粮食安全
栽培
产量(工程)
农学
生产(经济)
产量差距
作物
农业工程
遗传资源
成交(房地产)
环境科学
作物产量
生物
生物技术
业务
工程类
材料科学
农业
经济
生态学
冶金
宏观经济学
财务
作者
Nimai Senapati,Mikhail A. Semenov,Nigel G. Halford,Malcolm J. Hawkesford,Senthold Asseng,Mark Cooper,Frank Ewert,M.K. van Ittersum,Pierre Martre,Jørgen E. Olesen,Matthew Reynolds,Reimund P. Rötter,Heidi Webber
出处
期刊:Nature food
[Springer Nature]
日期:2022-07-07
卷期号:3 (7): 532-541
被引量:41
标识
DOI:10.1038/s43016-022-00540-9
摘要
Global food security requires food production to be increased in the coming decades. The closure of any existing genetic yield gap (Yig) by genetic improvement could increase crop yield potential and global production. Here we estimated present global wheat Yig, covering all wheat-growing environments and major producers, by optimizing local wheat cultivars using the wheat model Sirius. The estimated mean global Yig was 51%, implying that global wheat production could benefit greatly from exploiting the untapped global Yig through the use of optimal cultivar designs, utilization of the vast variation available in wheat genetic resources, application of modern advanced breeding tools, and continuous improvements of crop and soil management.
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