Interactions of antioxidant defense mechanisms developed by plants and microorganisms against pesticides

Fadime Karabulut, S. Aydın, J. Parray
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引用次数: 4

Abstract

In the developing world and increasing human population, great importance is given to food security and crop cultivation in climate change. Therefore, different strategies are needed to maintain and revive the crop resources required for agriculture. Pesticides in soil solution can either be adsorbed by soil colloids or degraded by microorganisms. The use of pesticides against diseases and pests that reduce the yield of plants continues to increase day by day. However, it also threatens the life of living things. Over time, many insects and weeds resistant to pesticides have emerged, and it has been seen that the dose of pesticides should be increased. This situation harms both the environment and the economy. Pesticides stay in the soil for many years, preventing microorganism activities and causing oxidative stress induction. Besides, it is known that pesticides inhibit enzyme activities by participating in some enzymatic events. In this review, we discussed the antioxidant defense mechanisms that develop in microorganisms due to the effect of pesticides on microorganisms and provide biodegradation. When exposed to pesticide toxicity in microorganisms that provide biodegradation, specific biological systems characterized by enzymatic reactions become active. In cases where the enzyme defense of microorganisms is insufficient, biotransformation is carried out by artificially supplementing the environment with enzymes; It contains a series of enzyme-catalyzed reactions, and in this way, the negative factors that the plant is exposed to can be eliminated or mitigated. Microbial enzymes provide biodegradation. In addition, to prevent the biodegradation effect; It is essential to examine this subject to improve the understanding and practical use of enzyme use, enzyme extraction methods and future enzyme-assisted bioremediation processes for their development and evaluation.
植物和微生物抗农药防御机制的相互作用
在发展中国家和不断增长的人口中,粮食安全和作物种植在气候变化中受到高度重视。因此,需要采取不同的策略来维持和恢复农业所需的作物资源。土壤溶液中的农药可以被土壤胶体吸附,也可以被微生物降解。杀虫剂的使用日益增加,以防治减少植物产量的病虫害。然而,它也威胁着生物的生命。随着时间的推移,出现了许多对农药有抗性的昆虫和杂草,因此应该增加农药的剂量。这种情况对环境和经济都有害。农药在土壤中滞留多年,阻止微生物活动,引起氧化应激诱导。此外,已知农药通过参与一些酶促事件来抑制酶的活性。本文综述了农药对微生物的作用和提供生物降解的抗氧化防御机制。当微生物暴露于具有生物降解作用的农药毒性时,以酶促反应为特征的特定生物系统变得活跃。在微生物酶防御不足的情况下,通过人为地向环境补充酶来进行生物转化;它包含一系列酶催化反应,通过这种方式,可以消除或减轻植物所暴露的负面因素。微生物酶提供生物降解。另外,防止生物降解作用;研究这一主题对于提高对酶的使用、酶提取方法和未来酶辅助生物修复工艺的理解和实际应用对于它们的开发和评价至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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