[1]王彤,周晨霓,吴长龙.小麦农艺硒强化研究进展[J].黑龙江农业科学,2022,(03):87-92,107.[doi:10.11942/j.issn1002-2767.2022.03.0087]
 WANG Tong,ZHOU Chen-ni,WU Chang-long.Research Progress of Selenium Enhancement in Wheat Agronomy[J].HEILONGJIANG AGRICULTURAL SCIENCES,2022,(03):87-92,107.[doi:10.11942/j.issn1002-2767.2022.03.0087]
点击复制

小麦农艺硒强化研究进展

参考文献/References:

参考文献:

[1]刘杨,吴如德.微量元素硒的概况研究[J].生物技术世界,2014 (11):85-87.

[2]LZQUIERDO A,CASAS C,HERRERO E.Selenite-induced cell death in Saccharomyces cerevisiae:Nprotective role of glutaredoxins[J].Microbioly,2010,156(9):2608-2620.[3]ROMAN M,JITARU P,BARBANTE C.Selenium biochemistry and its role for human health[J].Metallomics,2014(6):25-54.

[4]MEHDI Y,HORNICK J L,ISTASSE L,et al.Selenium in the environment,metabolism and involvement in body functions[J].Molecules,2013,18(3):3292-3311.

[5]EL-RAMADY H,ABDALLA N,ALSHAAL T,et al.Selenium in soils under climate change,implication for human health[J].Environmental Chemistry Letters,2015,13(1):1-19.

[6]XU Z C,SHAO H F,LI S,et al.Relationships between the selenium content in flflue-cured tobacco leaves and the selenium content in soil in Enshi,China tobacco growing area[J].Pakistan Journal of Botany,2012,44(5):1563-1568.

[7]YAO Y F,PEI F X,KANG P D.Selenium,iodine,and the relation with Kashin-Beck disease[J].Nutrition,2011,27(11-12):1095-1100.

[8]CHEN J S.An original discovery:Selenium defificiency and Keshan disease (an endemic heart disease)[J].Asia Pacific Journal of Clinical Nutrition,2012,21(3):320-326.

[9]LI S H,XIAO T,ZHENG B.Medical geology of arsenic,selenium and thallium in China[J].Science of the Total Environment,2012,421-422(1):31-40.

[10]PANCHAL S K,WANYONYI S,BROWN L.Selenium,vanadium,and chromium as micronutrients to improve metabolic syndrome[J].Current Hypertension Reports,2017,19(3):10.[11]World Health Organization.Vitamin and mineral requirements in human nutrition[M].World Health Organization,2004.

[12]KIKKERT J,BERKELAAR E.Plant uptake and translocation of inorganic and organic forms of selenium[J].Archives of Environmental Contamination and Toxicology,2013,65(3):458-465.

[13]DOS SANTOS M,DA SILVA JUNIOR F M R,MUCCILLO-BAISCH A L.Selenium content of Brazilian foods:a review of the literature values[J].Journal of Food Composition and Analysis,2017,58:10-15.

[14]王凯,卢维宏,张乃明,等.土壤作物系统中的硒与人体健康[J].肥料与健康,2020,47(1):5-10,69.

[15]WANG J,LI H R,YANG L S,et al.Distribution and translocation of selenium from soil to highland barley in the Tibetan Plateau Kashin-Beck disease area[J].Environmental Geochemistry and Health,2017,39(1):221-229.

[16]王权,李秀霞,李伦,等.硒与大骨节病相关性的Meta分析[J].中国循证医学杂志,2013,13(12):1421-1430.

[17]刘慧,杨月娥,王朝辉,等.中国不同麦区小麦籽粒硒的含量及调控[J].中国农业科学,2016,49(9):1715-1728.

[18]BROADLEY M R,ALCOCK J,ALFORD J,et al.Selenium biofortification of high-yielding winter wheat(Triticum aestivum L.) by liquid or granular Se fertilisation[J].Plant and Soil,2010,332(1):5-18.

[19]SARWAR N,AKHTAR M,KAMRAN M A,et al.Selenium biofortification in food crops:Key mechanisms and future perspectives[J].Journal of Food Composition and Analysis,2020,93:103615.

[20]SCHIAVON M,NARDI S,DALLA VECCHIA F,et al.Selenium biofortification in the 21st century:Status and challenges for healthy human nutrition[J].Plant and Soil,2020,453(1-2):245-270.

[21]MEHDI Y,HORNICK J L,ISTASSE L,et al.Selenium in the environment,metabolism and involvement in body functions[J].Molecules,2013,18:3292-3311.

[22]TERRY N,ZAYED A M,SOUZA M,et al.Selenium in higher plants[J].Annual Review of Plant Physiology and Plant Molecular Biology,2000,51:401-432.

