Crisper-Cas 技术在农药生物修复中的作用

Manisha Chaudhari, Krunal Solanki
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引用次数: 0

摘要

杀虫剂、杀虫剂、某些药品,这些化学危险品会污染环境。杀虫剂主要用于管理农田中的植物、苍蝇、寄生真菌和寄生虫。为了限制杀虫剂对土壤和外部环境的影响,人们对杀虫剂和相关化学品的生物降解研究产生了浓厚的兴趣。因此,迫切需要快速、安全的环境生物修复、个人净化和治疗解毒剂。生物修复技术对环境友好,因此,如果我们使用这种技术,会更有帮助。微生物降解环境中复杂化学物质的能力被称为生物修复。CRISPR的发现、基于CRISPR的核适应性免疫系统 "CRISPR相关系统Cas "的机理以及将其转化为强大的基因编辑工具,彻底改变了分子生物学领域。带来并刺激了新的改良基因疗法。利用 CRISPR 技术转移所需的基因,减少有毒元素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of Crisper-Cas Technique in Bioremediation of Pesticides
Pesticides, insecticides, certain pharmaceuticals, chemically dangerous chemicals which can pollute the environment. Pesticides are primarily used to manage plants, flies, parasitic fungus, and parasites in crop fields. The desire to limit pesticide effects on soil and offsite environments has encouraged research interest in pesticide and related chemical biodegradation. As a result, quick and safe agents for environmental bioremediation, individual decontamination, and therapeutic detoxication are urgently needed. Bioremediation is environment friendly so if we use such kind of technique then more helpful. The ability of microorganisms to degrade complex chemical substances in the environment is referred to as bioremediation. The discovery of CRISPR, mechanism of the CRISPR-based nuclear adaptive immune system "CRISPR associated system, Cas", and its diversion to powerful tools for gene editing revolutionize the field of molecular biology. Brought about and stimulated new and improved gene therapy. By using CRISPR technique transfer desired gene and decrease toxic elements.
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