|本期目录/Table of Contents|

[1]郭远,王文成,徐颖莹,等.河北省农林科学院滨海农业研究所,河北唐山 063299[J].江苏农业科学,2017,45(23):18-23.
 Guo Yuan,et al.Evaluation methods of plant salt tolerance: a review[J].Jiangsu Agricultural Sciences,2017,45(23):18-23.
点击复制

河北省农林科学院滨海农业研究所,河北唐山 063299(PDF)
分享到:

《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第45卷
期数:
2017年23期
页码:
18-23
栏目:
专论与综述
出版日期:
2017-12-05

文章信息/Info

Title:
Evaluation methods of plant salt tolerance: a review
作者:
郭远王文成徐颖莹孙宇郭艳超胡爱双李欣明
植物耐盐评价方法综述
Author(s):
Guo Yuanet al
关键词:
盐胁迫耐盐机制耐盐指标耐盐评价植物修复盐碱地
Keywords:
-
分类号:
Q945.78
DOI:
-
文献标志码:
A
摘要:
盐碱地的植被修复一直是一个较难攻克的科学问题。植物的引种驯化及其改良在盐碱地的开发利用中发挥着重要的作用,而这依赖于适生植物的耐盐性评价和筛选。由于不同的耐盐植物遗传基础差异较大,主要抗盐机制各异,至今未形成一个权威的耐盐性评价体系,从而造成了一些耐盐鉴定结果的不科学性,制约着盐生植物的应用和耐盐新品种的开发。因此,以植物的遗传差异为基础,建立一个系统的植物耐盐性评价方法势在必行。综述以植物耐盐生理指标和表型盐胁迫症状指标为基础的植物耐盐性评价的研究进展,探讨耐盐性鉴定标准建立中的核心问题,并展望一些可能用于植物耐盐性评价的新技术,以期加快相关标准的形成。
Abstract:
-

参考文献/References:

