dep1 improves rice grain yield and nitrogen use efficiency simultaneously by enhancing nitrogen and dry matter translocation

被引:0
|
作者
HUANG Li-ying [1 ,2 ]
LI Xiao-xiao [3 ]
ZHANG Yun-bo [2 ,4 ]
Shah FAHAD [5 ]
WANG Fei [3 ,4 ]
机构
[1] Engineering Research Center of Ecology and Agricultural Use of Wetland, Ministry of Education, Yangtze University
[2] College of Agriculture, Yangtze University
[3] National Key Laboratory of Crop Genetic Improvement, MARA Key Laboratory of Crop Ecophysiology and Farming System in the Middle Reaches of the Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University
[4] Hubei Collaborative Innovation Center for Grain Industry, Yangtze University
[5] Department of Agronomy, The University of Haripur
基金
中国国家自然科学基金; 中央高校基本科研业务费专项资金资助;
关键词
D O I
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中图分类号
S511 [稻];
学科分类号
0901 ;
摘要
The rice cultivars carrying dep1(dense and erect panicle 1) have the potential to achieve both high grain yield and high nitrogen use efficiency(NUE). However, few studies have focused on the agronomic and physiological performance of those cultivars associated with high yield and high NUE under field conditions. Therefore, we evaluated the yield performance and NUE of two near-isogenic lines(NILs) carrying DEP1(NIL-DEP1) and dep1-1(NIL-dep1) genes under the Nanjing 6 background at 0 and 120 kg N ha–1. Grain yield and NUE for grain production(NUEg) were 25.5 and 21.9% higher in NIL-dep1 compared to NIL-DEP1 averaged across N treatments and planting years, respectively. The yield advantage of NIL-dep1 over NIL-DEP1 was mainly due to larger sink size(i.e., higher total spikelet number), grainfilling percentage, total dry matter production, and harvest index. N utilization rather than N uptake contributed to the high yield of NIL-dep1. Significantly higher NUEg in NIL-dep1 was associated with higher N and dry matter translocation efficiency, lower leaf and stem N concentration at maturity, and higher glutamine synthetase(GS) activity in leaves. In conclusion, dep1 improved grain yield and NUE by increasing N and dry matter transport due to higher leaf GS activity under field conditions during the grain-filling period.
引用
收藏
页码:3185 / 3198
页数:14
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