Background and Aims: Plant growth–promoting rhizobacteria (PGPR) constitute a diverse group of beneficial soil microorganisms that colonize the rhizosphere and enhance plant growth through multiple direct and indirect mechanisms, including nutrient mobilization and suppression of...
Open access
Research Article10.9734/mrji/2026/v36i41731
Edouard Loukou KOUADIO, Raïssa Kaéda Nassé GUEI, Kouadio AMANI, Adama OUATTARA, Athanase Kra KOUASSI, Mathurin KOFFI, Abdelkarim FILALI-MALTOUF & Ibrahim Konate·Microbiology Research Journal International·2025
The overuse of chemical fertilizers poses significant risks to preserving the environment, food safety and human health. As sustainable alternatives, plant growth-promoting rhizobacteria offer a ecological approach to improving plant productivity and soil fertility. This study ai...
Open access
Research Article10.9734/mrji/2025/v35i81615
Two endophytic bacterial isolates were obtained from root nodules of clover plants grown in salt affected clay soil of Egypt. The isolates were closely linked to Stenotrophomonas maltophilia strains IPR-Pv696 and 262XG2 based on the sequencing and phylogenetic analysis of 16S rRN...
Open access
Research Article10.9734/mrji/2022/v32i81336
Microorganisms in close association with the roots of plants can enhance plant growth, through nitrogen fixation (NF) and phosphorus solubilization (PS). Although the type of microbes in close association with different plants varies, their population and genetic capabilities is...
Open access
Research Article10.9734/mrji/2022/v32i71334
Adounigna Kassogué, Amadou Hamadoun Dicko, Diakaridia Traoré, Rokiatou Fané, Fernando Hercos Valicente & Amadou Hamadoun Babana·Microbiology Research Journal International·2016
Aims: To screen of the multiple plant growth promoting activities of some Bacillus thuringiensis strains isolated from Malian Agricultural soils and evaluate their ability to improve maize seed germination and seedling vigor in vitro. Study Design: Strains of Bacillus thuringiens...
Open access
Research Article10.9734/BMRJ/2016/24785
Aims: To isolate bacterial strains from chickpea rhizospheric soil and nodules, to characterize and identify potential bacterial strains by using 16S rRNA gene sequencing. Place and Duration of Study: Department of Soil Science & SWC, PMAS, Arid Agriculture University, Rawalp...
Open access
Research Article10.9734/BMRJ/2015/14496