[1]Zhu J K. Plant salt tolerance[J]. Trends in Plant Science,2001,6(2):66-71.
[2]赵可夫,范海. 盐生植物及其对盐渍生境的适应生理[M]. 北京:科学出版社,2005:1-5.
[3]宋丹,张华新,白淑兰,等. 植物耐盐种质资源评价及滨海盐碱地引种研究与展望[J]. 内蒙古林业科技,2006(1):37-38.
[4]Wallender W W,Tanji K K. Agricultural salinity assessment and management[M]. 2nd ed. New York:American Society of Civil Engineers,1990:405-409.
[5]陈托兄,王铁梅,卢欣石. 紫花苜蓿非秋眠型标准品种种子萌发期耐盐性评价[J]. 草业科学,2011,28(1):121-126.
[6]Van der Moezel P G,Pearce-Pinto G V,Bell D T. Screening for salt and waterlogging tolerance in eucalyptus and Melaleuca species[J]. Forest Ecology and Management,1991,40(1/2):27-37.
[7]Morris J D,Bickford R G,Collopy J J. Tree and shrub performance and soil conditions in a plantation irrigated with saline groundwater[M]. Victoria:Forest Research and Development Branch,Department of Conservation and Natural Resources,1994.
[8]Ashraf M. Some important physiological selection criteria for salt tolerance in plants[J]. Flora-Morphology,Distribution,Functional Ecology of Plants,2004,199(5):361-376.
[9]景璐. 8种园林花卉植物耐盐性基础研究[D]. 呼和浩特:内蒙古农业大学,2010.
[10]裘丽珍,黄有军,黄坚钦,等. 不同耐盐性植物在盐胁迫下的生长与生理特性比较研究[J]. 浙江大学学报(农业与生命科学版),2006,32(4):420-427.
[11]张风娟,陈凤新,徐兴友,等. 河北省昌黎县黄金海岸几种单子叶植物叶耐盐碱结构的研究[J]. 草业科学,2006,23(9),19-23.
[12]谢小丁,邵秋玲,李扬. 九种耐盐植物在滨海盐碱地的耐盐能力试验[J]. 湖北农业科学,2007,46(4):559-561.
[13]张玲菊,黄胜利,周纪明,等. 常见绿化造林树种盐胁迫下形态变化及耐盐树种筛选[J]. 江西农业大学学报,2008,30(5):833-838.
[14]Kishor P B K,Sangam S,Amrutha R N,et al. Regulation of proline biosynthesis,degradation,uptake and transport in higher plants:its implications in plant growth and abiotic stress tolerance[J]. Current Science,2005,88(3):424-438.
[15]Silveira J A G,de Almeida Viégas R,da Rocha I M A,et al. Proline accumulation and glutamine synthetase activity are increased by salt-induced proteolysis in cashew leaves[J]. Journal of Plant Physiology,2003,160(2):115-123.
[16]Zhu J K. Regulation of ion homeostasis under salt stress[J]. Current Opinion in Plant Biology,2003,6(5):441-445.
[17]Hossain Z,Mandal A K A,Datta S K,et al. Development of NaCl-tolerant line in Chrysanthemum morifolium Ramat. through shoot organogenesis of selected callus line[J]. Journal of Biotechnology,2007,129(4):658-667.
[18]Noctor G,Foyer C H. Ascorbate and glutathione:keeping active oxygen under control[J]. Annual Review of Plant Biology,1998,49(1):249-279.
[19]Türkan I,Demiral T. Recent developments in understanding salinity tolerance[J]. Environmental and Experimental Botany,2009,67(1):2-9.
[20]杨升. 滨海耐盐树种筛选及评价标准研究[D]. 北京:中国林业科学研究院,2010.
[21]王玉祥,刘静,乔来秋,等. 41个引种树种的耐盐性评定与选择[J]. 西北林学院学报,2004,19(4):55-58.
[22]徐化凌. 黄河三角洲地区耐盐木本植物引进试验研究[D]. 泰安:山东农业大学,2006.
[23]程广有,侯杰,唐晓杰,等. 3种枸杞耐盐碱性的比较[J]. 东北林业大学学报,2007,35(11):47-49.
[24]张士权,米文精,赵勇刚. 新疆杨、枸杞等耐盐碱树种叶绿素荧光特性分析[J]. 东北林业大学学报,2011,39(2):31-32,37.
[25]胡博然,徐文彪,张双灵,等. 枸杞抗羟脯氨酸细胞变异系筛选及其耐盐特性的研究[J]. 西北植物学报,2003,23(3):422-427.
[26]惠红霞,许兴,李守明. 宁夏干旱地区盐胁迫下枸杞光合生理特性及耐盐性研究[J]. 中国农学通报,2002,18(5):29-34.
