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- W4285107283 startingPage "565" @default.
- W4285107283 abstract "Bioremediation among many cleanup technologies, considered an attractive and affordable remediation technology with no side effects on agroenvironment, is adopted to circumvent polluted soils making ecologically disturbed soils cultivable again. Soil microbes spanning different genera and groups evade the toxicity of various environmental contaminants like heavy metals, pesticides, and hydrocarbons. Biofertilizer organisms, among soil microbiomes, have been used in the management of abiotic and biotic stresses and as a formulation to optimize yields and quality of food crops. The exploitation of soil microbes both as pollution alleviating agents (bioremediation) and as crop stimulants (biofertilizers) has provided solutions to both the challenges of environmental stresses and expensive chemical fertilizers. Considering the impactful role of biofertilizers in soil amelioration and plant growth promotion, the priority of current research has been directed toward finding unexplored microbes with dual features as bioremediating materials and as biofertilizers. Despite the growing interest in biofertilizer-based remediation technology, the full potential of this technology has not yet been realized. Recent developments in bacterial biofertilizer (especially nitrogen and phosphate biofertilizers)-based bioremediation of polluted soils and sustainable crop production are reviewed. Here, the microbial formulations, biofertilizer-based strategies for stress management, and their prospects for sustainable crop production are surveyed and presented. Collectively, the information provided herein is desirable to fully explore the bioremediation potential of bacterial biofertilizers and is likely to generate interest for adoption and application of this microbiological technology for remediation of contaminated soils vis-à-vis crop production under both conventional and stressful conditions to satisfy global “food and feed” demands." @default.
- W4285107283 created "2022-07-14" @default.
- W4285107283 creator A5003430937 @default.
- W4285107283 creator A5010981502 @default.
- W4285107283 creator A5052534503 @default.
- W4285107283 creator A5055716705 @default.
- W4285107283 date "2022-01-01" @default.
- W4285107283 modified "2023-10-16" @default.
- W4285107283 title "Bacterial biofertilizers for bioremediation: A priority for future research" @default.
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