壳寡糖叶面喷施对玉米耐旱性的调节
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  • 英文篇名:Regulation Effects of Foliar Spraying with Chitosan Oligosaccharides on the Drought Tolerance of Maize
  • 作者:李思 ; 于好强 ; 付凤玲 ; 李晚忱
  • 英文作者:LI Si;YU Hao-qiang;FU Feng-ling;LI Wan-chen;Maize Research Institute, Sichuan Agricultural University;
  • 关键词:玉米 ; 叶面 ; 壳寡糖 ; 耐旱性
  • 英文关键词:Maize;;Foliar spraying;;Chitosan oligosaccharides(COS);;Drought tolerance
  • 中文刊名:YMKX
  • 英文刊名:Journal of Maize Sciences
  • 机构:四川农业大学玉米研究所;
  • 出版日期:2018-08-15 17:10
  • 出版单位:玉米科学
  • 年:2019
  • 期:v.27;No.133
  • 语种:中文;
  • 页:YMKX201903010
  • 页数:7
  • CN:03
  • ISSN:22-1201/S
  • 分类号:65-71
摘要
针对壳寡糖持续时间不长的作用机制,本研究在自然干旱条件下多次叶面喷施不同浓度的壳寡糖,调查其对不同玉米杂交种抗旱相关生理指标、产量及其构成因素的影响。结果表明,在5叶期、10叶期和15叶期叶面喷施壳寡糖,叶片相对含水量均较清水对照显著提高,电导率和丙二醛含量较清水对照显著降低,吐丝期、生育期、株高、穗位高、穗行数和百粒重的影响不显著,行粒数和穗粒重较清水对照显著提高,而且以0.3%浓度壳寡糖处理的作用更为明显。由此说明,在干旱胁迫下叶面喷施壳寡糖对细胞膜具有保护作用,可通过对行粒数的影响而提高玉米产量。
        In this study, we foliar sprayed maize cultivars with COS at four concentrations in field. Experiment was conducted with two-factor randomized block design. Because of the short-acting mechanism of COS, foliar spraying was repeated at five-, ten-and fifteen-leaf stages. We investigated maize physiological indices related with drought tolerance, yield and yield components under natural drought conditions. The results showed that foliar spraying maize plant at the five-, ten-and fifteen-leaf stages with COS increased the leaf relative water content,while decreased leaf conductivity and malondialdehyde content significantly when compared with the blank control.The difference in growth period(including silking stage), plant height, ear height, row number per ear and 100-kernel weight were not significant between foliar spraying treatments and the blank control, but the kernel number per row and kernel weight per ear were increased significantly in the foliar spraying treatments than in the blank control.The effect of the 0.3% COS was the most strong among all COS solutions. In conclusion, foliar spraying of COS can protect plant cell membrane under drought stress, thus increase maize grain yield through increasing the kernel number per ear.
引文
[1]Oseni T O,Masarirambi M T.Effect of climate change on maize(Zea mays)production and food security in Swaziland[J].American-Eurasian Journal of Agricultural&Environmental Sciences,2011,11(3):385-391.
    [2]Tambo J A,Abdoulaye T.Climate change and agricultural technology adoption:the case of drought tolerant maize in rural Nigeria[J].Mitigation and Adaptation Strategies for Global Change,2012,17(3):277-292.
    [3]钟新科,刘洛,徐新良,等.近30年中国玉米气候生产潜力时空变化特征[J].农业工程学报,2012,28(15):94-101.Zhong X K,Liu L,Xu X L,et al.Characteristics of spatial·-temporal variation of maize climate productivity during last 30 years in China[J].Transactions of the Chinese Society of Agricultural Engineering,2012,28(15):94-101.(in Chinese)
    [4]董朝阳,杨晓光,杨婕,等.中国北方地区春玉米干旱的时间演变特征和空间分布规律[J].中国农业科学,2013,46(20):4234-4245.Dong C Y,Yang X G,Yang J,et al.The temporal variation characteristics and spatial distribution laws of drought spring maize in northern China[J].Scientia Agricultura Sinica,2013,46(20):4234-4245.(in Chinese)
    [5]Monneveux P,Sanchezb C,Beckb D,et al.Drought tolerance improvement in tropical maize source populations[J].Crop Science,2005,46(1):180-191.