[27]Niknam S R,McComb J. Salt tolerance screening of selected Australian woody species:a review[J]. Forest Ecology and Management,2000,139(1/2/3):1-19.
[28]Cockcroft C E,den Boer B G W,Healy J M S,et al. Cyclin D control of growth rate in plants[J]. Nature,2000,405(6786):575.
[29]West G,Inzé D,Beemster G T S. Cell cycle modulation in the response of the primary root of Arabidopsis to salt stress[J]. Plant Physiology,2004,135(2):1050-1058.
[30]Ueda A,Kanechi M,Uno Y,et al. Photosynthetic limitations of a halophyte sea aster (Aster tripolium L.) under water stress and NaCl stress[J]. Journal of Plant Research,2003,116(1):63-68.
[31]Taji T,Ohsumi C,Iuchi S,et al. Important roles of drought-and cold-inducible genes for galactinol synthase in stress tolerance in Arabidopsis thaliana[J]. The Plant Journal,2002,29(4):417-426.
[32]Vernon D M,Bohnert H J. A novel methyl transferase induced by osmotic stress in the facultative halophyte Mesembryanthemum crystallinum[J]. The EMBO Journal,1992,11(6):2077-2085.
[33]Ahmed I M,Nadira U A,Bibi N,et al. Secondary metabolism and antioxidants are involved in the tolerance to drought and salinity,separately and combined,in Tibetan wild barley[J]. Environmental and Experimental Botany,2015,111:1-12.
[34]Reddy P S,Jogeswar G,Rasineni G K,et al. Proline over-accumulation alleviates salt stress and protects photosynthetic and antioxidant enzyme activities in transgenic sorghum[Sorghum bicolor (L.) Moench][J]. Plant Physiology and Biochemistry,2015,94:104-113.
[35]靖姣姣,张颖,白志英,等. 盐胁迫对小麦代换系渗透调节物质的影响及染色体效应[J]. 植物遗传资源学报,2015,16(4):743-750.
[36]Qureshi T M,Bano A,Ashraf M Y. Glycine betaine and proline production in eucalyptus plant under NaCl harassing environment[J]. Nucleus,2015,52(2):88-97.
[37]Ochiai K,Matoh T. Mechanism of salt tolerance in the grass species,Anneurolepidium chinense:Ⅰ.growth response to salinity and osmotic adjustment[J]. Soil Science and Plant Nutrition,2001,47(3):579-585.
[38]张国伟,路海玲,张雷,等. 棉花萌发期和苗期耐盐性评价及耐盐指标筛选[J]. 应用生态学报,2011,22(8):2045-2053.
[39]Munis M F H,Tu L,Ziaf K,et al. Critical osmotic,ionic and physiological indicators of salinity tolerance in cotton (Gossypium hirsutum L.) for cultivar selection[J]. Pakistan Journal of Botany,2010,42(3):1685-1694.
[40]张俊莲,张国斌,王蒂. 向日葵耐盐性比较及耐盐生理指标选择[J]. 中国油料作物学报,2006,28(2):176-179.
[41]Katerji N,Van Hoorn J W,Hamdy A,et al. Salinity effect on crop development and yield,analysis of salt tolerance according to several classification methods[J]. Agricultural Water Management,2003,62(1):37-66.
[42]Bartels D,Sunkar R. Drought and salt tolerance in plants[J]. Critical Reviews in Plant Sciences,2005,24(1):23-58.
[43]An P,Inanaga S,Cohen Y,et al. Salt tolerance in two soybean cultivars[J]. Journal of Plant Nutrition,2002,25(3):407-423.
