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光作为植物生长发育必不可少的环境因子之一,对蔬菜生长发育和品质形成具有重要的影响。光环境(光强、光质、光照时间)也是植物工厂生产效率的主要影响因素。本文综述了不同光环境对蔬菜品质的影响,以期为植物工厂的蔬菜生产提供参考。
Abstract:Light as an essential environment element for plants, plays an important role in the growth, development and quality formation of vegetables. Light environment(light quality, light intensity and light period) is the primary factor for the production efficiency of plant factory. This paper summarizes the effects of light conditions on vegetable quality, in order to provide information for the vegetable production in plant factory.
[1]Lin K H,Huang M Y,Huang W D,et al.The effects of red,blue,and white light-emitting diodes on the growth,development,and edible quality of hydroponically grown lettuce(Lactuca sativa L.var.capitata)[J].Scientia Horticulturae,2013,150(2):86-91.
[2]Akvil Vir?il .The effects of light-emitting diode lighting on greenhouse plant growth and quality[J].Agricultural&Food Science,2013,22(2):223-234.
[3]蒲高斌,刘世琦,刘磊,等.不同光质对番茄幼苗生长和生理特性的影响[J].园艺学报,2005,32(3):420-425.
[4]崔慧茹.光质对彩色甜椒生理特性及品质的影响[D].山东农业大学,2009.
[5]陈祥伟.不同光质LED对乌塌菜生长生理特性及营养品质的影响[D].山东农业大学,2014.
[6]周华,刘淑娟,王碧琴,等.不同波长LED光源对生菜生长和品质的影响[J].江苏农业学报,2015,31(2):429-433.
[7]闻婧,鲍顺淑,杨其长,等.LED光源R/B对叶用莴苣生理性状及品质的影响[J].中国农业气象,2009,30(3):413-416.
[8]刘素慧,张立伟.红蓝光质对香椿芽苗菜营养品质的影响[J].中国农业气象,2015,36(3):306-312.
[9]陈文昊,徐志刚,刘晓英,等.LED光源对不同品种生菜生长和品质的影响[J].西北植物学报,2011,31(7):1434-1440.
[10]刘文科,杨其长,赵娇娇.不同LED光质对生菜生长和营养品质的影响[J].蔬菜,2012(11):63-65.
[11]苏诗淼.LED光对温室植物生长的影响[J].安徽农业科学,2014(25):8494-8496.
[12]Chen X,Xue X,Guo W,et al.Growth and nutritional properties of lettuce affected by mixed irradiation of white and supplemental light provided by light-emitting diode[J].Scientia Horticulturae,2016,200:111-118.
[13]刘晓英,常涛涛,郭世荣,等.红蓝LED光全生育期照射对樱桃番茄果实品质的影响[J].中国蔬菜,2010(22):21-27.
[14]Ebisawa M,Shoji K,Kato M,et al.Supplementary ultraviolet radiation B together with blue light at night increased quercetin content and flavonol synthase gene expression in leaf lettuce(Lactuca sativa L.)[J].Environment Control in Biology,2008,46(1):1-11.
[15]李倩.光质对生菜、丹参生长和次生代谢物的影响[D].西北农林科技大学生命科学学院,2010.
[16]袁慧丽.不同LED光源夜间补光对叶用莴苣生长和营养品质及黄瓜根结线虫抗性的影响[D].浙江大学,2012.
[17]Park Y G,Oh H J,Jeong B R.Growth and anthocyanin concentration of Perilla frutescens var.acuta Kudo as affected by light source and DIF under controlled environment[J].Horticulture Environment and Biotechnology,2013,54(2):103-108.
[18]余意.三种叶色生菜人工光水培氮营养及光质条件优化研究[D].中国农业科学院,2015.
[19]Amoozgar A,Mohammadi A,Sabzalian M R.Impact of light-emitting diode irradiation on the photosynthesis,phytochemical composition and mineral element content of lettuce cv.grizzly[J].Photosynthetica,2016:1-11.
[20]Bantis F,Ouzounis T,Radoglou K.Artificial LED lighting enhances growth characteristics and total phenolic content of Ocimum basilicum,but variably affects transplant success[J].Scientia Horticulturae,2016,198:277-283.
