全有机营养模式下番茄综合品质评价及其对有机肥水耦合的响应
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Construction of integrated quality index of tomato with total organic nutrition and its response to organic fertilizer and water coupling
  • 作者:马乐乐 ; 高宁 ; 杨百良 ; 任瑞丹 ; 范兵华 ; 李建明
  • 英文作者:MA Lele;GAO Ning;YANG Bailiang;REN Ruidan;FAN Binghua;LI Jianming;College of Horticulture,Northwest A&F University;Key Laboratory of Protected Horticultural Engineering in Northwestern China,Ministry of Agriculture;Yulin Vocational and Technical College;
  • 关键词:番茄有机栽培 ; 全有机营养 ; 有机肥水耦合 ; 综合品质评价
  • 英文关键词:tomato organic cultivation;;organic nutrition;;organic fertilizer-water coupling;;comprehensive quality evaluation
  • 中文刊名:XBNY
  • 英文刊名:Journal of Northwest A & F University(Natural Science Edition)
  • 机构:西北农林科技大学园艺学院;农业部西北设施园艺工程重点实验室;榆林职业技术学院;
  • 出版日期:2018-12-04 10:11
  • 出版单位:西北农林科技大学学报(自然科学版)
  • 年:2019
  • 期:v.47;No.345
  • 基金:国家大宗蔬菜产业技术体系项目(CARS-23-C05);; 国家“十三五”重点研发项目(2016YFD0201005);; 陕西省重点研发项目(2017ZDXM-NY-003)
  • 语种:中文;
  • 页:XBNY201906010
  • 页数:10
  • CN:06
  • ISSN:61-1390/S
  • 分类号:69-78
摘要
【目的】探究有机基质加有机营养液的全有机营养模式下番茄最优的水肥施用量组合,为设施番茄有机栽培提供理论依据。【方法】以番茄为试材,有机营养液滴灌量分别设0,3.48,12,20.52和24L/株5个水平,水分滴灌量依据蒸腾蒸发量(ET)分别设1.2ET,1.26ET,1.40ET,1.54ET,1.60ET 5个水平,采用二因子五水平正交旋转组合设计,设9个处理,进行番茄袋培试验,测定番茄果实7项单一品质指标(可溶性固形物含量、可溶性糖含量、有机酸含量、糖酸比、番茄红素含量、维生素C含量和可溶性蛋白含量),采用主观层次分析法、客观熵权法对各单一指标进行赋权,再利用基于博弈论的组合赋权法计算各指标权重,然后用近似理想解法构建番茄果实综合品质评价指标,建立评价综合品质的数学模型,并分析其对有机肥水耦合的响应关系。【结果】采用基于博弈论的组合赋权法确定的单一品质指标权重次序为:番茄红素含量>可溶性蛋白含量>可溶性糖含量>可溶性固形物含量>糖酸比>有机酸含量>维生素C含量。所建模型达到显著水平,随有机营养液和水分滴灌量的增加,番茄果实综合品质均呈现先升高后降低的趋势,二者的交互作用对综合品质的影响为正效应,任一单因素对综合品质的影响均为负效应,其中有机营养液滴灌量对综合品质的影响效应大于水分。当有机营养液滴灌量为10.30L/株、水分滴灌量为1.35ET时,番茄果实综合品质评价值最高,为0.98。【结论】有机肥水耦合能显著提升番茄果实综合品质,合理控制有机营养液和水分滴灌量可以有效改善番茄果实综合品质。
        【Objective】The optimal combination of organic nutrient solution and water drip irrigation for tomato was studied under organic nutrition with organic matrix and organic nutrient solution to provide theoretical basis for organic cultivation of tomato facilities.【Method】The drip volume of organic nutrients was set to 5 levels of 0,3.48,12,20.52 and 24 L/plant,and the water drip volume was set to 5 levels of 1.2 ET,1.26 ET,1.4 ET,1.54 ET,and 1.60 ET.The two-factor five-level orthogonal rotation combination was designed with a total of nine treatments for tomato bag cultivation test.After determining seven quality indicators of tomato fruit(soluble solids content,soluble sugar content,organic acid content,sugar-acid ratio,lycopene content,vitamin C content and soluble protein content),the weight of each indicator was calculated by subjective analytic hierarchy process,objective entropy method,and weighted combination method based on game theory.Then,an evaluation index for comprehensive quality of tomato fruit was constructed by using an approximate ideal solution,a mathematical model of comprehensive quality was established,and the response relationship of organic fertilizer and water was analyzed.【Result】The weight order of the quality indicators determined by combination weighting method was lycopene content>soluble protein content>soluble sugar content>soluble solids content>sugar-acid ratio>organic acid content>vitamin C content.The established model reached a significant level.With the increase of organic nutrient solution and water drip irrigation amount,the overall quality of tomato fruit showed a trend of increasing first followed by decrease.The interaction between the two had positive effect on the overall quality.Each single factor had negative effect on the overall quality,and the effect of organic nutrient drip irrigation on overall quality was greater than that of water.When the organic nutrient drip volume was 10.30 L/plant and the water drip volume was 1.35 ET,the comprehensive evaluation value of tomato fruit was the highest of 0.98.【Conclusion】Coupling of organic fertilizer and water can significantly enhance the overall quality of tomato fruit.Reasonable control of organic nutrient solution and water drip volume can effectively improve the overall quality of tomato fruit.
