[1]李丕明. 加强棉花化学控制技术的研究[J]. 中国棉花,1982(2):10-12.
[2]Rademacher W. GROWTH RETARDANTS:effects on gibberellin biosynthesis and other metabolic pathways[J]. Annual Review of Plant Physiology and Plant Molecular Biology,2000,51:501-531.
[3]王丽. 赤霉素合成抑制剂DPC调控棉花营养生长的分子机制研究[D]. 北京:中国农业大学,2014.
[4]柳延涛,徐安阳,段维,等. 缩节胺、多效唑和矮壮素对向日葵生理特性的影响[J]. 中国油料作物学报,2018,40(2):241-246.
[5]王梅,刘渊,高志奎. 缩节胺对越冬番茄的生长调控效应研究[J]. 北方园艺,2012(10):45-47.
[6]张伟,邱强,赵婧,等. 不同化控调节剂对杂交大豆产量及产量相关性状的调控效应[J]. 作物杂志,2015(4):81-84.
[7]李新裕,陈玉娟. 新疆垦区长绒棉化学封顶取代人工打顶试验研究[J]. 中国棉花,2001,28(1):11-12.
[8]赵强,周春江,张巨松,等. 化学打顶对南疆棉花农艺和经济性状的影响[J]. 棉花学报,2011,23(4):329-333.
[9]雷斌,恽友兰,张云生,等. 根用多功能缓释缩节胺在棉花上的应用研究[J]. 新疆农业科学,2007,44(4):502-505.
[10]周春江,田晓莉,李松林,等. 缓释缩节胺包衣处理对棉花农艺及经济性状的调控效果[J]. 中国棉花,2004,31(9):14-16.
[11]霍飞超,李鹏程,李运海,等. 棉花1膜3行模式下密度和缩节胺用量优化组合[J]. 新疆农业科学,2020,57(6):1039-1048.
[12]张亚林,黄群,马小艳,等. 无人机飞防对棉花生长调控效果研究[J]. 中国棉花,2019,46(1):26-28.
[13]蔡晓虎,史亚辉,林萍,等. 氟节胺与缩节胺联合使用对棉花生长发育调控的影响[J]. 新疆农业科学,2019,56(11):1997-2005.
[14]Gu S,Evers J B,Zhang L,et al. Using functional-structural plant modeling to explore the response of cotton to mepiquat chloride application and plant population density[J]. FEBS Journal,2013,12(1):90.
[15]刘丽英,戴茂华,吴振良. 缩节胺对黄河流域机采棉农艺性状、产量和品质的影响及化控技术研究[J]. 中国农学通报,2018,34(33):38-42.
[16]邢晋,张思平,赵新华,等. 种植密度和缩节胺互作对棉花株型及产量的调控效应[J]. 棉花学报,2018,30(1):53-61.
[17]周桂生,林岩,童晨,等. 钾肥和缩节胺对高品质棉株型和产量的影响[J]. 湖北农业科学,2011,50(23):4801-4803.
[18]黄颖. 夏直播棉花应用缩节胺效果研究[D]. 武汉:华中农业大学,2017.
[19]杨长琴,张国伟,刘瑞显,等. 种植密度和缩节胺调控对麦后直播棉产量和冠层特征的影响[J]. 棉花学报,2016,28(4):331-338.
[20]韩焕勇,杜明伟,王方永,等. 北疆棉区增效缩节胺应用剂量对棉花农艺和经济性状的影响[J]. 西南农业学报,2019,32(2):327-330.
[21]张巨松,陈冰,周抑强,等. DPC对棉花群体发育调控效应的研究[J]. 新疆农业大学学报,1999,22(1):21-25.
[22]Mao L L,Zhang L Z,Evers J B,et al. Yield components and quality of intercropped cotton in response to mepiquat chloride and plant density[J]. Field Crops Research,2015,179:63-71.
[23]Siebert J D,Stewart A M. Influence of plant density on cotton response to mepiquat chloride application[J]. Agronomy Journal,2006,98(6):1634-1639.
[24]Gonias E D,Oosterhuis D M,Bibi A C. Cotton radiation use efficiency response to plant growth regulators[J]. The Journal of Agricultural Science,2012,150(5):595-602.
[25]Gwathmey C O,Clement J D. Alteration of cotton source-sink relations with plant population density and mepiquat chloride[J]. Field Crops Research,2010,116(1/2):101-107.
[26]Mao L L,Zhang L Z,Zhao X H,et al. Crop growth,light utilization and yield of relay intercropped cotton as affected byplant density and a plant growth regulator[J]. Field Crops Research,2014,155(1):67-76.