[21]Ohashi-Kaneko K,Takase M,Kon N,et al.Effect of light quality on growth and vegetable quality in leaf lettuce,spinach and komatsuna[J].Environmental Control in Biology,2007,45(3):189-198.
[22]Nishimura T,Ohyama K,Goto E,et al.Concentrations of perillaldehyde,limonene,and anthocyanin of perilla plants as affected by light quality under controlled environments[J].Scientia Horticulturae,2009,122:134-137.
[23]Son K H,Oh M M.Leaf shape,growth,and antioxidant phenolic compounds of two lettuce cultivars grown under various combinations of blue and red light-emitting diodes[J].Hort Science,2013,48(8):988-995.
[24]高波.不同LED光质和营养液对芹菜生长、产量、品质及光合特性的影响[D].西北农林科技大学,2015.
[25]李亚华.LED光质对茄子生长发育及产量、品质的影响[D].山东农业大学,2015.
[26]孙娜.光质对番茄生长、生理代谢及果实产量品质的影响[D].山东农业大学,2015.
[27]Samuoliene G,Brazaityte A,Sirtautas R,et al.LEDillumination affects bioactive compounds in romaine baby leaf lettuce[J].Journal of the Science of Food and Agriculture,2013,93(13):3286-3291.
[28]Liu W,Yang Q.Effects of supplemental UV-A and UV-Cirradiation on growth,photosynthetic pigments and nutritional quality of pea seedlings[J].Acta Horticulturae,2012,956:657-663.
[29]Presswood H A,Hofmann R,Savage G P.Effects of UV-Bradiation on oxalate content of silver beet leaves[J].Journal of Food Research,2012,1(4):1-6.
[30]Sakalauskien S,Janu?kaitien I,Juknys R,et al.The effects of UV-B radiation on phytochemical properties of Spinacia oleracea[J].Rural Development,2013:223.
[31]齐艳,邢燕霞,郑禾,等.UV-A和UV-B提高甘蓝幼苗花青素含量以及调控基因表达分析[J].中国农业大学学报,2014,19(2):86-94.
[32]耿殿祥,魏圣军,苏娜娜,等.长波紫外线对萝卜芽苗菜抗坏血酸合成的影响[J].营养学报,2015(4):350-355.
[33]Lee M J,Son K H,Oh M M.Increase in biomass and bioactive compounds in lettuce under various ratios of red to far-red LED light supplemented with blue LED light[J].Horticulture Environment&Biotechnology,2016,57(2):139-147.
[34]Li Q,Kubota C,Li Q,et al.Effects of supplemental light quality on growth and phytochemicals of baby leaf lettuce[J].Environmental&Experimental Botany,2009,67(1):59-64.
[35]刘文科,杨其长,邱志平,等.LED光质对豌豆苗生长、光合色素和营养品质的影响[J].中国农业气象,2012,33(4):500-504.
[36]Mewis I,Schreiner M,Nguyen C N,et al.UV-Birradiation changes specifically the secondary metabolite profile in broccoli sprouts:induced signaling overlaps with defense response to biotic stress[J].Plant&Cell Physiology,2012,53(9):1546-1560.
[37]鲁燕舞.光质对萝卜芽苗菜物质代谢及营养品质影响的机理研究[D].南京农业大学,2014.
[38]Abd Elgader A,Aiemla-Or S,Wongs-Aree C,et al.Effect of LED lighting on the quality of radish sprout[J].Agricultural Science,2015,46(3):888-891.
[39]黄枝,王美娟,林碧英.LED光质对豌豆芽苗菜产量及品质的影响[J].亚热带农业研究,2015,11(2):90-94.
[40]Levine L H,Pare P W.Antioxidant capacity reduced in scallions grown under elevated CO2 independent of assayed light intensity[J].Science Direct,2009,44:887-894.
[41]周秋月,吴沿友,许文祥,等.光强对生菜硝酸盐累积的影响[J].农机化研究,2009,31(1):189-192.
[42]赵玉萍.不同温度光照对温室番茄生长、光合作用及产量品质的影响[D].西北农林科技大学,2010.