引文
[1]岳钉伊,张静,赵建涛,等.增施CO2与LED补光对番茄果实品质及挥发性物质的影响[J].食品科学,2018,39(1):124-130.Yue D Y,Zhang J,Zhao J T,et al.Effect of adding CO2and LED light on tomato fruit quality and volatile substances[J].Food Science,2018,39(1):124-130.
    [2]Toor R K,Savage G P,Heeb A.Influence of different types of fertilizers on the major antioxidant components of tomatoes[J].Journal of Food Composition and Analysis,2006,19(1):20-27.
    [3]袁宇含,南哲佑,朴光一,等.有机生态型无土栽培技术及展望[J].东北农业科学,2017,42(1):61-64.Yuan Y H,Nan Z Y,Piao G Y,et al.Organic ecotype soilless culture techniques and prospects[J].Northeast Agricultural Sciences,2017,42(1):61-64.
    [4]史林峰,杨美凤.台湾推出碧全有机农业栽培法[J].现代农业,1994,20(10):15-16.Shi L F,Yang M F.Introducing Biquan Organic Agricultural Cultivation Method in Taiwan[J].Modern Agriculture,1994,20(10):15-16.
    [5]王鹏,王净,刘社平,等.不同有机基质配比对番茄生长发育、产量和果实品质的影响[J].江苏农业科学,2016,44(5):211-213.Wang P,Wang J,Liu S P,et al.Effect of organic matrix ratio on tomato growth,yield and fruit quality[J].Jiangsu Agricultural Sciences,2016,44(5):211-213.
    [6]李惠,李建明,丁明,等.堆肥浸提液对番茄、黄瓜种苗生长及养分吸收的影响[J].西北农林科技大学学报(自然科学版),2017,45(2):123-127.Li H,Li J M,Ding M,et al.Effect of compost extract on growth and nutrient uptake of tomato and cucumber seedlings[J].Journal of Northwest A&F University(Natural Science E-dition),2017,45(2):123-127.
    [7]杜清洁,李建明,潘铜华,等.滴灌条件下水肥耦合对番茄产量及综合品质的影响[J].干旱地区农业研究,2015,33(3):10-17.Du Q J,Li J M,Pan T H,et al.Effects of water and fertilizer coupling on tomato yield and comprehensive quality under drip irrigation[J].Agriculttural Research in the Arid Areas,2015,33(3):10-17.
    [8]张军,李建明,张中典,等.水肥对番茄产量、品质和水分利用率的影响及综合评价[J].西北农林科技大学学报(自然科学版),2016,44(7):215-222.Zhang J,Li J M,Zhang Z D,et al.Effect and comprehensive evaluation of water and fertilizer on tomato yield,quality and water use efficiency[J].Journal of Northwest A&F University(Natural Science Edition),2016,44(7):215-222.
    [9]王鹏勃,李建明,丁娟娟,等.水肥耦合对日光温室袋培番茄产量和品质的影响[J].西北农林科技大学学报(自然科学版),2015,43(10):129-136.Wang P B,Li J M,Ding J J,et al.Effects of water and fertilizer coupling on yield and quality of bag cultivated tomato in sunlight greenhouse[J].Journal of Northwest A&F University(Natural Science Edition),2015,43(10):129-136.