    [6]Cattivelli L,Rizza F,Badeck F-W,et al.Drought tolerance improvement in crop plants:an integrated view from breeding to genomics[J].Field Crops Research,2008,105(1-2):1-14.
    [7]宋宝章,代宝龙,李守全.半干旱地区玉米高产栽培技术研究[J].玉米科学,1994,2(1):40-42.Song B Z,Dai B L,Li S Q.Study on high yield cultivation techniques of maize in semi-arid area[J].Journal of Maize Sciences,1994,2(1):40-42.(in Chinese)
    [8]Kamara A Y,Ekeleme F,Chikoye D,et al.Planting date and cultivar effects on grain yield in dryland corn production[J].Crop Science,2008,101(1):91-98.
    [9]赵可夫,范梅,Harris P J C.盐胁迫下外源ABA对玉米幼苗耐盐性的影响[J].植物学报,1995,37(4):295-300.Zhao K F,Fan M,Harris P J C.Effect of exogenous ABA on the salt tolerance of corn seedlings under salt stress[J].Acta Botanica Sinica,1995,37(4):295-300.(in Chinese)
    [10]董学会,何钟佩,关彩虹.根系导入生长素和玉米素对玉米光合产物输出及分配的影响[J].中国农业大学学报,2001,6(3):21-25.Dong X H,He Z P,Guan C H.Effects of IAA and Zeatin introduced through secondary-root on translocation and partioning of photosynthate in maize[J].Journal of China Agricultural University,2001,6(3):21-25.(in Chinese)
    [11]李青苗,杨文钰.烯效唑浸种对玉米壮苗的形态效应[J].玉米科学,2003,11(3):66-69.Li Q M,Yang W Y.Morphological effect of soaking seed with uniconazole on high quality seedling of maize[J].Journal of Maize Sciences,2003,11(3):66-69.(in Chinese)
    [12]李茂松,李森,张述义,等.一种新型FA抗蒸腾剂对春玉米生理调节作用的研究[J].中国农业科学,2003,36(11):1266-1271.Li M S,Li S,Zhang S Y,et al.Physiological effect of a new FA antitranspirant on maize[J].Scientica Agricultura Sinica,2003,36(11):1266-1271.(in Chinese)
    [13]赵敏,周淑新,崔彦宏,等.我国玉米生产中植物生长调节剂的应用研究[J].玉米科学,2006,14(1):127-131.Zhao M,Zhou S X,Cui Y H.Research and application of plant growth regulators on maize(Zea mays L.)in China[J].Journal of Maize Sciences,2006,14(1):127-131.(in Chinese)
    [14]Ahlafi H,Moussout H,Boukhlifi F.Kinetics of N-deacetylation of chitin extracted from shrimp shells collected from coastal area of Morocco[J].Mediterranean Journal of Chemistry,2013,2(3):503-513.
    [15]Yin H,Du Y,Dong Z.Chitin oligosaccharide and chitosan oligosaccharide:two similar but different plant elicitors[J].Frontiers of Plant Science,2016,7:522.
    [16]Hadwiger L A.Multiple effects of chitosan on plant systems:solid science or hype[J].Plant Science,2013,208(1):42-49.
