Application of Lactic Acid Bacteria (LAB) in Sustainable Agriculture: Advantages and Limitations
Применение молочнокислых бактерий (LAB) в устойчивом сельском хозяйстве: преимущества и ограничения
2022-07-14
SCID: 54.1/3trxj692
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lactic acid bacteriaphytopathogen biocontrolplant growth promotionsoil health and fertilitysustainable agriculture
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Abstract (AI)
Lactic acid bacteria (LAB) are significant groups of probiotic organisms in fermented food and are generally considered safe. LAB regulate soil organic matter and the biochemical cycle, detoxify hazardous chemicals, and enhance plant health. They are found in decomposing plants, traditional fermented milk products, and normal human gastrointestinal and vaginal flora. Exploring LAB identified in unknown niches may lead to isolating unique species. However, their classification is quite complex, and they are adapted to high sugar concentrations and acidic environments. LAB strains are considered promising candidates for sustainable agriculture, and they promote soil health and fertility. Therefore, they have received much attention regarding sustainable agriculture. LAB metabolites promote plant growth and stimulate shoot and root growth. As fertilizers, LAB can promote biodegradation, accelerate the soil organic content, and produce organic acid and bacteriocin metabolites. However, LAB show an antagonistic effect against phytopathogens, inhibiting fungal and bacterial populations in the rhizosphere and phyllosphere. Several studies have proposed the LAB bioremediation efficiency and detoxification of heavy metals and mycotoxins. However, LAB genetic manipulation and metabolic engineered tools provide efficient cell factories tailor-made to produce beneficial industrial and agro-products. This review discusses lactic acid bacteria advantages and limitations in sustainable agricultural development.
Key Findings
1
Genetic manipulation and metabolic engineering could tailor LAB as cell factories for beneficial agricultural and industrial products, although complex classification and environmental adaptations remain limitations.
2
LAB inhibit phytopathogenic fungi and bacteria in both the rhizosphere and phyllosphere through antagonistic effects.
3
LAB may support agricultural bioremediation by detoxifying hazardous chemicals, heavy metals, and mycotoxins.
4
LAB metabolites promote plant growth, including stimulation of shoot and root development, and can function as biofertilizer components.
5
Lactic acid bacteria can improve soil health and fertility by regulating organic matter decomposition and biochemical cycles.
Research Object
Lactic acid bacteria (LAB) applied in sustainable agriculture
Research Subject
The advantages, limitations, and agricultural functions of LAB, including soil-health improvement, plant-growth promotion, pathogen antagonism, bioremediation, and metabolite production
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2022-07-14
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