil microbial activity, creating unfavorable conditions for plant growth. This study aimed at screening degraded banana plantation soils from Digbapia and Zokoguhé (Daloa, Côte d’Ivoire) for fluorescent Pseudomonas spp. able to tolerate saline stress. Isolates were recovered, assayed for extracellular enzymatic activities, and tested for growth across a NaCl and KNO3 gradient up to 10%. Soil samples were collected from six degraded banana plantation sites. Fluorescent Pseudomonas spp. were isolated using culture techniques on media King’s A and B. Isolates were subsequently assayed for amylase, cellulase, protease and lipase activities and evaluated by monitoring growth in media supplemented with NaCl and KNO3 at concentrations ranging from 0 to 10%. Eight Pseudomonas species coded C226, C211, C127, C213, C212, C112R, C2211 and C129 were isolated from these soils. Among these isolates, C112R and C226 showed amylolytic activity, while C212, C213 and C127 showed cellulolytic activity. For high concentrations (8 to 10%), in KNO3 between 791.27 and 989 mM then in NaCl between 1368.9 and 1711.1 mM, the isolates able to grow were C129, C213, C127, C2211 and C112R. These species are the best candidates for resistance to salt stress. They could serve as plant biostimulants under saline conditions, contributing to soil restoration.

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