    [17]姜山,朱启忠,张真豪.壳聚糖对小麦种子萌发及干旱胁迫下幼苗保护酶活性的影响[J].干旱地区农业研究,2011,29(1):206-210.Jiang S,Zhu Q Z,Zhang Z H.Effects of chitosan on wheat germination and activities of protective enzyme in seedlings under drought stress[J].Agricultural Research in the Arid Areas,2011,29(1):206-210.(in Chinese)
    [18]王玉萍,于丹,李成,等.壳聚糖对盐胁迫下小麦种子萌发及幼苗生理特性的影响[J].干旱地区农业研究,2016,34(1):180-185.Wang Y P,Yu D,Li C,et al.Effect of chitosan on seed germination and seedling physiological characters of wheat under salt stress[J].Agricultural Research in the Arid Areas,2016,34(1):180-185.(in Chinese)
    [19]吕山花,樊颖伦.壳聚糖对玉米种子萌发及耐旱性的影响[J].玉米科学,2011,19(1):92-94.LüS H,Fan Y L.Effects of chitosan on germination of seeds and drought tolerance in maize[J].Journal of Maize Sciences,2011,19(1):92-94.(in Chinese)
    [20]袁建平,郭军艾,战丹丹.壳寡糖对玉米种子萌发及幼苗生长的影响[J].安徽农业科学,2011,39(1):88-89.Yuan J P,Guo J A,Zhan D D.Effect of Chito-oligosaccharide on maize(Z.mays L.)seed germination and seedlings growth[J].Journal of Anhui Agricultural Sciences,2011,39(1):88-89.(in Chinese)
    [21]张伟伟,王玺,曹宏,等.壳聚糖包衣对水分胁迫下玉米种子萌发和幼苗生长的影响[J].玉米科学,2011,19(3):98-101.Zhang W W,Wang X,Cao H,et al.Effects of chitosan seed-coating on seed germination and seedling growth in maize under water stress[J].Journal of Maize Sciences,2011,19(3):98-101.(in Chinese)
    [22]韩玉军,陶波.壳聚糖对玉米幼苗生长及生理生化活性的影响[J].玉米科学,2012,20(3):73-76.Han Y J,Tao B.Effects of chitosan on the seedlings growth and the physiochemical activity of maize[J].Journal of Maize Sciences,2012,20(3):73-76.(in Chinese)
    [23]欧阳寿强,徐朗莱.壳聚糖对不结球白菜营养品质和某些农艺性状的影响[J].植物生理学通讯,2003,39(1):21-24.Ouyang S Q,Xu L L.Effects of chitosan on nutrient qualities and some agronomic characters oh non-heading Chinese cabbage[J].Plant Physiology Letters,2003,39(1):21-24.(in Chinese)
    [24]罗兵,徐朗莱,孙海燕.壳聚糖对黄瓜品质和产量的影响[J].南京农业大学学报,2004,27(1):20-23.Luo B,Xu L L,Sun H Y.Effects of chitosan on the quality and product yield of cucumber[J].Journal of Nanjing Agricultural University,2004,27(1):20-23.(in Chinese)
    [25]从心黎,黄绵佳,冯妍,等.外源壳聚糖对干旱胁迫下红掌苗的生理效应[J].植物生理学通讯,2008,44(1):103-105.Cong X L,Huang M J,Feng Y,et al.Physiological effects of exogenous chitosan on seedlings of Anthurium andraeanum L.under drought stress[J].Plant Physiology Communications,2008,44(1):103-105.(in Chinese)
    [26]马彦霞,郁继华,张国斌,等.壳聚糖对水分胁迫下辣椒幼苗氧化损伤的保护作用[J].中国农业科学,2012,45(10):1964-1971.Ma Y X,Yu J H,Zhang G B,et al.Protective Effects of exogenous chitosan on oxidative damage in pepper seedling leaves under water stress[J].Scientia Agricultura Sinica,2012,45(10):1964-1971.(in Chinese)
    [27]孙君艳,董丽平,王付娟.干旱胁迫下壳寡糖对玉米叶片叶绿素含量、含水量及保护酶活性的影响[J].河南农业科学,2014,43(9):38-40,45.Sun J Y,Dong L P,Wang F J.Effects of chitosan oligosaccharide on chlorophyll content,water content and protective enzyme activities of maize under drought stress[J].Journal of Henan Agricultural Sciences,2014,43(9):38-40,45.(in Chinese)