    [10]曹玉鑫,曹红霞,王萍,等.营养液浓度对番茄生长、品质以及耐贮性的影响[J].食品科学,2018,39(7):63-70.Cao Y X,Cao H X,Wang P,et al.Effects of nutrient solution concentration on tomato growth,quality,and storability[J].Food Science,2018,39(7):63-70.
    [11]Omkarprasad S,Vaidyaa,Sushil K.Analytic hierarchy process:an overview of applications[J].European Journal of Operational Research,2006,169(1):1-29.
    [12]Zou Z H,Yun Y,Sun J N.Entropy method for determination of weight of evaluating indicators in fuzzy synthetic evaluation for water quality assessment[J].Journal of Environmental Sciences,2006,18(5):1021-1023.
    [13]支援,王秀峰,梁龙跃,等.基于完全信息博弈原理的虚拟水战略研究[J].生态经济,2018,34(3):202-207.Zhi Y,Wang X F,Liang L Y,et al.Virtual water strategy based on complete information game theory[J].Ecology Economy,2018,34(3):202-207.
    [14]Wang Y J,Leeb H.Generalizing TOPSIS for fuzzy multiplecriteria group decision-making[J].Computers and Mathematics with Applications,2007,53(11):1762-1772.
    [15]王鹏勃,李建明,丁娟娟,等.番茄育苗基质理化特性及其对幼苗生长影响的研究[J].干旱地区农业研究,2014,32(5):137-142.Wang P B,Li J M,Ding J J,et al.Physiological characteristics of tomato seedling substrate and its effect on seedling growth[J].Agricultural Research in the Arid Areas,2014,32(5):137-142.
    [16]李惠.有机浸提液的制备及其在蔬菜上应用效果的分析[D].陕西杨凌:西北农林科技大学,2017.Li H.Preparation of organic extract and its application effect on vegetables[D].Yangling,Shaanxi:Northwest A&F University,2017.
    [17]岳冬,刘娜,朱为民,等.樱桃番茄与普通番茄部分品质指标及氨基酸组成比较[J].食品科学,2015,36(4):92-96.Yue D,Liu N,Zhu W M,et al.Comparison of some quality indexes and amino acid composition between cherry tomato and common tomato[J].Food Science,2015,36(4):92-96.
    [18]李合生.植物生理生化实验原理和技术[M].北京:高等教育出版社,2000:195-196.Li H S.Physiological and biochemical experimental principles and techniques[M].Beijing:Higher Education Press,2000:195-196.
    [19]西北农业大学植物生理生化教研组.植物生理学实验指导[M].西安:陕西科学技术出版社,1987:122-123.Plant Physiology and Biochemistry Research Group of Northwest Agricultural University.Plant physiology experimental guidance[M].Xi’an:Shaanxi Science and Technology Press,1987:122-123.
    [20]胡晓波,温辉梁,许全,等.番茄红素含量测定[J].食品科学,2005,26(9):566-569.Hu X B,Wen H L,Xu Q,et al.Determination of lycopene content[J].Food Science,2005,26(9):566-569.
    [21]高俊凤.植物生理学实验指导[M].北京:高等教育出版社,2006:142-143.Gao J F.Plant physiology experimental guidance[M].Beijing:Higher Education Press,2006:142-143.
    [22]Albayrak E,Erensal Y C.Using analytic hierarchy process(AHP)to improve human performance:an application of multiple criteria decision making problem[J].Journal of Intelligent Manufacturing,2004,15(4):491-503.
    [23]赵奎,刘维发,曾鹏,等.基于博弈论组合赋权TOPSIS法的深部进路参数优选[J].有色金属科学与工程,2018,9(2):70-74.Zhao K,Liu W F,Zeng P,et al.The game theory approach to parameter optimization of deep combination weighting method based on TOPSIS[J].Nonferrous Metals Science and Engineering,2018,9(2):70-74.
    [24]Wang F,Kang S Z,Du T S.Determination of comprehensive quality index for tomato and its response to different irrigation treatments[J].Agricultural Water Management,2011,98(8):1228-1238.
    [25]李建明,潘铜华,王慧玲,等.水肥耦合对番茄光合、产量及水分利用效率的影响[J].农业工程学报,2014,30(10):82-89.Li J M,Pan T H,Wang H L,et al.Effects of water and fertilizer coupling on photosynthesis,yield and water use efficiency of tomato[J].Journal of Agricultural Engineering,2014,30(10):82-89.
