Dynamic Characteristics of Matter Population in Two Super Hybrid Rice Cultivars

2013 ◽  
Vol 39 (12) ◽  
pp. 2238 ◽  
Author(s):  
Hong-Ting JI ◽  
Yue-Hua FENG ◽  
Teng-Bing HE ◽  
Yun LI ◽  
Biao WU ◽  
...  
2012 ◽  
Vol 69 (2) ◽  
pp. 103-107 ◽  
Author(s):  
Min Huang ◽  
Yingbin Zou ◽  
Peng Jiang ◽  
Bing Xia ◽  
Anmin Xiao

2019 ◽  
Vol 18 (1) ◽  
pp. 27-41 ◽  
Author(s):  
Zhigang Bai ◽  
Jie Huang ◽  
Lianfeng Zhu ◽  
Xiaochuang Cao ◽  
Chunquan Zhu ◽  
...  

2013 ◽  
Vol 39 (4) ◽  
pp. 682 ◽  
Author(s):  
Jun ZHANG ◽  
Gang-Hua LI ◽  
Yun-Pan SONG ◽  
Wu-Jun ZHANG ◽  
Cong-Dang YANG ◽  
...  

2020 ◽  
Vol 13 (1) ◽  
pp. 86
Author(s):  
Yi Ma ◽  
Qi Jiang ◽  
Xianting Wu ◽  
Renshan Zhu ◽  
Yan Gong ◽  
...  

Accurate monitoring of hybrid rice phenology (RP) is crucial for breeding rice cultivars and controlling fertilizing amount. The aim of this study is to monitor the exact date of hybrid rice initial heading stage (IHSDAS) based on low-altitude remote sensing data and analyze the influence factors of RP. In this study, six field experiments were conducted in Ezhou city and Lingshui city from 2016 to 2019, which involved different rice cultivars and nitrogen rates. Three low-altitude remote sensing platforms were used to collect rice canopy reflectance. Firstly, we compared the performance of normalized difference vegetation index (NDVI) and red edge chlorophyll index (CIred edge) for monitoring RP. Secondly, double logistic function (DLF), asymmetric gauss function (AGF), and symmetric gauss function (SGF) were used to fit time-series CIred edge for acquiring phenological curves (PC), the feature: maximum curvature (MC) of PC was extracted to monitor IHSDAS. Finally, we analyzed the influence of rice cultivars, N rates, and air temperature on RP. The results indicated that CIred edge was more appropriate than NDVI for monitoring RP without saturation problem. Compared with DLF and AGF, SGF could fit CIred edge without over fitting problem. MC of SGF_CIred edge from all three platforms showed good performance in monitoring IHSDAS with good robustness, R2 varied between 0.82 and 0.95, RMSE ranged from 2.31 to 3.81. In addition, the results demonstrated that high air temperature might cause a decrease of IHSDAS, and the growth process of rice was delayed when more nitrogen fertilizer was applied before IHSDAS. This study illustrated that low-altitude remote sensing technology could be used for monitoring field-scale hybrid rice IHSDAS accurately.


2021 ◽  
Vol 214 ◽  
pp. 105169
Author(s):  
Ye Liu ◽  
Jing Zhang ◽  
Zihao Wang ◽  
Wenjing Ke ◽  
Liuhang Wang ◽  
...  

2018 ◽  
Vol 216 ◽  
pp. 150-157 ◽  
Author(s):  
Liying Huang ◽  
Fan Sun ◽  
Shen Yuan ◽  
Shaobing Peng ◽  
Fei Wang

Agronomy ◽  
2020 ◽  
Vol 10 (2) ◽  
pp. 209
Author(s):  
Yonghui Pan ◽  
Shuai Gao ◽  
Kailiu Xie ◽  
Zhifeng Lu ◽  
Xusheng Meng ◽  
...  

To reveal the physiological mechanism underlying the yield advantage of super hybrid rice compared with inbred super rice, a super hybrid rice cultivar Yliangyou 3218 (YLY) and an inbred super rice cultivar Zhendao 11 (ZD) were field grown under five nitrogen (N) fertilizer rates in 2016 and 2017. The average grain yield of YLY across nitrogen fertilizer rates was 10.1 t ha−1 in 2016 and 9.7 t ha−1 in 2017, 29.6% and 21.3% higher than that of ZD in 2016 and 2017, respectively. YLY showed higher above-ground biomass accumulation, especially growth before heading, which was mainly due to its faster green leaf area index (GLAI) formation and greater maximum GLAI (GLAImax). The daily radiation interception (RIdaily) was 15.0% higher in YLY than ZD, but the accumulated radiation interception (RIacc) before heading showed little difference between them because ZD had a longer growth duration. The radiation use efficiency (RUE) of YLY before heading was 54.7% higher than that of ZD (YLY, 2.12 g MJ−1; ZD, 1.37 g MJ−1). Our result demonstrated that the yield advantage of YLY was due to its higher above-ground biomass before heading, which was mainly achieved by its improvement in RUE rather than radiation interception.


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