    [28]张佳蕾,郭峰,万书波,等.壳寡糖对旱薄地花生叶片衰老及产量和品质的影响[J].西北植物学报,2015,35(3):516-522.Zhang J L,Guo F,Wan S B,et al.Effect of spraying oligochitosan on leaf senescence,yield and quality of Arachis hypogaea on barren dryland[J].Acta Botanica Boreali-Occidentalia Sinica,2015,35(3):516-522.(in Chinese)
    [29]焦姣,王芳,李丹,等.壳寡糖不同剂量与施药时期对玉米苗期抗旱性的影响[J].陕西农业科学,2017,63(2):23-26.Jiao J,Wang F,Li D,et al.Effects of different dosage of chitosan oligosaccharide and spraying time on drought resistance of maize at seedling stage[J].Shaanxi Journal of Agricultural Sciences,2017,63(2):23-26.(in Chinese)
    [30]薛国希,高辉远,李鹏民,等.低温下壳聚糖处理对黄瓜幼苗生理生化特性的影响[J].植物生理与分子生物学学报,2004,30(4):441-448.Xue G X,Gao H Y,Li P M,et al.Effects of chitosan treatment on physiological and biochemical characteristics in cucumber seedlings under low temperature[J].Journal of Plant Physiology and Molecular Biology,2004,30(4):441-448.(in Chinese)
    [31]刘晓霞,邹成林,李训碧,等.壳寡糖对干旱胁迫下甘蔗叶片生理指标的影响[J].南方农业学报,2014,45(10):1759-1763.Liu X X,Zou C L,Li X B,et al.Effects of oligochitosan on the leaf physiological indices of sugarcane under drought stress[J].Journal of Southern Agriculture,2014,45(10):1759-1763.(in Chinese)
    [32]李艳,曾秀娥,李洪艳,等.壳寡糖对干旱胁迫下油菜叶片生理指标的影响[J].生态学杂志,2012,31(12):3080-3085.Li Y,Zeng X E,Li H Y,et al.Effects of oligochitosan on the leaf physiological indices of Brassica napus L.under drought stress[J].Chinese Journal of Ecology,2012,31(12):3080-3085.(in Chinese)
    [33]李艳,赵小明,夏秀英,等.壳寡糖对干旱胁迫下油菜光合参数的影响[J].作物学报,2008,34(2):326-329.Li Y,Zhao X M,Xia X Y,et al.Effects of oligochitosan on photosynthetic parameter of Brassica napus seedlings under drought stress[J].Acta Agronomica Sinica,2008,34(2):326-329.(in Chinese)
    [34]El Hadrami A,Adam L R,El Hadrami I,et al.Chitosan in plant protection[J].Marine Drugs,2010,8(4):968-987.
    [35]Feng H,Xia W,Shan C,et al.Quaternized chitosan oligomers as novel elicitors inducing protection against B.cinerea in Arabidopsis[J].International Journal of Biological Macromolecules,2015,72:364-369.
    [36]Iriti M,Varoni E M.Chitosan-induced antiviral activity and innate immunity in plants[J].Environmental Science and Pollution Research,2015,22(4):2935-2944.
    [37]Sathiyabama M,Manikandan A.Chitosan nanoparticle induced defense responses in fingermillet plants against blast disease caused by Pyricularia grisea(Cke.)Sacc[J].Carbohydrate Polymers,2016,154:241-246.
    [38]Jia X,Meng Q,Zeng H,et al.Chitosan oligosaccharide induces resistance to tobacco mosaic virus in Arabidopsis via the salicylic acid-mediated signaling pathway[J].Scientific Report,2016,6:26144.
    [39]Qiu X.Analysis and evaluation of atmospheric precipitation in Weinan of Shaanxi province[J].Agricultural Science&Technology,2016,17(11):2497-2499.
    [40]Sukumaran N P,Weiser C J.An excised leaflet test for evaluating potato frost tolerance[J].Hortscience,1972,7(3):467-468.
    [41]Dhindsa R S,Matowe W.Drought tolerance in two mosses:correlated with enzymatic defense against lipid peroxidation[J].Journal of Experimental Botany,1981,32(1):79-91.
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