3种盐生植物对盐渍响应及利用的研究进展
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Research Progress on Response and Utilization to Salinity in Three Different Halophytes
  • 作者:敖雁 ; 吴启
  • 英文作者:AO Yan;WU Qi;Suzhou Chien-shiung Institute of Technology;Institute of Soil Sciences, CAS;
  • 关键词:盐生植物 ; 耐盐性 ; 盐渍响应 ; 利用
  • 英文关键词:Halophytes;;Salt tolerance;;Salinity response;;Utilization
  • 中文刊名:安徽农业科学
  • 英文刊名:Journal of Anhui Agricultural Sciences
  • 机构:苏州健雄职业技术学院;中国科学院南京土壤研究所;
  • 出版日期:2019-03-14 16:03
  • 出版单位:安徽农业科学
  • 年:2019
  • 期:04
  • 基金:2016年江苏高校‘青蓝工程’(中青年学术带头人)资助项目
  • 语种:中文;
  • 页:48-53
  • 页数:6
  • CN:34-1076/S
  • ISSN:0517-6611
  • 分类号:Q945
摘要
海蓬子(S.bigelovii)、碱蓬(S.glauca)和三角叶滨藜(A.triangularis)都为具耐盐碱等特点的盐生植物,且对盐渍土有很好的生物修复功能。为了阐述3种不同类型的盐生植物对盐渍响应的生理机制的异同,从评价植物耐盐性的生长发育、光合特性、色素含量及离子含量和吸收等相关指标出发,综述了这3种盐生植物对盐渍的响应及利用的研究进展,揭示其不同的耐盐机制,为海水蔬菜开发、推进盐土农业可持续发展等提供必要的理论依据。
        S. bigelovii,S. glauca and A. triangularis are halophytes with salt and alkali resistance, and they have a good function to saline soil in bioremediation. In order to elucidate the similarities and differences in physiological mechanisms of three different halophytes in response to salt stress, the index of growth, photosynthetic characteristics, pigment content and ion content or absorption were evaluated. The progress on response and utilization to salinity in three halophytes was reviewed to further reveal the different salt-tolerance mechanisms and then provide the necessary theoretical basis for the development of sea-water vegetables and the sustainable agricultural development of saline soil.
引文
[1] WANG W X,VINOCUR B,ALTMAN A.Plant responses to drought,salinity and extreme temperatures:Towards genetic engineering for stress tolerance[J].Planta,2003,218(1):1-14.
    [2] 韩东洺,张喜洋,庞秋颖,等.萌芽菊芋块茎对盐碱土壤胁迫的生理响应[J].生态学报,2017,37(4):1244-1251.
    [3] 彭斌,许伟,邵荣,等.盐胁迫对不同生境种源盐地碱蓬幼苗生长、光合色素及渗透调节物质的影响[J].海洋湖沼通报,2017(1):63-72.
    [4] 赵可夫.盐生植物[J].植物学通报,1997,14(4):1-12.
    [5] 彭益全.盐处理下三种海水蔬菜对氮磷营养盐的生理响应及其品质变化特征研究[D].南京:南京农业大学,2013.
    [6] 段代祥.海蓬子抗盐性研究进展[J].安徽农业科学,2009,37(23):10982-10983.
    [7] 张达,孙旭东,陈彦民,等.碱蓬的经济价值与碱土种植[J].农场经济管理,2016(11):32-33.
    [8] 李伟强,刘小京,赵可夫,等.NaCl胁迫下3种盐生植物生长发育及离子在不同器官分布特性研究[J].中国生态农业学报,2006,14(2):49-52.
    [9] 邹桂梅,苏德荣,黄明勇,等.人工种植盐地碱蓬改良吹填土的试验研究[J].草业科学,2010,27(4):51-56.
    [10] 李超峰,葛宝明,姜森颢,等.碱蓬对盐碱及污染土壤生物修复的研究进展[J].土壤通报,2014,45(4):1014-1019.
