|本期目录/Table of Contents|

[1]朱磊,胡婷,刘德明,等.叶面喷施硒对萝卜硒吸收及抗氧化能力的影响[J].江苏农业科学,2019,47(03):127-131.
 Zhu Lei,et al.Effects of foliar application of selenium on selenium absorption and antioxidant capacity of radish[J].Jiangsu Agricultural Sciences,2019,47(03):127-131.
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叶面喷施硒对萝卜硒吸收及抗氧化能力的影响(PDF)
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《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第47卷
期数:
2019年第03期
页码:
127-131
栏目:
园艺与林学
出版日期:
2019-02-02

文章信息/Info

Title:
Effects of foliar application of selenium on selenium absorption and antioxidant capacity of radish
作者:
朱磊1 胡婷2 刘德明3 向昌国1
1.吉首大学林产化工工程湖南省重点实验室,湖南张家界 427000;2.中国农业大学资源与环境学院/
生物多样性与有机农业北京市重点实验室,北京 100193;3.湖南农业大学分析测试中心,湖南长沙 410005
Author(s):
Zhu Leiet al
关键词:
亚硒酸钠萝卜硒形态抗氧化能力叶面喷施
Keywords:
-
分类号:
S631.106
DOI:
-
文献标志码:
A
摘要:
以华灵高科笋都四季满身红萝卜为试验材料,采用盆栽试验,设置6个施硒组分(0、0.5、2.5、10.0、20.0、40.0 mg/L)分别在叶旺盛生长期、块根膨大期、成熟期叶面喷施亚硒酸钠,研究叶面施硒浓度对萝卜生长、硒吸收和转化、硒形态分布以及对萝卜抗氧化能力的影响。结果表明,2.5 mg/L硒处理提高了萝卜果实产量,40.0 mg/L硒处理对萝卜果实生长具有抑制作用。随着叶面施硒浓度增加,萝卜叶子和果实中硒含量显著增加,且含量最高分别达到637、0.63 mg/kg。硒在萝卜叶子中主要以硒代蛋氨酸(SeMet)形式存在,含量为1.51 mg/kg;萝卜果实中硒主要以硒代胱氨酸(SeCys2)存在,含量为0.29 mg/kg。与对照组相比,2.5 mg/L处理组谷胱甘肽过氧化物酶(GSH-Px)活性增加了106.26%(P<0.05),过氧化物酶(POD)活性增加了14.87%(P<0.05),超氧化物歧化酶(SOD)活性无显著变化。适宜浓度的外源施硒能够增加萝卜产量、提高萝卜硒含量和增强抗氧化能力。因此,叶面施硒浓度2.5 mg/L为萝卜最佳施用量。
Abstract:
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参考文献/References:

[1]Rayman M P. The importance of selenium to human health[J]. Lancet,2000,356(9225):233-241.
[2]Hoffmann F W,Hashimoto A C,Shafer L A,et al. Dietary selenium modulates activation and differentiation of CD4+ T cells in mice through a mechanism involving cellular free thiols[J]. Journal of Nutrition,2010,140(6):1155-1161.
[3]Ferguson L R,Karunasinghe N,Zhu S T,et al. Selenium and its role in the maintenance of genomic stability[J]. Mutation Research,2012,733(1/2):100-110.
[4]Yong F,Zi X,Yi S,et al. Protection mechanism of Se-containing protein hydrolysates from Se-enriched rice on Pb2+-induced apoptosis in PC12 and RAW264.7 cells[J]. Food Chemistry,2017,219:391-398.
[5]El-Ramady H,Abdalla N,Alshaal T A,et al. Selenium in soils under climate change,implication for human health[J]. Environmental Chemistry Letters,2015,13(1):1-19.
[6]Yuan L,Yin X,Zhu Y,et al. Selenium in plants and soils,and selenosis in Enshi,China:implications for selenium biofortification[M]//Phytoremediation and biofortification. Dordrecht:Springer,2012:7-31.
[7]Gao J,Liu Y,Huang Y,et al. Daily selenium intake in a moderate selenium deficiency area of Suzhou,China[J]. Food Chemistry,2011,126(3):1088-1093.
[8]中国营养学会. 中国居民膳食营养素参考摄入量:2013版[M]. 北京:科学出版社,2014:48-51.
[9]Hamilton S J. Review of selenium toxicity in the aquatic food chain[J]. Science of the Total Environment,2004,326(1/2/3):1-31.
[10]Terry N,Zayed A M,de Souza M P,et al. Selenium in higher plants[J]. Annual Review of Plant Physiology and Plant Molecular Biology,2000,51:401-432.
[11]Cappa J J,Yetter C,Fakra S,et al. Evolution of selenium hyperaccumulation in Stanleya(Brassicaceae)as inferred from phylogeny,physiology and X-ray microprobe analysis[J]. New Phytologist,2015,205(2):583-595.
[12]段曼莉,付冬冬,王松山,等. 亚硒酸盐对四种蔬菜生长、吸收及转运硒的影响[J]. 环境科学学报,2011,31(3):658-665.
[13]Boldrin P F,de Figueiredo M A,Yang Yong And luo,hongmei,et al. Selenium promotes Sulfur accumulation and plant growth in wheat (Triticum aestivum)[J]. Physiologia Plantarum,2016,158(1):80-91.
[14]Hartikainen H,Xue T L,Piironen V. Selenium as an anti-oxidant and pro-oxidant in ryegrass[J]. Plant and Soil,2000,225(1/2):193-200.
[15]Allah A,F E,Abeer,et al. Mitigation of cadmium induced stress in tomato(Solanum lycopersicum L.) by selenium[J]. Pakistan J Bot,2016,48(3):953-961.
[16]Wiesner-Reinhold M,Schreiner M,Baldermann S,et al. Mechanisms of selenium enrichment and measurement in brassicaceous vegetables,and their application to human health[J]. Frontiers in Plant Science,2017,8:1365.
[17]Broadley M R. Selenium in human health and disease[J]. Antioxidants & Redox Signaling,2011,14(7):1337-1383.
[18]Brigelius-Flohé R,Maiorino M. Glutathione peroxidases[J]. Biochimica et Biophysica Acta,2013,1830(5):3289-3303.
[19]Castillo-Godina R G,Foroughbakhch-Pournavab R . Effect of selenium on elemental concentration and antioxidant enzymatic activity of tomato plants[J]. Journal of Agricultural Science,2016,18(1):233-244.
[20]Balakhnina T I,Nadezhkina E S. Effect of selenium on growth and antioxidant capacity of Triticum aestivum L. during development of lead-induced oxidative stress[J]. Russian Journal of Plant Physiology,2017,64(2):215-223.
[21]Habibi G. Effect of drought stress and Selenium spraying on photosynthesis and antioxidant activity of spring barley[J]. Acta Agriculturae Slovenica,2013,101(1):31-39.
[22]于洋. 富硒区蔬菜根-土微界面过程镉的物理化学作用及生物有效性特征[D]. 海口:海南大学,2015.
[23]赵妍,宗良纲,曹丹,等. 江苏省典型茶园土壤硒分布特性及其有效性研究[J]. 农业环境科学学报,2011,30(12):2467-2474.
[24]De Temmerman L,Waegeneers N,Thiry C,et al. Selenium content of Belgian cultivated soils and its uptake by field crops and vegetables[J]. Science of the Total Environment,2014,468-469:77-82.
[25]胡婷,李文芳,聂亚文,等. 张家界市土壤硒分布规律和富硒作物研究[J]. 农业现代化研究,2014,35(6):821-824.
[26]胡婷,李文芳,向昌国,等. 氢化物发生-原子荧光光谱法测定植物样品中的硒[J]. 分析科学学报,2015,31(4):579-582.
[27]王铁良,张会芳,魏亮亮,等. 高效液相色谱-氢化物发生-原子荧光光谱联用技术测定富硒大米中的5种硒形态[J]. 食品安全质量检测学报,2017,8(6):2185-2190.
[28]胡婷. 张家界市富硒植物中硒形态分布及种植规划研究[D]. 吉首:吉首大学,2015.
[29]刘群龙,郝燕燕,吴国良,等. 外源硒对砀山酥梨果实品质和硒含量的影响[J]. 河南农业科学,2015,44(8):113-117.
[30]张琳,孙炎鑫,廖上强. 叶面喷施硒对生菜长势和品质的影响[J]. 现代农业科技,2017(12):61-62.
[31]付小丽. 不同硒源对小麦和油菜生长及硒累积的影响[D]. 武汉:华中农业大学,2013.
[32]Owusu-Sekyere A,Kontturi J,Hajiboland R A,et al. Influence of selenium (Se) on carbohydrate metabolism,nodulation and growth in alfalfa (Medicago sativa L.)[J]. Plant and Soil,2013,373(1/2):541-552.
[33]刘庆,田侠,史衍玺. 施硒对小麦籽粒硒富集、转化及蛋白质与矿质元素含量的影响[J]. 作物学报,2016,42(5):778-783.
[34]侯松,田侠,刘庆. 叶面喷施硒对紫甘薯硒吸收、分配及品质的影响[J]. 作物学报,2018(3):1-8.
[35]Hamilton J W,Beath O A. Selenium uptake and conversion by certain crop plants[J]. Agronomy Journal,1963,55(6):528-531.
[36]Wan H F,Mikkelsen R L,Page A L. Selenium uptake by some agricultural crops from central California soils[J]. Journal of Environmental Quality,1988,17(2):269-272.
[37]Arthur M A,Woodbury P B,Schneider R E,et al. Uptake and accumulation of selenium by terrestrial plants growing on a coal fly ash landfill.Part 2.Forage and root crops[J]. Environmental Toxicology & Chemistry,1992,11(9):1289-1299.
[38]Sargent M. Food-chain selenium and human health:spotlight on speciation[J]. The British Journal of Nutrition,2008,100(2):238-253.
[39]Do N E,Aureli F,Damato M,et al. Selenium bioaccessibility and speciation in selenium-enriched lettuce:investigation of the selenocompounds liberated after in vitro simulated human digestion using two-dimensional HPLC-ICP-MS[J]. Journal of Agricultural & Food Chemistry,2017,65(43):3031-3038.
[40]El-Ramady H,Abdalla N,Alshaal T,et al. Selenium and its role in higher plants[J]//Pollutants in Buildings,Water and Living Organisms. Cham:Springer,2015:235-296.
[41]Kong L A,Wang M,Bi D L. Selenium modulates the activities of antioxidant enzymes,osmotic homeostasis and promotes the growth of sorrel seedlings under salt stress[J]. Plant Growth Regulation,2005,45(2):155-163.

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备注/Memo

备注/Memo:
收稿日期:2018-07-12
基金项目:生态旅游湖南省重点实验室开放性课题(编号:JDZ201706);吉首大学科研项目(编号:JDY44)。
作者介绍:朱磊(1993—),男,陕西宝鸡人,硕士研究生,主要从事富硒食品开发研究。E-mail:zhulei132412@163.com。
通信作者:向昌国,博士,教授,主要从事旅游生态和土壤生态研究。E-mail:changguox@aliyun.com。
更新日期/Last Update: 2019-02-05