[23]ZHAO C,REN J,XUE C,et al.Study on the relationship between soil selenium and plant selenium uptake[J].Plant and Soil,2005,277(1):197-206.

[24]仲娜,王小如,陈登云.有机硒的研究迚展[J].中国药事,2007(4):268-271.

[25]张艳玱,潘根兴,李正文.土壤-植物系统中硒的迁移转化及低硒地区食物链中硒的调节[J].土壤与环境,2002(4):388-391.

[26]王琪.水稻和小麦对有机硒的吸收、转运及形态转化机制[D].北京:中国农业大学,2017.

[27]黄思思,余侃,饶登峰,等.生物有机硒对小麦产量及硒含量的影响[J].食品科技,2020,45(10):19-26.

[28]HART D J,FAIRWEATHER-TAIT S J,BROADLEY M R,et al.Selenium concentration and speciation in biofortifified flflour and bread:Retention of selenium during grain biofortifification,processing and production of Se-enriched food[J].Food Chemistry,2011,126(4):1771-1778.

[29]LYONS G.Biofortification of cereals with foliar selenium and iodine could reduce hypothyroidism[J].Frontiers in Plant Science,2018,9:1-8.

[30]EICH-GREATOREX S,SOGN T A,GAARD A F,et al.Plant availability of inorganic and organic selenium fertiliser as inflfluenced by soil organic matter content and pH[J].Nutrient Cycling in Agroecosystems,2007,79:221-231.

[31]IZYDORCZYK G,LIGAS B,MIKULA K,et al.Biofortification of edible plants with selenium and iodine-A systematic literature review[J].Science of The Total Environment,2020,754:141983.

[32]LI H F,MCGRATH S P,ZHAO F J.Selenium uptake,translocation and speciation in wheat supplied with selenate or selenite[J].The New Phytologist,2008,178(1):92-102.

[33]ZHANG D,ZHANG N,HOU Z,et al.Effects of different application methods of selenite and selenate on selenium distribution within wheat[J].Journal of Plant Nutrition,2018,41(20):2729-2740.

[34]LIDON F C,OLIVEIRA K,RIBEIRO M M.et al.Selenium biofortification of rice grains and implications on macronutrients quality[J].Journal of Cereal Science,2018,81:22-29.[35]MRQUEZ V G,MORENO  M,MENDOZA A B,et al.Ionic selenium and nanoselenium as biofortifiers and stimulators of plant metabolism[J].Agronomy,2020,10(9):1399.[36]KUMAR A,PRASAD K S.Role of nano-selenium in health and environment[J].Journal of Biotechnology,2020,325:152-163.

[37]李韬,孙发宇,龚盼,等.施纳米硒对小麦籽粒硒含量及其品质性状的影响[J].植物营养与肥料学报,2017,23(2):427-433.

[38]于丽敏,薛艳芳,高华鑫,等.小麦富硒研究进展[J].山东农业科学,2015,47(6):137-144.

[39]PEZZAROSSA B,REMORINI D,GENTILE M L,et al.Effects of foliar and fruit addition of sodium selenate on selenium accumulation and fruit quality[J].Journal of the Science of Food and Agriculture,2012,92(4):781-786.

[40]WINKEL L H,VRIENS B,JONES G D,et al.Selenium cycling across soil-plant-atmosphere interfaces:A critical review[J].Nutrients,2015,7(6):4199-4239.

[41]NAWAZ F,ASHRAF M Y,AHMAD R,et al.Supplemental selenium improves wheat grain yield and quality through alterations in biochemical processes under normal and water deficit conditions[J].Food Chemistry,2015,175:350-357.

[42]杨浩,刘东,严俊,等.施硒方式对不同类型品种(系)小麦籽粒硒利用效率的影响[J].种子,2021,40(4):1-5.

[43]RADAWIEC A,SZULC W,RUTKOWSKA B.Selenium biofortification of wheat as a strategy to improve human nutrition[J].Agriculture,2021,11(2):144.

[44]税杨,杨文平,夏清,等.施硒肥方式对强筋小麦产量、硒累积分配及籽粒营养品质的影响[J].应用与环境生物学报,2021,27(1):112-120.

[45]胡振瀛.硒强化对糙米营养组分的影响及其含硒蛋白磷酸化改性应用[D].南昌:南昌大学,2019.

[46]唐玉霞,王慧敏,吕英华,等.硒肥浸种对小麦生长发育及产量和籽粒含硒量的影响[J].麦类作物学报,2010,30(4):731-34.