    [11] 王宇超.三种木本滨藜植物抗逆生理特性研究[D].杨凌:西北农林科技大学,2007.
    [12] DAYTON W A.Range plant handbook[M].Washington:Forest Service,US Gov Printing Office,1937.
    [13] 王丽燕.毕氏海蓬子耐盐基础生理的研究[D].济南:山东师范大学,2003.
    [14] 王茂文,洪立洲,刘冲,等.NaCl胁迫对北美海蓬子生长和品质的影响[J].江西农业学报,2010,22(3):72-74.
    [15] 周泉澄,华春,张玉飞,等.海水对毕氏海蓬子(Salicornia bigelovii Torr.)种子萌发及幼苗生长的影响[J].南京晓庄学院学报,2006,11(6):48-52.
    [16] OHORI T,FUJIYAMA H.Water deficit and abscisic acid production of Salicornia bigelovii under salinity stress[J].Soil science and plant nutrition,2011,57(4):566-572.
    [17] SANTHANAKRISHNAN D,PERUMAL R K,KANTH S V,et al.Studies on the physiological and biochemical characteristics of Salicornia brachiata:Influence of saline stress due to soaking wastewater of tannery[J].Desalination and water treatment,2014,52(31/32/33):6022-6029.
    [18] 刘伟成,郑春芳,陈琛,等.花期海蓬子对盐胁迫的生理响应[J].生态学报,2013,33(17):5184-5193.
    [19] 顾寅钰,衣葵花,肖连明,等.盐地碱蓬生理特性及栽培研究进展[J].现代农业科技,2016(24):75-76,79.
    [20] PARIDA A K,HARI KISHORE C M,JHA B.Growth,ion homeostasis,photosynthesis and photosystem II efficiency of an obligate halophyte,Salicornia brachiata,under increasing salinity[J].Plant biology,2010,13(1):224-232.
    [21] 郭建荣,郑聪聪,李艳迪,等.NaCl处理对真盐生植物盐地碱蓬根系特征及活力的影响[J].植物生理学报,2017,53(1):63-70.
    [22] UNGAR I A.Proceedings-symposium on the biology of Atriplex and related chenopods[M].Minnesota:Minnesota University Press,1983.
    [23] 张秋芳.盐胁迫对盐生植物叶片SOD及光合特性的效应[D].济南:山东师范大学,2002.
    [24] 王文慧,张全星,刘婧,等.盐处理对碱蓬生长及叶绿体超微结构的影响[J].安徽农业科学,2013,41(23):9531-9533.
    [25] 张新华,郭胜安,周全良.四翅滨藜耐盐性试验[J].宁夏农林科技,2005(5):3-4.
    [26] 苗莉云,张鹏.NaCl和Na2SO4胁迫对盐地碱蓬幼苗生理特征的影响[J].北方园艺,2013(3):67-70.
    [27] LV S L,NIE L L,FAN P X,et al.Sodium plays a more important role than potassium and chloride in growth of Salicornia europaea[J].Acta physiologiae plantarum,2012,34(2):503-513.
    [28] MORI S,SUZUKI K,ODA R,et al.Characteristics of Na+ and K+ absorption in Suaeda salsa(L.)Pall.[J].Soil science and plant nutrition,2011,57(3):377-386.
    [29] AJMAL KHAN M,UNGAR I A,SHOWALTER A M.The effect of salinity on the growth,water status,andion content of a leaf succulent perennial halophyte,Suaeda fruticosa(L.)Forssk[J].Journal of arid environments,2000,45(1):73-84.
    [30] 李艳萍,卓微伟,王宁.盐地碱蓬耐盐菌研究应用进展[J].食品研究与开发,2015,36(24):188-190.
    [31] KONG Y,ZHENG Y.Variation of sodium uptake rate in Suaeda glauca(Bunge)and its relation to plant size and salt acclimation[J].Canadian journal of plant science,2017,97(3):466-473.