[44]Hasegawa P M,Bressan R A,Zhu J K,et al. Plant cellular and molecular responses to high salinity[J]. Annual Review of Plant Biology,2000,51(1):463-499.
[45]Maathuis F J M,Amtmann A. K+ nutrition and Na+ toxicity:the basis of cellular K+/Na+ ratios[J]. Annals of Botany,1999,84(2):123-133.
[46]Tavakkoli E,Fatehi F,Coventry S,et al. Additive effects of Na+ and Cl- ions on barley growth under salinity stress[J]. Journal of Experimental Botany,2011,62(6):2189-2203.
[47]Abel G H,MacKenzie A J. Salt tolerance of soybean varieties (Glycine max L. Merrill) during germination and later growth[J]. Crop Science,1964,4(2):157-161.
[48]Haq T U,Akhtar J,Haq A U,et al. Effect of soil salinity on the concentration of Na+,K+ and Cl- in the leaf sap of the four Brassica species[J]. International Journal of Agriculture and Biology,2002,4(3):385-388.
[49]Chaubey C N,Senadhira D. Conventional plant breeding for tolerance to problem soils[M]//Yeo A R,Flowers T J. Soil mineral stresse. Heidelberg:Springer,1994:11-36.
[50]刘寅. 天津滨海耐盐植物筛选及植物耐盐性评价指标研究[D]. 北京:北京林业大学,2011:22-59.
[51]王晓冬,王成,马智宏,等. 短期NaCl胁迫对不同小麦品种幼苗K+吸收和Na+、K+积累的影响[J]. 生态学报,2011,31(10):2822-2830.
[52]Baxter A,Mittler R,Suzuki N. ROS as key players in plant stress signaling[J]. Journal of Experimental Botany,2014,65(5):1229-1240.
[53]Apel K,Hirt H. Reactive oxygen species:metabolism,oxidative stress,and signal transduction[J]. Annual Review of Plant Biology,2004,55:373-399.
[54]Türkan,Bor M,zdemir F,et al. Differential responses of lipid peroxidation and antioxidants in the leaves of drought-tolerant P. acutifolius Gray and drought-sensitive P. vulgaris L. subjected to polyethylene glycol mediated water stress[J]. Plant Science,2005,168(1):223-231.
[55]Manzano C,Pallero M,Casimiro I,et al. The emerging role of ROS signalling during lateral root development[J]. Plant Physiology,2014,175(2):1105-1119.
[56]Swanson S,Gilroy S. ROS in plant development[J]. Physiologia Plantarum,2010,138(4):384-392.
[57]郭艳茹,詹亚光. 植物耐盐性生理生化指标的综合评价[J]. 黑龙江农业科学,2006(1):66-70.
[58]李源,刘贵波,高洪文,等. 紫花苜蓿种质耐盐性综合评价及盐胁迫下的生理反应[J]. 草业学报,2010,19(4):79-86.
[59]Mckersie B D,Bowley S R,Harjanto E,et al. Water-deficit tolerance and field performance of transgenic alfalfa overexpressing superoxide dismutase[J]. Plant Physiology,1996,111(4):1177-1181.
[60]Medeiros C D,Neto J R C F,Oliveira M T,et al. Photosynthesis,antioxidant activities and transcriptional responses in two sugarcane (Saccharum officinarum L.) cultivars under salt stress[J]. Acta Physiologiae Plantarum,2014,36(2):447-459.,
[61]Vialaret J,di Pietro M,Hem S,et al. Phosphorylation dynamics of membrane proteins from Arabidopsis roots submitted to salt stress[J]. Proteomics,2014,14(9):1058-1070.
[62]刘凤歧,刘杰淋,朱瑞芬,等. 4种燕麦对NaCl胁迫的生理响应及耐盐性评价[J]. 草业学报,2015,24(1):183-189.
[63]Zhu J K. Salt and drought stress signal transduction in plants[J]. Annual Review of Plant Biology,2002,53(1):247-273.
