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基因工程在控制埃塞俄比亚可持续性作物香蕉枯萎病中的应用

Application of Genetic Engineering for Control of Bacterial Wilt Disease of Enset, Ethiopia's Sustainability Crop.

作者信息

Merga Ibsa Fite, Tripathi Leena, Hvoslef-Eide Anne Kathrine, Gebre Endale

机构信息

International Institute of Tropical Agriculture, Nairobi, Kenya.

Norwegian University of Life Sciences, Ås, Norway.

出版信息

Front Plant Sci. 2019 Feb 26;10:133. doi: 10.3389/fpls.2019.00133. eCollection 2019.

Abstract

Enset ( (Welw.) Cheesman) is one of the Ethiopia's indigenous sustainability crops supporting the livelihoods of about 20 million people, mainly in the densely populated South and Southwestern parts of the country. Enset serves as a food security crop for humans, animal feed, and source of fiber for the producers. The production of enset has been constrained by plant pests, diseases, and abiotic factors. Among these constraints, bacterial wilt disease has been the most important limiting factor for enset production since its outbreak five decades ago. There is no known bacterial wilt disease resistant genetic material in the enset genetic pool to transfer this trait to susceptible enset varieties through conventional breeding. Moreover, the absence of effective chemicals against the disease has left farmers without means to combat bacterial wilt for decades. Genetic engineering has been the alternative approach to develop disease resistant plant materials in other crops where traditional breeding tools are ineffective. This review discusses enset cultivation and recent developments addressing the control of bacterial wilt disease in enset and related crops like banana to help design effective strategies.

摘要

埃塞俄比亚画眉草((Welw.) Cheesman)是埃塞俄比亚本土的可持续性作物之一,为约2000万人的生计提供支持,主要分布在该国人口密集的南部和西南部地区。埃塞俄比亚画眉草是人类的粮食安全作物、动物饲料以及生产者的纤维来源。埃塞俄比亚画眉草的生产受到植物病虫害和非生物因素的制约。在这些制约因素中,细菌性枯萎病自50年前爆发以来一直是埃塞俄比亚画眉草生产最重要的限制因素。在埃塞俄比亚画眉草基因库中,尚无已知的抗细菌性枯萎病遗传物质可通过传统育种将该性状转移到易感的埃塞俄比亚画眉草品种中。此外,几十年来一直没有有效的化学药剂防治该病,这使得农民无法对抗细菌性枯萎病。在传统育种工具无效的其他作物中,基因工程已成为培育抗病植物材料的替代方法。本综述讨论了埃塞俄比亚画眉草的种植以及近期在防治埃塞俄比亚画眉草和香蕉等相关作物细菌性枯萎病方面的进展,以帮助制定有效的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f82/6399475/e98fbaaadc6f/fpls-10-00133-g001.jpg

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