Improving maize quality from mechanical grain harvesting by matching maize varieties with accumulated temperature in northeast China

被引:3
作者
Huang, Zhaofu [1 ,2 ]
Ming, Bo [2 ]
Hou, Liangyu [2 ]
Xue, Jun [2 ]
Wang, Keru [2 ]
Xie, Ruizhi [2 ]
Hou, Peng [2 ]
Wang, Zhigang [1 ]
Ma, Daling [1 ]
Gao, Julin [1 ]
Li, Shaokun [2 ]
机构
[1] Inner Mongolia Agr Univ, Agr Coll, Hohhot 010019, Inner Mongolia, Peoples R China
[2] Chinese Acad Agr Sci, Inst Crop Sci, Key Lab Crop Physiol & Ecol, Minist Agr, Beijing, Peoples R China
基金
中国国家自然科学基金;
关键词
accumulated temperature; northeast China; mechanical grain harvesting maize; grain moisture content; RESOURCE USE EFFICIENCY; SPRING MAIZE; CULTIVAR SELECTION; PLANTING DENSITY; CLIMATE-CHANGE; YIELD; MOISTURE; HYBRIDS; SEASON; DATES;
D O I
10.1002/jsfa.12588
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
BACKGROUNDGlobal warming has led to methods of planting late-maturing maize varieties in northeast China that have hindered the development of physiological maturity (PM) at harvest and the use of mechanical grain harvesting (MGH). Under these conditions it is difficult to balance the drying characteristics of maize varieties and to make full use of accumulated temperature resources in such a way as to reduce grain moisture content (GMC) at harvest. RESULTSThe effective accumulated temperature (AcT) and the drying rates of different varieties vary. In northeast China, with a GMC of 25%, the growth periods of a fast-drying variety (FDV) and a slow-drying variety (SDV) were 114-192 days and 110-188 days respectively. After PM, the FDV needed 47 days and the SDV needed 51 days to reduce the GMC to be ready for MGH. Harvested with a GMC of 20%, the growth period for the FDV was 97-175 days and for the SDV it was 90-171 days. After PM, the FDV required 64 days and the SDV needed 70 days to reduce the GMC to be ready for MGH. CONCLUSIONMatching cultivars with AcT can help farmers to choose suitable varieties. Promoting MGH may boost maize production, thus ensuring China's food security. (c) 2023 Society of Chemical Industry.
引用
收藏
页码:5061 / 5069
页数:9
相关论文
共 50 条
[21]   The compound effects of drought and high temperature stresses will be the main constraints on maize yield in Northeast China [J].
Li, E. ;
Zhao, Jin ;
Pullens, Johannes W. M. ;
Yang, Xiaoguang .
SCIENCE OF THE TOTAL ENVIRONMENT, 2022, 812
[22]   Plough pan impacts maize grain yield, carbon assimilation, and nitrogen uptake in the corn belt of Northeast China [J].
Cao, Qingjun ;
Li, Gang ;
Yang, Fentuan ;
Jiang, Xiaoli ;
Diallo, Lamine ;
Chen, Xifeng .
EMIRATES JOURNAL OF FOOD AND AGRICULTURE, 2017, 29 (07) :502-508
[23]   Trends in grain quality of starch, protein, fat and lysine content for normal maize varieties in China since the 1960s [J].
Lu, Quanwei ;
Lu, Chen ;
Zhou, Zhenxing ;
Qin, Xiaoliang ;
Xue, Jiquan ;
Siddique, Kadambot H. M. .
CEREAL CHEMISTRY, 2022, 99 (02) :316-324
[24]   FORAGE AND GRAIN PRODUCTIVITY, QUALITY AND ECONOMICS OF SOME MAIZE (Zea mays L.) VARIETIES [J].
Damame, S. V. ;
Bhingarde, R. N. ;
Gore, S. B. .
APPLIED BIOLOGICAL RESEARCH, 2015, 17 (03) :259-265
[25]   Regulation of subsoiling tillage on the grain filling characteristics of maize varieties from different eras [J].
Wang, Li-qing ;
Yu, Xiao-Fang ;
Gao, Ju-Lin ;
Ma, Da-Ling ;
Li, Liang ;
Hu, Shu-Ping .
SCIENTIFIC REPORTS, 2021, 11 (01)
[26]   Nitrogen responsiveness of leaf growth, radiation use efficiency and grain yield of maize (Zea mays L.) in Northeast China [J].
Liu, Zheng ;
Gao, Jia ;
Zhao, Siyu ;
Sha, Ye ;
Huang, Yiwen ;
Hao, Zhanhong ;
Ke, Lihua ;
Chen, Fanjun ;
Yuan, Lixing ;
Mi, Guohua .
FIELD CROPS RESEARCH, 2023, 291
[27]   Response of grain yield to plant density and nitrogen rate in spring maize hybrids released from 1970 to 2010 in Northeast China [J].
Qian, Chunrong ;
Yu, Yang ;
Gong, Xiujie ;
Jiang, Yubo ;
Zhao, Yang ;
Yang, Zhongliang ;
Hao, Yubo ;
Li, Liang ;
Song, Zhenwei ;
Zhang, Weijian .
CROP JOURNAL, 2016, 4 (06) :459-467
[28]   Response of grain yield to plant density and nitrogen rate in spring maize hybrids released from 1970 to 2010 in Northeast China [J].
Chunrong Qian ;
Yang Yu ;
Xiujie Gong ;
Yubo Jiang ;
Yang Zhao ;
Zhongliang Yang ;
Yubo Hao ;
Liang Li ;
Zhenwei Song ;
Weijian Zhang .
TheCropJournal, 2016, 4 (06) :459-467
[29]   Temporal evolution of maize yield spatial heterogeneity in northeast China: shift of dominant factors from human management to climate change [J].
Lu, Chenxi ;
Leng, Guoyong ;
Yu, Linfei ;
Qiu, Jiali ;
Peng, Jian .
JOURNAL OF CLEANER PRODUCTION, 2025, 519
[30]   Spatial distribution of maize grain quality and its influence by climatic factors across China [J].
Liu, Wanmao ;
Jia, Biao ;
Baloch, Nazia ;
Sun, Ying ;
Liu, Guangzhou ;
Yang, Yunshan ;
Guo, Xiaoxia ;
Ming, Bo ;
Xie, Ruizhi ;
Wang, Keru ;
Li, Shaokun ;
Hou, Peng .
AGRONOMY JOURNAL, 2023, 115 (05) :2439-2450