首站-论文投稿智能助手
典型文献
Cotton maturity and responses to harvest aids following chemical topping with mepiquat chloride during bloom period
文献摘要:
Early maturity, complete defoliation and boll opening are essential for the efficient machine harvesting of cotton. Chemical topping, involving one extra application of mepiquat chloride (MC) in addition to its traditional multiple-application strategy, may be able to replace manual topping. However, it is not known whether this chemical topping technique will influence maturity or cotton responses to harvest aids. In this 2-yr field study, we determined the effects of the timing of chemical topping using various rates of MC on boll opening percentage (BOP) before application of harvest aids (50% thidiazuron·ethephon suspension concentrate, referred to as TE), and the defoliation percentage (DP) and BOP 14 days after TE application. The results indicated that late chemical topping (near the physiological cutout, when the nodes above white flower is equal to 5.0) significantly decreased BOP before TE by 5.9–11.2% compared with early (at peak bloom) or middle (seven days after peak bloom) treatments in 2019, which was a relatively normal year based on crop condition. Also, a high MC rate (270 g ha–1) showed a significantly lower (22.0%) BOP before TE than low (90 g ha–1) or medium (180 g ha–1) rates. In 2020, which was characterized by stronger vegetative growth in the late season, the late chemical topping reduced the number of leaves before TE application relative to early or middle treatments, but had lower DP (23.2–27.2%) 14 days after TE application. The high MC rate showed a leaf count before TE application that was similar to the low and medium rates, but it showed the most leaves after TE and much lower (15.0–21.7%) DP in 2020. These results suggest that late timing of chemical topping and a high MC rate decreased the sensitivity of leaves to harvest aids. Further analysis indicated that the late chemical topping mainly affected the leaf drop from the mainstem and fruiting branches where the late regrowth occurred, and the high MC rate reduced leaf shedding from these parts and also from the vegetative branches. In conclusion, chemical topping with MC during the bloom period affected cotton maturity and responses to harvest aids in different ways according to the crop condition. To avoid the risks of delayed maturity and poor defoliation after the application of harvest aids, chemical topping should not be performed too late (i.e., near the physiological cutout) by using MC at more than 180 g ha–1. The optimum timing of chemical topping probably varies from peak bloom to around seven days later, and the safest MC rates for chemical topping should be less than 180 g ha–1.
文献关键词:
作者姓名:
QI Hai-kun;DU Ming-wei;MENG Lu;XIE Liu-wei;A.Egrinya ENEJI;XU Dong-yong;TIAN Xiao-li;LI Zhao-hu
作者机构:
Engineering Research Center of Plant Growth Regulator,Ministry of Education/College of Agronomy and Biotechnology,China Agricultural University,Beijing 100193,P.R.China;Department of Soil Science,Faculty of Agriculture,Forestry and Wildlife Resources Management,University of Calabar,Calabar 540271,Nigeria;Hebei Cottonseed Engineering Technology Research Center,Hejian 062450,P.R.China
引用格式:
[1]QI Hai-kun;DU Ming-wei;MENG Lu;XIE Liu-wei;A.Egrinya ENEJI;XU Dong-yong;TIAN Xiao-li;LI Zhao-hu-.Cotton maturity and responses to harvest aids following chemical topping with mepiquat chloride during bloom period)[J].农业科学学报(英文),2022(09):2577-2587
A类:
thidiazuron,ethephon,mainstem
B类:
Cotton,maturity,responses,aids,following,chemical,topping,mepiquat,chloride,during,bloom,period,Early,complete,defoliation,boll,opening,essential,efficient,machine,harvesting,cotton,Chemical,involving,one,extra,application,MC,addition,its,traditional,multiple,strategy,may,able,replace,manual,However,not,known,whether,this,technique,will,influence,In,yr,field,study,determined,effects,timing,using,various,rates,percentage,BOP,before,suspension,concentrate,referred,TE,DP,days,after,results,indicated,that,near,physiological,cutout,when,nodes,above,white,flower,equal,significantly,decreased,by,compared,early,peak,middle,seven,treatments,which,was,relatively,normal,year,crop,condition,Also,high,showed,than,medium,characterized,stronger,vegetative,season,reduced,number,leaves,but,had,leaf,count,similar,most,much,These,suggest,sensitivity,Further,analysis,mainly,affected,drop,from,fruiting,branches,where,regrowth,occurred,shedding,these,parts,also,conclusion,different,ways,according,To,avoid,risks,delayed,poor,should,performed,too,more,optimum,probably,varies,around,later,safest,less