[27]Tung S A,Huang Y,Hafeez A,et al. Mepiquat chloride effects on cotton yield and biomass accumulation under late sowing and high density[J]. Field Crops Research,2018,215:59-65.
[28]罗宏海,赵瑞海,韩春丽,等. 缩节胺(DPC)对不同密度下棉花冠层结构特征与产量性状的影响[J]. 棉花学报,2011,23(4):334-340.
[29]马宗斌,李伶俐,谢德意,等. 施肥与缩节胺配合对麦后直播夏棉光合特性及产量的影响[J]. 中国生态农业学报,2006,14(4):94-97.
[30]冯国艺,姚炎帝,杜明伟,等. 缩节胺(DPC)对干旱区杂交棉冠层结构及群体光合生产的调节[J]. 棉花学报,2012,24(1):44-51.
[31]刘翠,张巨松,魏鑫,等. 甲哌金翁化控对南疆杂交棉功能叶生理指标及产量性状的影响[J]. 棉花学报,2014,26(2):122-129.
[32]唐光木,徐万里,葛春辉,等. 喷施化学调控剂缩节胺、乙烯利对棉花植株氨挥发的影响[J]. 中国农业科学,2010,43(23):4862-4870.
[33]严根土,马宗斌,黄群,等. 黄河中游滩区植棉适宜的缩节胺用量研究[J]. 中国棉花,2014,41(7):23-27.
[34]Zhao D L,Oosterhuis D M. Pix plus and mepiquat chloride effects on physiology,growth,and yield of field-grown cotton[J]. Journal of Plant Growth Regulation,2000,19(4):415-422.
[35]Pettigrew W T,Johnson J T. Effects of different seeding rates and plant growth regulators on early-planted cotton[J]. Journal of Cotton Science,2005,9(4):189-198.
[36]李军宏,王远远,夏军,等. 两个不同耐旱性棉花品种根系生理特性对干旱的响应[J]. 应用生态学报,2020,31(10):3453-3460.
[37]段留生,黄志强,于运华,等. 缩节胺(DPC)和黄腐酸(FA)对棉花种子萌发和幼苗素质的影响[J]. 莱阳农学院学报,1997,14(2):109-113.
[38]李秀菊,职明星. 缩节胺对无毒棉和抗虫棉抗旱性生理效应研究[J]. 河南职业技术师范学院学报,1999,27(3):30-33.
[39]金子渔,赵妙珍. 缩节胺(DPC)对棉花某些生理作用影响的研究[J]. 北京农业大学学报,1991(增刊1):47-50.
[40]田晓莉,谭伟明,李召虎,等. DPC与DTA-6复配对转基因抗虫棉根系功能的调控[J]. 棉花学报,2006,18(4):218-222.
[41]王宁,田晓莉,段留生,等. 缩节胺浸种提高棉花幼苗根系活力中的活性氧代谢[J]. 作物学报,2014,40(7):1220-1226.
[42]陈晓娇. DPC浸种促进棉花侧根发育的激素机制及结合态ABAscFv的制备[D]. 北京:中国农业大学,2017.
[43]段留生,张一,唐祚舜,等. 甲哌金翁对棉花幼苗侧根发生的诱导效应和机理研究[J]. 西北植物学报,2002,22(4):877-882.
[44]de Almeida A D,Rosolem C A. Cotton root and shoot growth as affected by application of mepiquat chloride to cotton seeds[J]. Acta Scientiarum(Agronomy),2012,34(1):61-65.
[45]汪有元,李维江,董合忠. 不同化学试剂处理对棉花种子萌发和抗盐性的影响[J]. 山东农业科学,2010(3):73-76.
[46]Mao L L,Zhang L Z,Sun X Z,et al. Use of the beta growth function to quantitatively characterize the effects of plant density and a growth regulator on growth and biomass partitioning in cotton[J]. Field Crops Research,2018,224:28-36.
[47]赵强,张巨松,周春江,等. 化学打顶对棉花群体容量的拓展效应[J]. 棉花学报,2011,23(5):401-407.
[48]徐新霞,苏丽丽,魏鑫,等. DPC对杂交棉生长发育调控效应研究[J]. 新疆农业科学,2015,52(7):1237-1242.
[49]Cook D R,Kennedy C W. Early flower bud loss and mepiquat chloride effects on cotton yield distribution[J]. Crop Science,2000,40(6):1678-1684.