[47]林匡飞,徐小清,郑利,等.Se对小麦种子发芽与根伸长抑制的生态毒理效应[J].农业环境科学学报,2004,23(5):885-889.

[48]邵志慧,林匡飞,徐小清,等.硒对小麦和水稻种子萌发的生态毒理效应的比较研究[J].生态学杂志,2005,24(12):1440-1443.

[49]缪树寅.不同品种小麦硒的耐受性差异及其动态吸收,转运规律研究[D].杨凌:西北农林科技大学,2013.

[50]ISLAM M Z,PARK B J,KANG H M,et al.Influence of selenium biofortification on the bioactive compounds and antioxidant activity of wheat microgreen extract[J].Food Chemistry,2020,309:125763.

[51]宋家永,张万业,王永华,等.小麦富硒生产技术研究[J].中国农学通报,2005,5(21):197-199.

[52]唐玉霞,王慧敏,吕英华,等.冬小麦硒素吸收积累特性及叶面喷硒效应的研究[J].华北农学报,2005,25(S):198-201.

[53]唐玉霞,王慧敏,刘巧玲,等.河北省麦田土壤硒的含量、 形态及其有效性研究[J].华北农学报,2010,25(21):194-197.

[54]史芹,高新楼.不同时期喷施富硒液肥对小麦籽粒硒含量及产量的影响[J].山地农业生物学报,2011,30(6):562-564.

[55]彭涛,赵伟峰,张庆社,等.富硒营养液对不同冬小麦品种产量及籽粒硒含量的影响[J].安徽农业科学,2015,43(21):75-76.

[56]周勋波,王海英,谢甫绨,等.硒在农作物上应用研究进展概况[J].辽宁农业科学,2002(1):36-38.

[57]马玉霞,杨胜利,赵淑章.强筋小麦富硒技术研究初报[J].河南职业技术师范学院学报,2004,32(3):9-10.

[58]董石峰,孙敏,赵剑敏,等.花期喷施亚硒酸钠对小麦生长特性及硒积累的影响[J].山西农业大学学报(自然科学版),2019,39(6):13-18.

[59]ZHU Y G,PILON-SMITS E H,ZHAO F J,et al.Selenium in higher plants:Understanding mechanisms for biofortification and phytoremediation[J].Trends in Plant Science,2009,14(8):436-442.

[60]李韬,兰国防.植物硒代谢机理及其以小麦为载体进行补硒的策略[J].麦类作物学报,2012,32(1):173-177.

[61]邢丹英,金明珠,阎忠武,等.富硒矿粉对不同小麦品种(系)富硒效应的初步研究[J].安徽农业科学,2006,34(4):726-727.

[62]朱玲.不同品种小麦中硒含量的测定及其与生长土壤中硒水平的相关性研究[D].郑州:河南农业大学,2007.

[63]孙发宇,李长成,王安,等.叶面喷施硒酸钠对不同小麦品种(系)籽粒硒及其他矿质元素含量的影响[J].麦类作物学报,2017,37(4):559-564.

[64]孙发宇,陈欣,马启闯,等.长江中下游地区主推小麦品种的硒强化潜力研究[J].中国农业科技导报,2018,20(5):83-90.

[65]DUNGAN R,YATES S,FRANKENBERGER W.Transformations of selenate and selenite by Stenotrophomonas maltophilia isolated from a seleniferous agricultural drainage pond sediment[J].Environmental Microbiology,2003,5(4):287-295.

[66]ACUA J,JORQUERA M,BARRA P,et al.Selenobacteria selected from the rhizosphere as a potential tool for Se biofortifification of cereal crop[J].Biology and Fertility of Soils,2013,49:175-185.

[67]BAREA J M,POZO M J,AZCN R,et al.Microbial co-operation in the rhizosphere[J].Journal Experimental Botany,2005,56:1761-1778.

[68]DURN P,ACUA J J,JORQUERA M A,et al.Enhanced selenium content in wheat grain by co-inoculation of selenobacteria and arbuscular mycorrhizal fungi:A preliminary study as a potential Se biofortification strategy[J].Journal of Cereal Science,2013,57(3):275-280.

[69]LUO W,LI J,MA X,et al.Effect of arbuscular mycorrhizal fungi on uptake of selenate,selenite,and selenomethionine by roots of winter wheat[J].Plant and Soil,2019,438(1-2):71-83.

[70]秦海波,朱建明,李社红,等.环境中硒形态分析方法的研究进展[J].矿物岩石地球化学通报,2008,27(2):180-187.

[71]蒋步云,柴振林,朱杰丽,等.富硒产品的开发利用及研究现状[J].江苏农业科学,2012,40(11):446-448.

