RNAi-Based Biocontrol of Pests to Improve the Productivity and Welfare of Livestock Production

Pia S. Menezes, Yakun Yan, Yunjia Yang, N. Mitter, T. Mahony, K. T. Mody
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引用次数: 3

Abstract

Insects and ectoparasites are causes for major concern throughout the world due to their economic and welfare impacts on livestock agriculture. Current control measures involve chemicals such as acaricides which pose challenges like chemical resistance and longer withholding periods. To enable more sustainable agriculture practices, it is important to develop technologies that combine targeted effectiveness with minimal environmental footprint. RNA interference (RNAi) is a eukaryotic process in which transcript expression is reduced in a sequence-specific manner. This makes it a perfect tool for developing efficient and effective biological control against pests and pathogens. Double-stranded RNA (dsRNA) is the key trigger molecule for inducing RNAi; this concept is widely studied for development of RNA-based biopesticides as an alternative to chemical controls in crop protection for targeting pests and pathogens with accuracy and specificity. In this review, we discuss key advances made using RNAi technology and how they can be applied to improve health in livestock industries. This includes research focused on different delivery mechanisms of dsRNA, important developments in regulatory frameworks, and risk identification, that will enable the future adoption of RNAi technologies to improve animal health.
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基于rnai的害虫生物防治提高畜牧生产的生产力和福利
昆虫和体外寄生虫因其对畜牧业的经济和福利影响而引起全世界的广泛关注。目前的控制措施涉及诸如杀螨剂之类的化学品,这些化学品带来了诸如耐化学性和较长的滞留期等挑战。为了实现更可持续的农业实践,重要的是开发将目标效益与最小环境足迹相结合的技术。RNA干扰(RNAi)是一种真核生物过程,其中转录物表达以序列特异性的方式减少。这使得它成为开发高效和有效的生物防治害虫和病原体的完美工具。双链RNA (dsRNA)是诱导RNAi的关键触发分子;这一概念被广泛研究,以开发基于rna的生物农药,作为作物保护中化学控制的替代品,以准确和特异性地靶向害虫和病原体。在这篇综述中,我们讨论了利用RNAi技术取得的关键进展,以及它们如何应用于改善畜牧业的健康。这包括专注于dsRNA不同递送机制的研究、监管框架的重要发展以及风险识别,这些将使未来采用RNAi技术来改善动物健康。
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