[50]Gao H Y,Ma H,Khan A,et al. Moderate drip irrigation level with low mepiquat chloride application increases cotton lint yield by improving leaf photosynthetic rate and reproductive organ biomass accumulation in arid region[J]. Agronomy,2019,9(12):834.
[51]Zhao W C,Du M W,Xu D Y,et al. Interactions of single mepiquat chloride application at different growth stages with climate,cultivar and plant population for cotton yield[J]. Crop Science,2017,57(3):1-12.
[52]Ren X M,Zhang L Z,Du M W,et al. Managing mepiquat chloride and plant density for optimal yield and quality of cotton[J]. Field Crops Research,2013,149:1-10.
[53]慕自新,马富裕,郑重,等. 膜下滴灌棉花随水根施多效唑的效果分析与化控技术的探讨[J]. 农业工程学报,2004,20(4):54-57.
[1]沙向红,严建萍.低温胁迫对幼苗期棉花根系ADHa与BADH表达的影响[J].江苏农业科学,2013,41(08):37.
Sha Xianghong,et al.Effect of low temperature stress on expression of ADHa and BADH gene in root of cotton seedlings[J].Jiangsu Agricultural Sciences,2013,41(18):37.
[2]池文泽,周斌,盛玮,等.保水剂在棉花生产上的应用[J].江苏农业科学,2013,41(05):73.
Chi Wenze,et al.Study on application of water retention agent in cotton production[J].Jiangsu Agricultural Sciences,2013,41(18):73.
[3]杨富强,杨长琴,刘瑞显,等.不同生育期渍水对棉花恢复生长及产量的影响[J].江苏农业科学,2014,42(12):108.
Yang Fuqiang,et al.Effects of waterlogging in different growth stages on recovery growth and yield of cotton[J].Jiangsu Agricultural Sciences,2014,42(18):108.
[4]李玉侠,李家运,李长敏,等.江苏丰县棉花生产变化及植棉技术优化[J].江苏农业科学,2014,42(12):111.
Li Yuxia,et al.Changes of cotton production and optimization of cotton planting technology in Fengxian County,Jiangsu Province[J].Jiangsu Agricultural Sciences,2014,42(18):111.
[5]马晓梅,孙杰,李保成,等.新陆早51号棉花器官同伸关系及棉铃空间分布[J].江苏农业科学,2014,42(11):123.
Ma Xiaomei,et al().Together growth of organs and cotton bolls spatial distribution of cotton cultivar “Xinluzao No.51”[J].Jiangsu Agricultural Sciences,2014,42(18):123.
[6]丁锦平.棉花病毒诱导基因沉默体系构建[J].江苏农业科学,2013,41(06):38.
Ding Jinping.Establishment of virus induced gene silencing system in cotton[J].Jiangsu Agricultural Sciences,2013,41(18):38.
[7]王义霞,刘春生,苏彦华.新疆棉花品种新陆中51号在山东棉区的需钾特性[J].江苏农业科学,2014,42(10):80.
Wang Yixia,et al.Potassium requirement characteristics of Xinjiang cotton cultivar “Xinluzhong No.51” in Shandong cotton region[J].Jiangsu Agricultural Sciences,2014,42(18):80.
[8]刘瑞显,张国伟,杨长琴,等.转变现代棉花生产技术研究理念的新视角——基于复杂性科学的思考[J].江苏农业科学,2014,42(10):1.
Liu Ruixian,et al.A new perspective on ideological changes of cotton productive technological innovation-Based on reflections on complexity science[J].Jiangsu Agricultural Sciences,2014,42(18):1.
[9]陈向阳,陈丽萍,王思乐,等.粗糙集在棉花异性纤维图像去噪中的应用[J].江苏农业科学,2016,44(03):446.
Chen Xiangyang,et al.Application of rough set in denoising of cotton fiber image[J].Jiangsu Agricultural Sciences,2016,44(18):446.
[10]姚琛,华春,周峰,等.盐碱滩涂植物资源筛选与利用[J].江苏农业科学,2013,41(10):357.
Yao Chen,et al.Screening and utilization of plant resources cultivated on saline tidal flats[J].Jiangsu Agricultural Sciences,2013,41(18):357.
[11]刘帅,吴洁,孙巨龙,等.缩节胺与整枝打顶互作对长江流域直播棉花冠层光能分布、产量和品质的影响[J].江苏农业科学,2022,50(4):58.
Liu Shuai,et al.Impacts of interaction between DPC and pruning and topping on light energy distribution, yield and quality of direct seeding cotton canopy in the Yangtze River Basin[J].Jiangsu Agricultural Sciences,2022,50(18):58.