相似文献/References:

[1]宋维富,肖志敏.小麦阶段发育理论研究与应用[J].黑龙江农业科学,2013,(02):1.
 SONG Wei-fu,XIAO Zhi-min.Study and Application of Wheat Phasic Development[J].HEILONGJIANG AGRICULTURAL SCIENCES,2013,(03):1.
[2]孙岩,张宏纪,王广金,等.航天处理对小麦组织培养效果的研究[J].黑龙江农业科学,2014,(11):1.
 SUN Yan,ZHANG Hong-ji,WANG Guang-jin,et al.Study on the Effect of Space Treatment on Wheat Tissue Culture[J].HEILONGJIANG AGRICULTURAL SCIENCES,2014,(03):1.
[3]张宏纪,刘东军,孙 岩,等.高亲和铵转运因子在春小麦中的遗传转化研究[J].黑龙江农业科学,2014,(06):1.
 ZHANG Hongji,LIU Dong-jun,SUN Yan,et al.Wheat Transformation with High affinity NH+4 Transporter Gene by Particle Bombardment Method[J].HEILONGJIANG AGRICULTURAL SCIENCES,2014,(03):1.
[4]孙岩,张宏纪,辛文利,等.苗期镇压与矮壮素结合处理对小麦生育及其基部节生长的影响[J].黑龙江农业科学,2013,(02):14.
 SUN Yan,ZHANG Hong-ji,XIN Wen-li,et al.Influence of Rolling and Spraying TUR at Seedling Stage on Growth Period and Growth of Base Stem for Wheat[J].HEILONGJIANG AGRICULTURAL SCIENCES,2013,(03):14.
[5]丁琦,张延滨,李集临,等.穗发芽小麦面团流变学特性动态研究初探[J].黑龙江农业科学,2012,(05):1.
 DING Qi,ZHANG Yan-bin,LI Ji-lin,et al.Preliminary Study on Dynamic Change of Dough Rheological Properties of Pre-harvest Sprouting Wheat[J].HEILONGJIANG AGRICULTURAL SCIENCES,2012,(03):1.
[6]张欣欣,张延滨,赵海滨,等.黑龙江省小麦品种HMW-GS的RP-HPLC分析及其方法研究[J].黑龙江农业科学,2013,(05):1.
 ZHANG Xin-xin,ZHANG Yan-bin,ZHAO Hai-bin,et al.Study on RP-HPLC Analysis on HMW-GS Wheat Cultivars in Heilongjiang Province and Its Method[J].HEILONGJIANG AGRICULTURAL SCIENCES,2013,(03):1.
[7]徐松杰,郑根昌.不同灌水模式对小麦产量和品质的影响[J].黑龙江农业科学,2013,(05):8.
 XU Song-jie,ZHENG Gen-chang.Influence of Different Irrigation Modes on the Yield and Quality of the Wheat[J].HEILONGJIANG AGRICULTURAL SCIENCES,2013,(03):8.
[8]丁海燕,张利敏,郑茂波,等.应用小麦-黑麦代换系间杂交培育小麦新品种探讨[J].黑龙江农业科学,2011,(04):4.
 DING Hai-yan,ZHANG Li-min,ZHENG Mao-bo,et al.Study on Breeding High Yield Wheat by the Hybridization of Two Different Wheat-Rye Substitution Lines[J].HEILONGJIANG AGRICULTURAL SCIENCES,2011,(03):4.
[9]刘东军,张宏纪,郭长虹,等.小麦春化突变系T128的获得及变异分析[J].黑龙江农业科学,2013,(07):1.
 LIU Dong-jun,ZHANG Hong-ji,GUO Chang-hong,et al.Obtaining and Variation Analysis of Vernalization Mutant Line T128 of Wheat[J].HEILONGJIANG AGRICULTURAL SCIENCES,2013,(03):1.
[10]姜焕焕,张延滨,李集临,等.龙麦19 Glu-D1位点近等基因系5+10供体品种醇溶蛋白块鉴定[J].黑龙江农业科学,2011,(05):1.
 JIANG Huan-huan,ZHANG Yan-bin,LI Ji-lin,et al.Identification of Gliadin Block from Donor Variety ofHMW-GS 5+10 in NILs of Longmai 19 at Glu-D1 Loci[J].HEILONGJIANG AGRICULTURAL SCIENCES,2011,(03):1.

备注/Memo

收稿日期:2021-12-15

基金项目:国家自然科学基金项目(31960256)。

第一作者:王彤(1996-),女,硕士研究生,从事农业生态学研究。E-mail:986553915@qq.com。

通信作者:周晨霓(1984-),女,硕士,副教授,从事农业生态学研究与教学工作。E-mail:chenni2018@126.com。

更新日期/Last Update: 2022-06-04