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作物中外源和内源性 RNAi 技术的研究和商业化的全球趋势。

Global trends in research and commercialization of exogenous and endogenous RNAi technologies for crops.

机构信息

a Centre for Research in Biotechnology for Agriculture, University of Malaya , Kuala Lumpur , Malaysia.

b University of Malaya Centre of Innovation & Commercialization, University of Malaya , Kuala Lumpur , Malaysia.

出版信息

Crit Rev Biotechnol. 2019 Feb;39(1):67-78. doi: 10.1080/07388551.2018.1496064. Epub 2018 Sep 9.

Abstract

It has only been about 20 years since the first Nobel Prize-winning work on RNA interference (RNAi) in Caenorhabditis elegans was published in the journal Nature. Fast forward to today, and the use of RNA molecules as gene-silencing elements in crops has helped scientists to unveil possible solutions to the global problems of agricultural losses due to pests, viruses, pathogens, and to other abiotic and biotic stresses. The recent proliferation of publications suggests that the technology has gained significant attention and received ample funding support. In this article, an attempt has been made to visualize recent trends in Research & Development (R&D) investment in this field by analyzing top cited scholarly articles, patent trends, and commercialization activity. The publication and citation analysis identified that the development of RNAi-based crops conferring resistance against viruses, fungi, and pests are at the forefront of RNAi research and that Chinese and US institutions are the leaders in this field. The patent landscape analysis for RNAi technology over all aspects related to RNAi-derived crops provides an overview of patenting activity from a geographical, organizational, and legal perspective. Such an exercise is pivotal to industry players and public institutions aiming at creating intellectual property that is commercially appealing. An upswing in commercial interests in this technology in recent years is reflected by a consistent number of patent filings in US, European, and Chinese patent offices, with multinational giant firms as the most prolific patent filers. The expanding RNAi commercialization landscape is supported by a series of strategic partnerships, licensing agreements, and acquisitions created between agribusinesses, public research institutions, and startup companies. From key observations, we would like to highlight that such investments have very positive impacts on the development of RNAi technology. Nonetheless, the success of this technology is dependent on several factors, such as financial requirements, the complexity, and timeframe of the entire development process, as well as stringent regulations imposed by the relevant authorities. In most countries, RNAi-based transgenic crops are still considered as a genetically modified (GM) product, which necessitates the crops to undergo rigorous evaluation before approval is granted. Recent advancements in exogenous RNAi-derived biopesticides have provided a nontransgenic alternative to GM crops. However, challenges still remain in the form of technical hurdles and regulatory ambiguities surrounding this emerging technology. Its full potential remains to be realized.

摘要

自第一篇关于 RNA 干扰(RNAi)的开创性论文在《自然》杂志上发表以来,至今已有约 20 年。如今,将 RNA 分子用作作物中的基因沉默元件,帮助科学家们揭示了可能的解决方案,以应对因虫害、病毒、病原体以及其他非生物和生物胁迫导致的农业损失这一全球性问题。最近发表的大量论文表明,该技术引起了广泛关注,并获得了充足的资金支持。在本文中,我们通过分析高引学术文章、专利趋势和商业化活动,试图描绘该领域研发投资的最新趋势。通过出版物和引文分析发现,开发具有抗病毒、抗真菌和抗虫害特性的基于 RNAi 的作物是 RNAi 研究的前沿领域,中国和美国的机构在该领域处于领先地位。从地理、组织和法律角度对与 RNAi 衍生作物相关的所有方面的 RNAi 技术专利全景分析提供了专利活动的概述。对于旨在创造具有商业吸引力的知识产权的行业参与者和公共机构来说,这样的研究至关重要。近年来,该技术商业化利益的上升反映在美国、欧洲和中国专利局提交的专利申请数量持续增加,跨国巨头公司是最活跃的专利申请人。农业综合企业、公共研究机构和初创公司之间创建的一系列战略合作伙伴关系、许可协议和收购,支持着不断扩大的 RNAi 商业化格局。从关键观察结果中,我们想强调的是,这些投资对 RNAi 技术的发展产生了非常积极的影响。然而,这项技术的成功取决于几个因素,例如财务要求、整个开发过程的复杂性和时间框架,以及相关当局实施的严格规定。在大多数国家,基于 RNAi 的转基因作物仍被视为转基因产品,这需要在获得批准之前对作物进行严格评估。最近外源性 RNAi 衍生生物农药的进展为转基因作物提供了一种非转基因替代品。然而,围绕这项新兴技术仍然存在技术障碍和监管模糊性的挑战。它的全部潜力仍有待实现。

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