    [32] 胡文杰,李跃进,刘洪波,等.土默川平原土壤盐渍化与盐生植物分布及盐分离子特征的研究[J].干旱区资源与环境,2012,26(4):127-131.
    [33] 邹日,柏新富,朱建军.盐胁迫对三角叶滨藜根选择透性和反射系数的影响[J].应用生态学报,2010,21(9):2223-2227.
    [34] 祁通,孙阳讯,黄建,等.两种盐生植物在南北疆地区的适生性及吸盐能力[J].中国土壤与肥料,2017(1):144-148.
    [35] 王素平,郭世荣,李璟,等.盐胁迫对黄瓜幼苗根系生长和水分利用的影响[J].应用生态学报,2006,17(10):1883-1888.
    [36] 张振华,严少华,胡永红.覆盖对滨海盐化土水盐运动和大麦产量影响的研究[J].土壤通报,1996,27(3):136-138.
    [37] 周嘉倩,魏月,苑宁,等.我国盐地碱蓬的研究现状及展望[J].农产品加工,2017(15):61-64,67.
    [38] RUMBAUGH M D,JOHNSON D,VAN EPPS G A.Forage yield and quality in a Great Basin shrub grass and legume Pasture experiment[J].Journal of range management,1982,35(5):604-609.
    [39] 卜庆梅,柏新富,朱建军,等.盐胁迫条件下三角滨藜叶片中盐分的积累与分配[J].应用与环境生物学报,2007,13(2):192-195.
    [40] 王凯,尹金来,周春霖,等.耐盐蔬菜三角叶滨藜的引种和栽培研究[J].江苏农业科学,2001(4):57-59.
    [41] 柏新富,朱建军,张萍,等.不同光照强度下三角叶滨藜光合作用对盐激胁迫的响应[J].西北植物学报,2008,28(9):1823-1829.
    [42] 王艳华,王爱云,柏新富.盐胁迫对三角滨藜种子萌发和幼苗生长的影响[J].烟台师范学院学报(自然科学版),2005,21(4):290-292.
    [43] 杨佳,李锡成,王趁义,等.利用海蓬子和碱蓬修复滨海湿地污染研究进展[J].湿地科学,2015,13(4):518-522.
    [44] KANNAN P R,SWARNA V K,CHSANDRASEKARAN B,et al.Phytoremediation of tanery waste water treated lands:Part 1:Accumulation of Na+ and Cl- in Salicornia brachiata[J].Journal of the society of leather technologists and chemists,2009,93(6):233-239.
    [45] SONG J,WANG B S.Using euhalophytes to understand salt tolerance and to develop saline agriculture:Suaeda salsa as a promising model[J].Annals of botany,2015,115(3):541-553.
    [46] 杨亚洲.碱蓬和滨藜对镉吸收分配及其模型拟合研究[D].南京:南京农业大学,2015.
    [47] 张大栋,周春霖,任丽娟,等.海蓬子DnaJ-like基因片段的表达和生物信息学分析[J].江苏农业学报,2006,22(3):222-224.
    [48] 何晓兰.三角叶滨藜甜菜碱醛脱氢酶(BADH)基因的克隆[D].南京:南京农业大学,2003.
    [49] 朱仲佳,曾兴,刘励蔚,等.转异苞滨藜BADH基因玉米高世代株系苗期外源基因表达及耐盐性功能分析[J].玉米科学,2016,24(3):36-41.
    [50] 化烨,才华,柏锡,等.植物耐盐基因工程研究进展[J].东北农业大学学报,2010,41(10):150-156.
    [51] ASKARI H,EDQVIST J,HAJHEIDARI M,et al.Effects of salinity levels on proteome of Suaeda aegyptiaca leaves[J].Proteomics,2010,6(8):2542-2554.
    [52] QI C H,MIN C,JIE S,et al.Increase in aquaporin activity is involved in leaf succulence of the euhalophyte Suaeda salsa, under salinity[J].Plant science,2009,176(2):200-205.