AB值:
0.393427
相似文献
Ethylenediurea (EDU) spray effects on willows (Salix sachalinensis F. Schmid) grown in ambient or ozone?enriched air: implications for renewable biomass production
Evgenios Agathokleous;Mitsutoshi Kitao;Cong Shi;Noboru Masui;Shahenda Abu?ElEla;Kyohsuke Hikino;Fuyuki Satoh;Takayoshi Koike-Department of Ecology,School of Applied Meteorology, Nanjing University of Information Science and Technology (NUIST),Nanjing 210044,People's Republic of China;School of Agriculture,Hokkaido University,Sapporo, Hokkaido 060?8589,Japan;Hokkaido Research Center,Forestry and Forest Products Research Institute(FFPRI),Sapporo 062?8516,Japan;School of Environmental Science and Engineering,Tiangong University,Tianjin 300387,People's Republic of China;Department of Entomology, Faculty of Science, Cairo University, Giza 12613, Egypt;TUM School of Life Sciences, Technical University of Munich (TUM), Hans?Carl?von?Carlowitz Platz 2,85354 Freising, Germany;Field Science Center for Northern Biosphere, Hokkaido University, Sapporo 060?0809, Japan;Research Center for Eco?Environmental Science,Chinese Academy of Science, Beijing 100085,People's Republic of China
Contrasting patterns of accumulation, partitioning, and remobilization of biomass and phosphorus in a maize cultivar
Weina Zhang;Haigang Li;Junling Zhang;Jianbo Shen;Hamish Brown;Enli Wang-Key Laboratory of Plant-Soil Interactions,Ministry of Education,College of Resources and Environmental Sciences,China Agricultural University,Beijing 100193,China;School of Biological and Food Processing Engineering,Huanghuai University,Zhumadian 463000,Henan,China;Inner Mongolia Key Laboratory of Soil Quality and Nutrient Resources,Key Laboratory of Grassland Resource(IMAU),Ministry of Education,College of Grassland,Resources and Environment,Inner Mongolia Agricultural University,Hohhot 010018,Inner Mongolia,China;The New Zealand Institute for Plant&Food Research Limited,Private Bag 4704,Christchurch,New Zealand;CSIRO Agriculture and Food,GPO Box 1700,Canberra,ACT 2601,Australia
Cattle manure biochar and earthworm interactively affected C02 and N20 emissions in agricultural and forest soils:Observation of a distinct difference
Xiaoqiang Gong;Jinbiao Li;Scott X.Chang;Qian Wu;Zhengfeng An;Chengpeng Huang;Xiangyang Sun;Suyan Li;Hui Wang-Department of Renewable Resources,University of Alberta,Edmonton,Alberta T6G 2E3,Canada;College of Forestry,Beijing Forestry University,Beijing 100083,China;State Key Joint Laboratory of Environmental Simulation and Pollution Control,School of Environment,Tsinghua University,Beijing 100084,China;Co-Innovation Center for Sustainable Forestry in Southern China,Nanjing Forestry University,Nanjing 210037,China;Key Laboratory of Grassland Resources of the Ministry of Education and Key Laboratory of Forage Cultivation,Processing and High Efficient Utilization of the Ministry of Agriculture,College of Grassland,Resources and Environment,Inner Mongolia Agricultural University,Hohhot 010011,China;State Key Laboratory of Subtropical Silviculture,Zhejiang A&F University,Lin'an 311300,China
Effectiveness of tertiary treatment processes in removing different classes of emerging contaminants from domestic wastewater
Olga S.Arvaniti;Marilena E.Dasenaki;Alexandros G.Asimakopoulos;Niki C.Maragou;Vasilios G.Samaras;Korina Antoniou;Georgia Gatidou;Daniel Mamais;Constantinos Noutsopoulos;Zacharias Frontistis;Nikolaos S.Thomaidis;Athanasios S.Stasinakis-Department of Environment,University of the Aegean,Mytilene 81100,Greece;Department of Chemical Engineering,University of Patras,Patras 26504,Greece;Department of Agricultural Development,Agrofood and Management of Natural Resources,National and Kapodistrian University of Athens,Psachna 34400,Greece;Department of Chemistry,National and Kapodistrian University of Athens,Athens 15771,Greece;Department of Chemistry,Norwegian University of Science and Technology,Trondheim NO-7491,Norway;Core Labs,King Abdullah University of Science and Technology,Thuwal 23955-6900,Saudi Arabia;Sanitary Engineering Laboratory,Department of Water Resources and Environmental Engineering,School of Civil Engineering,National Technical University of Athens,Athens 15780,Greece;Department of Chemical Engineering,University of Western Macedonia,Kozani 50132,Greece
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。