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[2], ')': [3, 13], '的目标基因': [4], 'silencing': [5], '能导致昆虫死亡。这现象为昆虫害虫控制被看作了潜在的策略,并且它被称为调停': [6], 'RNAi': [7, 9, 21, 23, 25, 27], '的庄稼保护。然而,用为害虫控制的基于': [8], '的技术有许多限制,与有效性目标基因选择和是的可靠双海滨': [10], '(dsRNA': [12], '交货二主要挑战。关于目标基因选择,目前相应基因和染色体规模的使用高产量的屏蔽是研究人员采用的主要策略。一旦目标基因被识别,': [14], 'dsRNA': [15, 17, 29], '能被交付由微注射或由作为一个饮食的部件喂。然而,微注射,它是最普通的方法,能仅仅在实验室实验被使用。在转基因的植物和喷洒的': [16], '试剂对昆虫基因指导的': [18], 'dsRNAs': [19], '的表示被显示了在目标昆虫上导致': [20], '效果。因此,调停': [22], '的庄稼保护为害虫控制被看作了一种潜在的新产生的技术,或作为存在害虫控制策略的一个互补方法;然而,改进保护的功效和影响的种类的范围的进一步的开发是必要的。在这评论,我们为害虫昆虫管理在基于': [24], '的技术上总结了当前的研究。当前的进步证明了': [26], '技术有潜力是为设计昆虫控制措施的新一代的一个工具。在庄稼保护加速它的实际申请,': [28], '举起机制上的进一步的学习基于昆虫生理学和生物化学的知识被需要。': [30]}, 'cited_by_api_url': 'https://api.openalex.org/works?filter=cites:W3144044208', 'counts_by_year': [{'year': 2020, 'cited_by_count': 1}, {'year': 2019, 'cited_by_count': 1}], 'updated_date': '2024-09-16T02:55:53.434297', 'created_date': '2021-04-13'}