    [53] WANG B S,LüTTGE U,RATAJCZA R.Effects of salt treatment and osmotic stress on V-ATPase and V-PPase in leaves of the halophyte Suaeda salsa[J].Journal of experimental botany,2001,52(365):2355-2365.
    [54] QIU N W,CHEN M,GUO J R,et al.Coordinate up-regulation of V-H+-ATPase and vacuolar Na+/H+ antiporter as a response to NaCl treatment in a C3 halophyte Suaeda salsa[J].Plant science,2007,172(6):1218-1225.
    [55] 李平华,王增兰,张慧,等.盐地碱蓬叶片液泡膜H+-ATPase B亚基的克隆及盐胁迫下表达分析[J].植物学报,2004,46(1):93-99.
    [56] WU H F,LIU X L,YOU L P,et al.Effects of salinity on metabolic profiles,gene expressions,and antioxidant enzymes in halophyte Suaeda salsa[J].Journal of plant growth regulation,2012,31(3):332-341.
    [57] YANG C W,SHI D C,WANG D L.Comparative effects of salt and alkali stresses on growth,osmotic adjustment and ionic balance of an alkali-resistant halophyte Suaeda glauca(Bge.)[J].Plant growth regulation,2008,56(2):179-190.
    [58] 金杭霞,董德坤,杨清华,等.碱蓬PEAMT基因的克隆及表达分析[J].中国农学通报,2015,31(9):178-183.
    [59] GUAN B,YU J B,WANG X H,et al.Physiological responses of halophyte Suaeda salsa,to water table and salt stresses in coastal wetland of Yellow River Delta[J].Acta hydrochimica et hydrobiologica,2011,39(12):1029-1035.
    [60] MALLIK S,NAYAK M,SAHU B B,et al.Response of antioxidant enzymes to high NaCl concentration in different salt-tolerant plants[J].Biologia plantarum,2011,55(1):191-195.
    [61] WANG F,ZHONG N Q,GAO P,et al.SsTypA1,a chloroplast-specific TypA/BipA-type GTPase from the halophytic plant Suaeda salsa,plays a role in oxidative stress tolerance[J].Plant cell & environment,2010,31(7):982-994.
    [62] 杨少辉,季静,王罡.盐胁迫对植物的影响及植物的抗盐机理[J].世界科技研究与发展,2006,28(4):70-76.
    [63] 王丽燕,赵可夫.NaCl胁迫对海蓬子(Salicornia bigelovii Torr.)离子区室化、光合作用和生长的影响[J].植物生理与分子生物学学报,2004,30(1):94-98.
    [64] 赵可夫,李法曾.中国盐生植物[M].北京:科学出版社,1999.
    [65] 綦翠华,韩宁,王宝山.不同盐处理对盐地碱蓬幼苗肉质化的影响[J].植物学报,2005,22(2):175-182.
    [66] 叶妙水.北美海蓬子耐盐相关基因的克隆与分析[D].儋州:华南热带农业大学,2006.
    [67] 高媛媛,张保龙,杨郁文,等.海蓬子中高亲和钾离子转运体SbHKT1基因的克隆、表达及生物信息学分析[J].基因组学与应用生物学,2010,29(4):646-652.
    [68] 朱天艺,龚一富,刘增美,等.转北美海蓬子胆碱单加氧酶基因(cmo)烟草的获得及耐盐性鉴定[J].农业生物技术学报,2015,23(10):1310-1317.
    [69] HAN H P,LI Y X,ZHOU S F.Overexpression of phytoene synthase gene from Salicornia europaea alters response to reactive oxygen species under salt stress in transgenic Arabidopsis[J].Biotechnology letters,2008,30(8):1501-1507.
    [70] AGHALEH M,NIKNAM V,EBRAHIMZADEH H,et al.Effect of salt stress on physiological and antioxidative responses in two species of Salicornia(S.persica and S.europaea)[J].Acta physiologiae plantarum,2011,33(4):1261-1270.