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喷施高锰酸钾对棉花生理特性及产量、品质的影响 被引量:2

Effects of Spraying Potassium Permanganate on Physiological Characteristics,Yield and Quality of Cotton
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摘要 为了解决棉田中后期叶片感病过早枯衰导致的棉铃质量和纤维品质下降等问题,采用大田试验,以不喷施高锰酸钾为对照(CK),从7月1日开始在棉田喷施0.1%的高锰酸钾溶液,设A(每隔10 d喷1次,至9月20日共9次)、B(每隔15 d喷1次,至9月15日共6次)、C(每隔20 d喷1次,至9月20日共5次)3个处理,研究喷施高锰酸钾对棉花生理特性、产量及品质的影响。结果表明:喷施高锰酸钾溶液均显著提高棉叶叶绿素含量、转化酶活性、光合速率、超氧化物歧酶活性和过氧化物酶活性,明显降低叶片丙二醛含量,有效缓解后期叶片细胞膜脂过氧化,延缓叶片衰老,提高叶片生理功能,进而显著提高铃质量和子棉产量,改善纤维品质,并提高了衣分和子指。其中,处理A单铃质量提高幅度最大,较对照显著提高28.9%,比处理B、C分别显著提高8.2%、19.7%;子棉产量增幅最高,比对照显著增产28.6%,比处理B、C分别显著增产9.3%、19.1%;纤维比强度显著高于对照,纤维综合品质表现最好。喷施高锰酸钾溶液各处理棉田后期生长表现棉枝紫红、叶色浓绿无病斑、桃大吐絮畅,实现了枝红叶绿吐白絮的高产优质棉田长相,且处理A增产促优效果最好。 In order to solve the decrease of boll weight and fiber quality led by the leaf disease that is caused by the leaf premature withering in the middle and late stage of cotton field, the effects of spraying potassium permanganate on physiological characteristics and yield and quality of cotton were studied. The field experiment was executed with cotton cultivar Zhongmian 50 in 2015 with four spraying potassium permanganate treatments, including 0. 1% potassium permanganate sprayed one time every ten days from July 1st to Sept. 20th, amount to nine t imes(A) ,0. 1% potassium permanganate sprayed one time every fifteen days from July 1st to Sept. 15th,amount to six t imes(B) ,0. 1% potassium permanganate sprayed one time every twenty days from July 1st to Sept. 20th, amount to five times(C) , and no potassium per-manganate applied(CK) . The results showed that, compared with CK, application of potassium permanga-nate significantly increased the content of chlorophyll of cotton leaves, the activity of sucrose invertase (INY) ,photosynthetic rate, the activities of superoxide dismutase( SOD) and peroxidase( POD ) signifi-cantly reduced malondialdeyde ( MDA) accumulation amount in cotton leaves, effectively alleviated the lipid peroxidation of membrane of leaves cells in late stage, delayed leaf senescence, improved physiologi-cal functions of leaves, thus significantly increased the boll weight, seed cotton yield, lint percent and seed index, improved the fiber quality. The boll weight of treatment A was the highest, which significantly increased by 28.9% ,8. 2% and 19. 7% compared with CK, treatments B and C Respectively. The seed cot-ton yield of spraying potassium permanganate treatments significantly higher than CK. The seed cotton yield of treatment A was the highest, which significantly increased by 28. 6 % ,9 . 3 % ,1 9 . 1% compared with CK,treatment B and treatment C. The fiber strength of treatment A was significantly higher than CK, and comprehensive quality of fiber was the best. Moreover, the plants of cotton spraying potassium perman-ganate were purplish red stem branches,deep green leaves without disease,big bolls and good boll open-ing at the late growth stage, which indicated an appearance of better yield and that quality of cotton was red branches, green leaves and open-boiling white fiber. Treatment A was the best that increased produc-tion and improved the quality of cotton.
出处 《河南农业科学》 CSCD 北大核心 2017年第1期48-52,共5页 Journal of Henan Agricultural Sciences
基金 河南省棉花产业技术体系建设专项资金项目(S2013-07-G04)
关键词 棉花 高锰酸钾 生理特性 子棉产量 纤维品质 cotton potassium permanganate physiological characteristics seed cotton yield fiber quality
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  • 1孟祥坤.高锰酸钾防治棉花枯萎病有特效[J].中国棉花,1993,20(5):35-36. 被引量:2
  • 2高柳青.达拉特旗蔬菜试验地土壤微量元素及培肥增产的分析[J].自然资源,1995(5):78-82. 被引量:1
  • 3石磊岩.我国棉花黄萎病研究进展[J].棉花学报,1995,7(4):243-245. 被引量:47
  • 4殷锡圣,刘润进.棉花黄萎病研究进展[J].中国棉花,1996,23(5):2-6. 被引量:8
  • 5KLANN E M,HALL B,NENNETT A B.Antisense acid invertase(TIV1) gene alters soluble sugar composition and size in transgenjc tomato fruit[J].Plant Physiology,1996(12):1321-1330.
  • 6ZHANG L,COHNNS,MITCHEUJP.Induction of a pea cell-wall invertase gene by wounding and its localized expression in phloem[J].Plant Physiology,1996(112):1111-1117.
  • 7CARLSON,CHOUREY.A re-evaluation of the relative rules of two invertases,INCW2 and IVR1,in developing maizekernel and other tissue[J].Plant Physiology,1999,121 (3):1025-1035.
  • 8GAO Z,PETREIKOV M,ZAMSKI E,et al.Carbohydrate metabolism during early fruit development of sweet melon (Cueumis melo)[J].Physiol Plant,1999(106):1-8.
  • 9RANWALA A P,LWANAMI S S,MASUDA H.Acid and neutral intervsse in the mesocarp of developing muskmelon (Cucumis melo L.ev Prince) fruit[J].Plant Physiol,1991 (96):881-886.
  • 10SCHAFFER A A,ALONI B,FOGELMAN E.Sueruse metabolism and accumulation in developing fruit of cucumis[J].Phytochem,1987 (26):1883-1887.

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