[64]Chaves M M,Flexas J,Pinheiro C. Photosynthesis under drought and salt stress:regulation mechanisms from whole plant to cell[J]. Annals of Botany,2009,103(4):551-560.
[65]肖雯,贾恢先. 几种盐生植物抗盐生理指标的研究[J]. 西北植物学报,2000,20(5):818-825.
[66]Santos C V. Regulation of chlorophyll biosynthesis and degradation by salt stress in sunflower leaves[J]. Scientia Horticulturae,2004,103(1):93-99.
[67]Krishnaraj S,Mawson B T,Yeung E C,et al. Utilization of induction and quenching kinetics of chlorophyll a fluorescence for in vivo salinity screening studies in wheat (Triticum aestivum vars. Kharchia-65 and Fielder)[J]. Canadian Journal of Botany,1993,71(1):87-92.
[68]Belkhodja R,Morales F,Abadia A,et al. Chlorophyll fluorescence as a possible tool for salinity tolerance screening in barley (Hordeum vulgare L.)[J]. Plant Physiology,1994,104(2):667-673.
[69]黄海燕,刘帅帅,王生荣,等. 中间冰草种质材料苗期耐盐性研究[J]. 作物杂志,2015(1):36-42.
[70]赵锁劳,窦延玲. 小麦耐盐性鉴定指标及其分析评价[J]. 西北农业大学学报,1998,26(6):80-85.
[71]李杰. 10种紫花苜蓿营养生长期耐盐性鉴定[D]. 哈尔滨:哈尔滨师范大学,2014.
[72]Parida A K,Das A B. Salt tolerance and salinity effects on plants:a review[J]. Ecotoxicology and Environmental Safety,2005,60(3):324-349.
[73]刘一明,程凤枝,王齐,等. 四种暖季型草坪植物的盐胁迫反应及其耐盐阈值[J]. 草业学报,2009,18(3):192-199.
[74]陈宣,郭海林,陈静波,等. 结缕草属植物两种耐盐评价方法的比较[J]. 草业科学,2014,31(6):1052-1057.
[75]雷金银,班乃荣,杨建国,等. 不同类型植物耐盐特性对脱硫废弃物的响应及其耐盐指数综合评价[J]. 中国生态农业学报,2014,22(3):314-324.
[76]周璐璐,伏兵哲,许冬梅,等. 盐胁迫对沙芦草萌发特性影响及耐盐性评价[J]. 草业科学,2015,32(8):1252-1259.
[77]Pepper R G,Craig G F. Resistance of selected Eucalyptus species to soil salinity in Western Australia[J]. Journal of Applied Ecology,1986,23:977-987.
[78]Maas E V. Salinity and citriculture[J]. Tree Physiology,1993,12(2):195-216.
[79]杨升,刘正祥,张华新,等. 3个树种苗期耐盐性综合评价及指标筛选[J]. 林业科学,2013(1):91-98.
[80]Flowers T J,Munns R,Colmer T D. Sodium chloride toxicity and the cellular basis of salt tolerance in halophytes[J]. Annals of Botany,2015,115(3):419-431.
[81]祁栋灵,韩龙植,张三元. 水稻耐盐/碱性鉴定评价方法[J]. 植物遗传资源学报,2005,6(2):226-230.
[82]杨福,梁正伟,王志春. 水稻耐盐碱鉴定标准评价及建议与展望[J]. 植物遗传资源学报,2011,12(4):625-628,633.
[83]王萌萌,姜奇彦,胡正,等. 小麦品种资源耐盐性鉴定[J]. 植物遗传资源学报,2012,13(2):189-194.
[84]张巧凤,陈宗金,吴纪中,等. 小麦种质芽期和苗期的耐盐性鉴定评价[J]. 植物遗传资源学报,2013,14(4):620-626.
[85]An F,Cahill D,Rookes J,et al. Real-time measurement of phloem turgor pressure in Hevea brasiliensis with a modified cell pressure probe[J]. Botanical Studies,2014,55(1):1-11.
[86]Ehrenberger W,Rüger S,Rodríguez‐Domínguez C M,et al. Leaf patch clamp pressure probe measurements on olive leaves in a nearly turgorless state[J]. Plant Biology,2012,14(4):666-674.
[87]Ma L Y,Zhang H,Sun L R,et al. NADPH oxidase AtrbohD and AtrbohF function in ROS-dependent regulation of Na+/K+ homeostasis in Arabidopsis under salt stress[J]. Journal of Experimental Botany,2011,63(1):305-317.
[88]Berger B,de Regt B,Tester M. Trait dissection of salinity tolerance with plant phenomics[J]. Methods and Protocols,2012,913:399-413.

