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生物表面活性剂在可持续农业实践中的多种功能潜力。

Biosurfactants' multifarious functional potential for sustainable agricultural practices.

作者信息

Karamchandani Bhoomika M, Pawar Ameya A, Pawar Sujit S, Syed Sahil, Mone Nishigandha S, Dalvi Sunil G, Rahman Pattanathu K S M, Banat Ibrahim M, Satpute Surekha K

机构信息

Department of Microbiology, Savitribai Phule Pune University, Pune, Maharashtra, India.

Tissue Culture Section, Vasantdada Sugar Institute, Pune, India.

出版信息

Front Bioeng Biotechnol. 2022 Dec 12;10:1047279. doi: 10.3389/fbioe.2022.1047279. eCollection 2022.

Abstract

Increasing food demand by the ever-growing population imposes an extra burden on the agricultural and food industries. Chemical-based pesticides, fungicides, fertilizers, and high-breeding crop varieties are typically employed to enhance crop productivity. Overexploitation of chemicals and their persistence in the environment, however, has detrimental effects on soil, water, and air which consequently disturb the food chain and the ecosystem. The lower aqueous solubility and higher hydrophobicity of agrochemicals, pesticides, metals, and hydrocarbons allow them to adhere to soil particles and, therefore, continue in the environment. Chemical pesticides, viz., organophosphate, organochlorine, and carbamate, are used regularly to protect agriculture produce. Hydrophobic pollutants strongly adhered to soil particles can be solubilized or desorbed through the usage of biosurfactant/s (BSs) or BS-producing and pesticide-degrading microorganisms. Among different types of BSs, rhamnolipids (RL), surfactin, mannosylerythritol lipids (MELs), and sophorolipids (SL) have been explored extensively due to their broad-spectrum antimicrobial activities against several phytopathogens. Different isoforms of lipopeptide, viz., iturin, fengycin, and surfactin, have also been reported against phytopathogens. The key role of BSs in designing and developing biopesticide formulations is to protect crops and our environment. Various functional properties such as wetting, spreading, penetration ability, and retention period are improved in surfactant-based formulations. This review emphasizes the use of diverse types of BSs and their source microorganisms to challenge phytopathogens. Extensive efforts seem to be focused on discovering the innovative antimicrobial potential of BSs to combat phytopathogens. We discussed the effectiveness of BSs in solubilizing pesticides to reduce their toxicity and contamination effects in the soil environment. Thus, we have shed some light on the use of BSs as an alternative to chemical pesticides and other agrochemicals as sparse literature discusses their interactions with pesticides. Life cycle assessment (LCA) and life cycle sustainability analysis (LCSA) quantifying their impact on human activities/interventions are also included. Nanoencapsulation of pesticide formulations is an innovative approach in minimizing pesticide doses and ultimately reducing their direct exposures to humans and animals. Some of the established big players and new entrants in the global BS market are providing promising solutions for agricultural practices. In conclusion, a better understanding of the role of BSs in pesticide solubilization and/or degradation by microorganisms represents a valuable approach to reducing their negative impact and maintaining sustainable agricultural practices.

摘要

不断增长的人口对粮食需求的增加给农业和食品工业带来了额外负担。通常使用化学农药、杀菌剂、化肥和高产品种作物来提高作物产量。然而,化学物质的过度使用及其在环境中的持久性对土壤、水和空气产生了有害影响,进而扰乱了食物链和生态系统。农用化学品、农药、金属和碳氢化合物的低水溶性和高疏水性使其能够附着在土壤颗粒上,从而在环境中持续存在。化学农药,即有机磷、有机氯和氨基甲酸酯类农药,经常用于保护农产品。通过使用生物表面活性剂或产生生物表面活性剂和降解农药的微生物,可以使强烈附着在土壤颗粒上的疏水性污染物溶解或解吸。在不同类型的生物表面活性剂中,鼠李糖脂、表面活性素、甘露糖赤藓糖醇脂和槐糖脂因其对多种植物病原体具有广谱抗菌活性而得到广泛研究。脂肽的不同异构体,即伊枯草菌素、丰原素和表面活性素,也被报道对植物病原体有作用。生物表面活性剂在设计和开发生物农药制剂中的关键作用是保护作物和我们的环境。基于表面活性剂的制剂改善了各种功能特性,如润湿性、铺展性、渗透能力和保留期。本综述强调使用不同类型的生物表面活性剂及其来源微生物来对抗植物病原体。大量努力似乎集中在发现生物表面活性剂对抗植物病原体的创新抗菌潜力上。我们讨论了生物表面活性剂在溶解农药以降低其在土壤环境中的毒性和污染影响方面的有效性。因此,由于关于它们与农药相互作用的文献稀少,我们对生物表面活性剂作为化学农药和其他农用化学品替代品的使用进行了一些阐述。还包括量化其对人类活动/干预影响的生命周期评估(LCA)和生命周期可持续性分析(LCSA)。农药制剂的纳米封装是一种减少农药用量并最终减少其对人类和动物直接暴露的创新方法。全球生物表面活性剂市场的一些老牌大公司和新进入者正在为农业实践提供有前景的解决方案。总之,更好地理解生物表面活性剂在微生物溶解和/或降解农药中的作用是减少其负面影响并维持可持续农业实践的一种有价值的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd06/9792099/6810e9bda9f4/fbioe-10-1047279-g001.jpg

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