WANG Zijie,YANG Xiaohe,QIU Lei,et al.Effects of Yihao Trace Element Water-Soluble Fertilizer on Agronomic Characters and Yield of Soybean and Maize[J].HEILONGJIANG AGRICULTURAL SCIENCES,2023,(07):30-34,46.[doi:10.11942/j.issn1002-2767.2023.07.0030]
刈号微量元素水溶肥对大豆和玉米农艺性状及产量的影响
- Title:
- Effects of Yihao Trace Element Water-Soluble Fertilizer on Agronomic Characters and Yield of Soybean and Maize
- 文章编号:
- 6
- 文献标志码:
- A
- 摘要:
- 为提高大豆和玉米品质和产量,在大豆3~5叶期、始花期、结荚期各喷施1次刈号微量元素水溶肥,在玉米3~5叶期、喇叭口期各喷施1次刈号微量元素水溶肥,研究喷施刈号微量元素水溶肥对大豆和玉米农艺性状及产量的影响。结果表明,喷施刈号微量元素水溶肥375.0~750.0 mL·hm-2后,抑制了大豆倒伏株数,促进了大豆的根长、根鲜重、根干重、根瘤数、株高、单株荚数、单株粒数、百粒重和产量;降低了玉米的穗位高度、籽粒含水量,抑制了玉米的倒伏株数、秃尖长度,促进了玉米的根长、根鲜重、根干重、果穗行数、果穗行粒数、穗长、穗粗、果穗重、单穗籽粒重、百粒重和产量。在大豆生产过程中,喷施3次刈号微量元素水溶肥750.0 mL·hm-2,可提高植株的抗逆性,增产294.60 kg·hm-2,净增利润1 140.84元·hm-2;在玉米生产过程中,建议喷施2次刈号微量元素水溶肥750.0 mL·hm-2,可提高植株的抗逆性,使玉米增产648.68 kg·hm-2,净增利润1 127.09元·hm-2。
- Abstract:
- In order to improve the quality and yield of soybean and maize, the effects of Yihao water soluble fertilizer spraying with trace elements on agronomic characters and yield of soybean and maize were studied. Water soluble fertilizer of trace elements were applied in the 3rd to 5th leaf stage, the first flowering stage and the pod stage of soybean, and applied in the 3rd to 5th leaf stage and the trumpet stage of maize. The results showed that after spraying 375.0-750.0 mL·ha-1, the number of lodging plants was inhibited, and the root length, fresh root weight, dry root weight, nodal number, plant height, pod number per plant, grain number per plant, 100 grain weight and hectare yield of soybean were improved. It reduced the height of ear position and grain water content, inhibited the number of lodging plants and the length of bald tip, and promoted the root length, fresh root weight, dry root weight, row number of ear, row number of ear, ear length, ear thickness, ear weight, grain weight per ear, 100 grain weight and hectare yield of maize. In the process of soybean production,spraying 750.0 mL·ha-1 water soluble fertilizer of trace elements three times could improve the stress resistance of plants, increase the yield by 294.60 kg·ha-1, and increase the net profit by 1 140.84 yuan ·ha-1. In the process of maize production, it is recommended to spray 750.0 mL·ha-1 water soluble fertilizer of trace elements twice, which can improve the stress resistance of plants, increase the yield of maize by 648.68 kg·ha-1, and increase the net profit by 1 127.09 yuan ·ha-1.
参考文献/References:
[1]高宇,孙晨棋,罗英,等.中国大豆种子处理剂应用现状及研究进展[J].大豆科学,2022,41(5):617-623.[2]罗屹,张昆扬,韩静波,等.中资企业在中国大豆进口中的地位分析[J].大豆科学,2022,41(5):600-609.[3]任寒,刘鹏,董树亭,等.高温胁迫影响玉米生长发育的生理机制研究进展[J].玉米科学,2019,27(5):109-115.[4]杨晓贺,王平,顾鑫,等.玉米三空栽培模式技术研究与集成[J].中国农学通报,2017,33(27):14-18.[5]宋利玲,郝燕爽,马灌洋,等.河北平乡县玉米中微量元素肥效试验探究[J].特种经济动植物,2023,26(5):43-45.[6]刘家友,杨国宝,王齐龙,等.减氮配施中微量元素肥对冬瓜产量和品质的影响[J].土壤,2023,55(1):30-36.[7]马琦琦,李丽君,王斌,等.微肥对植物生长作用及施用技术的研究进展[J].安徽农业科学,2022,50(13):4-6.[8]谢进,戴艳娇,宋荣,等.叶面喷施微肥对玉竹产量和品质的影响[J].湖南农业科学,2022(3):38-42.[9]杨丽丽.铁、锰、锌缺乏下马铃薯试管苗差异蛋白质组分析[D].兰州:甘肃农业大学,2017.[10]LI M,WANG S X,TIAN X H,et al.Zinc and iron concen trations in grain milling fractions through combined foliar applications of Zn and macronutrients[J].Field Crops Research,2016,187:135-141.[11]张梦真,李亚婷,马超,等.施锌对作物生长发育及籽粒产量和品质的影响[J].河南农业,2022(7):25-26.[12]WILL S,EICHERT T,FERNNDEZ V,et al.Boron foliar fertilization of soybean and lychee:effects of side of application and formulation adjuvants[J].Journal of Plant Nutrition and Soil Science,2012,175(2):180-188.[13]SIMOGLOU K B,DORDAS C.Effect of foliar applied boron,manganese and zinc on tan spot in winter durum wheat[J].Crop Protection,2005,25(7):657-663.[14]马琦琦,李丽君,王斌,等.微肥对植物生长作用及施用技术的研究进展[J].安徽农业科学,2022,50(13):4-6.[15]李艳杰.中微量元素肥料处理种子对大豆生长及产量的影响[J].黑龙江农业科学,2021(7):19-23.[16]张鑫坪,王炜鑫,杨文茹,等.叶面施硒对不同小站稻品种吸收累积硒及微量元素的影响[J].天津农林科技,2021,284(6):6-8.[17]MA J Z,ZHANG M,LIU Z G,et al.Copper-based-zinc-boron foliar fertilizer improved yield,quality,physiological characteristics,and microelement concentration of celery (Apium graveolens L.)[J].Environmental Pollutants and Bioavailability,2019,31(1):261-271.[18]GAJ R,GRSKI D,MAJCHRZAK L.The effect of potassium and micronutrient foliar fertilisation on the content and accumulation of microelements,yield and quality parameters of potato tubers[J].Agriculture,2020,10(11):530-530.[19]夏秀波,李涛,曹守军,等.不同类型叶面肥在设施番茄上的应用效果[J].长江蔬菜,2022,556(14):71-74.[20]朱春弟,徐冬根,徐军,等.麦用叶面肥“真打粮”在小麦上的效果试验[J].浙江农业科学,2022,63(1):50-51.[21]陈爱晶,张璇.叶面喷施氨基酸水溶肥对水稻生育性状及产量的影响[J].南方农业,2022,16(11):27-29.[22]吴拓,杨刘,降志兵.钼、锌、硼微量元素对大豆产量和品质的影响[J].南方农业,2015,9(31):6-8.[23]刘天昊,张翼飞,王怀鹏,等.叶面喷施硅肥对寒地玉米干物质积累分配及产量品质的调控效应[J].作物杂志,2021(4):112-117.
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备注/Memo
收稿日期:2022-12-27