Achieving super high yield in rice by simultaneously increasing panicle number and grain weight via improving pre-heading biomass production

产量(工程) 农学 生物量(生态学) 粮食产量 航向(导航) 数学 生物 材料科学 地理 大地测量学 冶金
作者
Min Huang,Zhengwu Xiao,Shengliang Fang,Hengdong Zhang,Longsheng Liu,Fangbo Cao,Jiana Chen
出处
期刊:Experimental Agriculture [Cambridge University Press]
卷期号:60 被引量:1
标识
DOI:10.1017/s0014479724000140
摘要

Abstract Understanding the yield attributes of rice crops grown at super high-yielding sites is useful for identifying how to achieve super high yield in rice. In this study, field experiments were conducted in 2021 and 2022 to compare grain yield and yield attributes of ten high-yielding hybrid rice varieties between Xingyi (a super high-yielding site) and Hengyang (a site with typical yields). Results showed that Xingyi produced an average grain yield of 13.4 t ha −1 in 2021 and 14.0 t ha −1 in 2022, which were, respectively, 20% and 44% higher than those at Hengyang. Higher panicles per m 2 and higher grain weight were responsible for the higher grain yield at Xingyi compared to Hengyang. The higher values of panicles per m 2 and grain weight at Xingyi compared to Hengyang were due to greater source capacity resulting from improved pre-heading biomass production. This study suggests that simultaneously increasing panicle number and grain weight through improving pre-heading biomass production is a potential way to achieve super high yield in rice.
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