相似文献/References:

[1]刘骥,王燕,郭建华,等.盐胁迫诱导的TabZIP60转录因子的筛选与分析[J].江苏农业科学,2013,41(08):18.
 Liu Ji,et al.Screening and analysis of TabZIP60 transcription factor induced by salt stress[J].Jiangsu Agricultural Sciences,2013,41(23):18.
[2]冯蕾,刘国荣,侯晓杰,等.NaCl胁迫对枳椇和皂荚生长及渗透调节物质的影响[J].江苏农业科学,2014,42(12):230.
 Feng Lei,et al.Effects of NaCl stress on growth and osmotic regulation of Hovenia dulcia and Gleditsia sinensis[J].Jiangsu Agricultural Sciences,2014,42(23):230.
[3]陈阳春,张本厚,贾明良,等.盐胁迫对半夏组培苗生长及生理指标的影响[J].江苏农业科学,2014,42(12):62.
 Chen Yangchun,et al.Effects of salt stress on growth and physiological indices of tissue culture seedlings of Pinellia ternata (Thunb.) Breit.[J].Jiangsu Agricultural Sciences,2014,42(23):62.
[4]王鑫,孔祥生.盐胁迫对流苏树愈伤组织生理生化特性的影响[J].江苏农业科学,2014,42(11):54.
 Wang Xin,et al().Effect of salt stress on physio-biochemical indices of Chionanthus retusus callus[J].Jiangsu Agricultural Sciences,2014,42(23):54.
[5]吕艳伟,何文慧,陈雨鸥,等.盐胁迫对小麦幼苗光合色素含量和细胞膜的影响[J].江苏农业科学,2013,41(06):74.
 Lü Yanwei,et al.Effects of salt stress on photosynthetic chlorophyll content and cell membrane in wheat[J].Jiangsu Agricultural Sciences,2013,41(23):74.
[6]包奇军,柳小宁,张华瑜,等.NaCl与NaHCO3+Na2CO3对不同基因型啤酒大麦萌发期胁迫效应的比较[J].江苏农业科学,2014,42(10):92.
 Bao Qijun,et al.Comparison of stress effects of NaCl and NaHCO3+Na2CO3 on different genotypes of malting barley seeds during germination stage[J].Jiangsu Agricultural Sciences,2014,42(23):92.
[7]谷文英,牟莹莹,钱泽,等.外源甜菜碱对盐胁迫下菊苣幼苗线粒体膜氧化损伤的缓解作用[J].江苏农业科学,2013,41(07):198.
 Gu Wenying,et al.Mitigative effect of exogenous glycine betaine on mitochondrial membrane oxidative damage of chicory seedling under salt stress[J].Jiangsu Agricultural Sciences,2013,41(23):198.
[8]杨永恒,黄苏珍.NaCl胁迫下甜菊不同耐盐性单株的生长及生理响应[J].江苏农业科学,2013,41(08):87.
 Yang Yongheng,et al.Growth and physiological response of Stevia rebaudiana Bertoni plants with different salt tolerance under salt stress[J].Jiangsu Agricultural Sciences,2013,41(23):87.
[9]乔海龙,陈和,陈健,等.盐胁迫对不同大麦品种产量及品质的影响[J].江苏农业科学,2014,42(09):83.
 Qiao Hailong,et al.Effects of salt stress on yield and quality of different barley varieties[J].Jiangsu Agricultural Sciences,2014,42(23):83.
[10]陈罡,管安琴,卢昱宇,等.盐胁迫对不同基因型芦笋萌发的影响及盐碱地育苗技术[J].江苏农业科学,2014,42(08):136.
 Chen Gang,et al.Effect of salt stress on germination of different genotypes of asparagus and seedling-raising techniques of asparagus on saline-alkali soil[J].Jiangsu Agricultural Sciences,2014,42(23):136.
[11]蔡继鸿,徐鹏,张香桂,等.盐胁迫下陆地棉耐盐相关WRKY基因的表达分析[J].江苏农业科学,2018,46(18):28.
 Cai Jihong,et al.Analysis of salt-tolerant WRKY genes expression in upland cotton under salt stress[J].Jiangsu Agricultural Sciences,2018,46(23):28.
[12]刘云芬,彭华,王薇薇,等.植物耐盐性生理与分子机制研究进展[J].江苏农业科学,2019,47(12):30.
 Liu Yunfen,et al.Research progress on physiological and molecular mechanisms of salt tolerance for plants[J].Jiangsu Agricultural Sciences,2019,47(23):30.
[13]江钰娜,朱星兆,刘昱,等.柳树耐盐机制及耐盐基因研究进展[J].江苏农业科学,2021,49(11):28.
 Jiang Yuna,et al.Research progress on salt tolerance mechanism and salt tolerance genes of willow[J].Jiangsu Agricultural Sciences,2021,49(23):28.

备注/Memo

备注/Memo:
收稿日期:2016-06-23
基金项目;河北省科技计划(编号:17273301D);河北省唐山市科技计划(编号:16130203A)。
作者简介:郭远(1989—),男,河南南阳人,硕士,主要从事植物逆境生理生态和林木种质资源耐盐性评价研究。E-mail:guoyuan12@mails.ucas.ac.cn。
通信作者:王文成,研究员,主要从事盐土资源开发利用及耐盐苗木绿化研究。E-mail:bhswwc@163.com。
更新日期/Last Update: 2017-12-05