    [26]蔡东升,李建明,樊翔宇,等.基质栽培营养液氮磷钾补充水平对番茄养分吸收及产量品质影响[J].东北农业大学学报,2017,48(1):7-14.Cai D S,Li J M,Fan X Y,et al.Effects of N,P and K supplementation levels on nutrient uptake,yield and quality of tomato[J].Journal of Northeast Agricultural University,2017,48(1):7-14.
    [27]钟秀娟.不同工艺对堆肥水溶性有机物及肥效的影响[D].广州:华南农业大学,2016:7-12.Zhong X J.Effect of different processes on composted watersoluble organic matter and fertilizer efficiency[D].Guangzhou:South China Agricultural University,2016:7-12.
    [28]贾华丽,郗敏,孔范龙,等.土壤溶解性有机质生物降解研究进展[J].生态科学,2016,35(2):183-188.Jia H L,Xi M,Kong F L,et al.Research progress on biodegradation of dissolved organic matter in soil[J].Ecological Science,2016,35(2):183-188.
    [29]Reeve J R,Carpenter-Boggs L,Reganold J P,et al.Influence of biodynamic preparations on compost development and resultant compost extracts on wheat seedling growth[J].Bioresource Technology,2010,101(14):5658-5666.
    [30]Zhang H,Xu M,Zhang F.Long-term effects of manure application on grain yield under different cropping systems and ecological conditions in China[J].Journal of Agricultural Science,2009,147(1):31-42.
    [31]黄红荣,李建明,张军,等.滴灌条件下水肥耦合对番茄光合、产量和干物质分配的影响[J].灌溉排水学报,2015,34(7):6-12.Huang H R,Li J M,Zhang J,et al.Effects of water and fertilizer coupling on tomato photosynthesis,yield,and dry matter allocation under drip irrigation[J].Journal of Irrigation and Drainage,2015,34(7):6-12.
    [32]周博,陈竹君,周建斌.水肥调控对日光温室番茄产量、品质及土壤养分含量的影响[J].西北农林科技大学学报(自然科学版),2006,34(4):58-62,68.Zhou B,Chen Z J,Zhou J B.Effect of water and fertilizer regulation on tomato yield,quality and soil nutrient content in solar greenhouse[J].Journal of Northwest A&F University(Natural Science Edition),2006,34(4):58-62,68.
    [33]张国红.施肥水平对日光温室番茄生育和土壤环境的影响[D].北京:中国农业大学,2004.Zhang G H.Effect of fertilization level on tomato growth and soil environment in sunlight greenhouse[D].Beijing:China Agricultural University,2004.
    [34]Liu K,Zhang T Q,Tan C S.Responses of fruit yield and quality of processing tomato to drip-irrigation and fertilizers phosphorus and potassium[J].Agronomy Journal,2011,103(5):1339-1345.
    [35]王海艺,韩烈保,黄明勇.干旱条件下水肥耦合作用机理和效应[J].中国农学通报,2006,22(6):124-128.Wang H Y,Han L B,Huang M Y.Coupling mechanism and effects of water and fertilizers under drought[J].Chinese Agricultural Science Bulletin,2006,22(6):124-128.
    [36]陈金亮.番茄果实生长和糖分模拟及节水调质优化灌溉决策研究[D].北京:中国农业大学,2016.Chen J L.Study on tomato fruit growth and sugar simulation and water saving and optimization of irrigation optimization[D].Beijing:China Agricultural University,2016.
    [37]Cristina P,Simona T,Orazio S.Effects of deficit irrigation on biomass,yield,water productivity and fruit quality of processing tomato under semi-arid mediterranean climate conditions[J].Indian Journal of Horticulture,2011,129(4):590-596.
    [38]韦泽秀,梁银丽,山田智,等.不同水肥条件下番茄土壤微生物群落多样性及其与产量品质的关系[J].植物生态学报,2009,33(3):580-586.Wei Z X,Liang Y L,Shan T Z,et al.Relationship between soil microbial community diversity and yield and quality of tomato under different water and fertilizer conditions[J].Chinese Journal of Plant Ecology,2009,33(3):580-586.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700