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of rhizosphere processes (exudation of organic acids and phosphatases) including root plasticity and root-associated beneficial microbes is a must for achieving stable crop productivity in a sustainable way. In
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microbes is a must for achieving stable crop productivity in a sustainable way. In that regard, there is an urgent need to double the ongoing efforts for developing innovative and sustainable solutions
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, including biological, chemical, and functional attributes. A strong emphasis will be placed on bioremediation and nature-based solutions, such as microbial-assisted remediation and plant–microbe interactions
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through coating and co-granulation approaches, physicochemical and microbiological quality assessment, investigation of plant-microbe interactions, and greenhouse and field evaluation of fertilizer
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quality assessment, investigation of plant-microbe interactions, and greenhouse and field evaluation of fertilizer performance. The successful candidate will work within a multidisciplinary research
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, or plant-microbe interactions. Proficiency in the use of bioinformatics tools for metagenomic and transcriptomic data analysis (e.g., QIIME, DADA2, R, Python). Demonstrated ability to independently design
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and nature-based solutions, such as microbial-assisted remediation and plant–microbe interactions in the rhizosphere, endophytic compartments, and mycorrhizal associations, with the ultimate goal