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亚洲木薯育种与农学:50年历史与未来方向

Cassava breeding and agronomy in Asia: 50 years of history and future directions.

作者信息

Malik Al Imran, Kongsil Pasajee, Nguyễn Vũ Anh, Ou Wenjun, Srean Pao, Sheela M N, Becerra López-Lavalle Luis Augusto, Utsumi Yoshinori, Lu Cheng, Kittipadakul Piya, Nguyễn Hữu Hỷ, Ceballos Hernan, Nguyễn Trọng Hiển, Selvaraj Gomez Michael, Aiemnaka Pornsak, Labarta Ricardo, Chen Songbi, Amawan Suwaluk, Sok Sophearith, Youabee Laothao, Seki Motoaki, Tokunaga Hiroki, Wang Wenquan, Li Kaimian, Nguyễn Hai Anh, Nguyễn Văn Đồng, Hàm Lê Huy, Ishitani Manabu

机构信息

International Center for Tropical Agriculture (CIAT-Laos), Lao PDR Office, Dong Dok, Ban Nongviengkham, Vientiane, Lao PDR.

Department of Agronomy, Faculty of Agriculture, Kasetsart University, 50 Ngam Wong Wan Rd, Chatuchak Bangkok 10900, Thailand.

出版信息

Breed Sci. 2020 Apr;70(2):145-166. doi: 10.1270/jsbbs.18180. Epub 2020 Mar 5.

Abstract

In Asia, cassava () is cultivated by more than 8 million farmers, driving the rural economy of many countries. The International Center for Tropical Agriculture (CIAT), in partnership with national agricultural research institutes (NARIs), instigated breeding and agronomic research in Asia, 1983. The breeding program has successfully released high-yielding cultivars resulting in an average yield increase from 13.0 t ha in 1996 to 21.3 t ha in 2016, with significant economic benefits. Following the success in increasing yields, cassava breeding has turned its focus to higher-value traits, such as waxy cassava, to reach new market niches. More recently, building resistance to invasive pests and diseases has become a top priority due to the emergent threat of cassava mosaic disease (CMD). The agronomic research involves driving profitability with advanced technologies focusing on better agronomic management practices thereby maintaining sustainable production systems. Remote sensing technologies are being tested for trait discovery and large-scale field evaluation of cassava. In summary, cassava breeding in Asia is driven by a combination of food and market demand with technological innovations to increase the productivity. Further, exploration in the potential of data-driven agriculture is needed to empower researchers and producers for sustainable advancement.

摘要

在亚洲,超过800万农民种植木薯,推动了许多国家的农村经济发展。国际热带农业中心(CIAT)与各国农业研究机构(NARIs)合作,于1983年在亚洲发起了育种和农艺研究。育种计划已成功培育出高产品种,使平均产量从1996年的13.0吨/公顷提高到2016年的21.3吨/公顷,带来了显著的经济效益。在提高产量取得成功之后,木薯育种已将重点转向更高价值的性状,如糯性木薯,以开拓新的市场领域。最近,由于木薯花叶病(CMD)的新威胁,培育对入侵性病虫害的抗性已成为首要任务。农艺研究包括利用先进技术提高盈利能力,重点是更好的农艺管理实践,从而维持可持续生产系统。目前正在测试遥感技术用于木薯的性状发现和大规模田间评估。总之,亚洲的木薯育种受到食品和市场需求以及技术创新的共同推动,以提高生产力。此外,需要探索数据驱动型农业的潜力,以使研究人员和生产者能够实现可持续发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a77/7272245/c4fe23cfeefe/70_145-g001.jpg

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