[43]Li J,Hikosaka S,Goto E.Effects of light quality and photosynthetic photon flux on growth and carotenoid pigment sinspinach(Spinaciao leracea L.)[J].Act a Horticulturae,2011,907:105-110.
[44]王志敏,宋非非,徐志刚,等.不同红蓝LED光照强度对叶用莴苣生长和品质的影响[J].中国蔬菜,2011(16):44-49.
[45]Fu W G,Li P P,Wu Y Y,et al.Effects of different light intensities on anti-oxidative enzyme activity,quality and biomass in lettuce[J].Horticultural Science,2012,39(3):129-134.
[46]Pérez-López U,Miranda-Apodaca J,Munoz-Rueda A,et al.Lettuce production and antioxidant capacity are differentially modified by salt stress and light intensity under ambient and elevated CO2[J].Journal of Plant Physiology,2013,170:1517-1525.
[47]SamuolienG,BrazaitytA,JankauskienJ,et al.LED irradiance level affects growth and nutritional quality of Brassica microgreens[J].Central European Journal of Biology,2013,8(12):1241-1249.
[48]Proietti S,Moscatello S,Giacomelli G,et al.Influence of the interaction between light intensity and CO2 concentration on productivity and quality of spinach(Spinacia oleracea L.)grown in fully controlled environment[J].Advances in Space Research,2013,52:1193-1200.
[49]Li A,Li S,Wu X,et al.Influence of light intensity on the yield and quality of Houttuynia cordata[J].Plant Production Science,2015,18(4):522-528.
[50]Ntagkas N,Min Q,Woltering E J,et al.Illuminating tomato fruit enhances fruit vitamin C content[J].Acta Horticulturae,2016,1134:351-356.
[51]成元刚.温度、光照对红花芽菜发育的影响及成分检测[D].河南科技学院,2012.
[52]马超.光环境调控对绿瓣型大豆芽苗菜生长和品质的影响[D].南京农业大学,2012.
[53]张毅华,张晓燕,崔瑾.光强对黑豆芽苗菜生长和营养品质的影响[J].中国蔬菜,2013(16):49-54.
[54]Gerovac J R,Craver J K,Boldt J K,et al.Light intensity and quality from sole-source light-emitting diodes impact growth,morphology,and nutrient content of Brassica microgreens[J].Hort Science,2016,51(5):497-503.
[55]严妍.温度和光周期对水培生菜生长的影响及生长模型初探[D].华中农业大学,2008.
[56]毛金柱,邱权,张芳,等.荧光灯下不同光周期对生菜形态指标、品质和离子吸收量的影响[J].北方园艺,2013(15):24-28.
[57]毛金柱,邱权,张芳,等.LED光源下不同光照时间对生菜生长的影响[J].农机化研究,2014(3):141-145.
[58]刘渊川,吉家曾,刘厚诚,等.不同LED光照时长对菜心生长与品质的影响[J].中国照明电器,2014(12):22-25.
[59]余意,刘文科.弱光条件下光质和光周期对水培生菜生长与品质的影响[J].中国农业气象,2015,36(6):739-745.
[60]Wu M C,Hou C Y,Jiang C M,et al.A novel approach of LED light radiation improves the antioxidant activity of pea seedlings[J].Food Chemistry,2007,101(4):1753-1758.
[61]张欢,章丽丽,李薇.不同光周期红光对油葵芽苗菜生长和品质的影响[J].园艺学报,2012,39(2):297-304.
[62]齐学会,张晓燕,鲁燕舞,等.光质和光周期对大豆芽苗菜生长及总酚类物质含量的影响[J].中国蔬菜,2014(7):29-34.
基本信息:
中图分类号:S63;S123
引用信息:
[1]田佳灵,张轶婷,刘厚诚.光环境对蔬菜品质的影响[J].中国照明电器,2016,No.381(12):27-32.
基金信息:
广东省自然科学基金研究团队项目(S2013030012842);; 广东省科技计划项目(2015B090903074);; 广州市科技计划项目(201605030005)
2016-12-25
2016-12-25