|Table of Contents|

Physiological Mechanism of Plant Resistance to Salt Stress(PDF)

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2016年23
Page:
190-194
Research Field:
Publishing date:

Info

Title:
Physiological Mechanism of Plant Resistance to Salt Stress
Author(s):
JIANG LinWANG YoujingZHOU WeiGUO Changhong
(Key Laboratory of Molecular Cytogenetics and Genetic Breeding of Heilongjiang Province/College of Life Science and Technology,Harbin Normal University,Harbin,Heilongjiang 150025)
Keywords:
plantsalt tolerancemechanismosmotic adjustment
PACS:
-
DOI:
10.11937/bfyy.201623044
Abstract:
Due to the rising problem in modern agriculture,climate changes and global food crisis,the crop production had been an importance topic widely concern.Environment factors,such as biotic and abiotic factor,was the main reason affecting crop growth and yield.Salinity was a major abiotic stress limited plant growth and productivity.The high salinity led to high accumulation of toxic ions and ROS in plant tissues,which interfered the normal metabolism of plant cells,and then affected the growth of plants.Plants tolerance to salt stress presented complicate physiological mechanisms including osmotic adjustment,active oxygen scavenging,hormone regulation,polyamine and signal molecules regulation.This study reviewed the physiological and molecular mechanisms of salt tolerance in plants,and provided a reference for other related studies.

References:

 

[1]TING W,TAKAYUKI TALEXANDER I,et al.Salt-related MYB1 coordinates abscisic acid biosynthesis and signaling during salt stress in Arabidopsis[J].Plant Physiology2015169(2)1027-1041

[2]SHEN YSHEN LSHEN Zet al.The potassium transporter OsHAK21 functions in the maintenance of ion homeostasis and tolerance to salt stress in rice[J].Plant Cell and Environment201538(12)631-713

[3]RICHARD JCAROL BCAITLIN S Bet al.Major genes for Na+ exclusionNax1 and Nax2 (wheat HKT1;4 and HKT1;5)decrease Na+ accumulation in bread wheat leaves under saline and waterlogged conditions[J].Journal of Experimental Botany201162(8)2939-2947

[4]ZHANG J LSHI H Z.Physiological and molecular mechanisms of plant salt tolerance[J].Photosynthesis Research2013115(1)1-22

[5]PAUL M H.Sodium (Na+) homeostasis and salt tolerance of plants[J].Environmental and Experimental Botany201392(8)19-31

[6]RODRIGUEZ H GROBERTS JJORDAN W Ret al.Water relationsand accumulation of organic and inorganic solutes in roots of maize seedlings during salt stress[J].Plant Physiology1997113(3)881-893

[7]AHMAD PJALEE C ASALEM M Aet al.Roles of enzymatic and nonenzymatic antioxidants in plants during abiotic stress[J].Critical Reviews in Biotechnology201030(3)161-175

[8]CHEDLIA B ABECHIR B RSERHAT Set al.Exogenous proline effects on photosynthetic performance and antioxidant defense system of young olive tree[J].Journal of Agricultural and Food Chemistry201058(7)4216-4222

[9]NOPPAWAN NPHAN T NPIYADA T.Exogenous proline and trehalose promote recovery of rice seedlings from salt-stress and differentially modulate antioxidant enzymes and expression of related genes[J].Journal of Plant Physiology2012,169(6)596-604

[10]CHA S UCHALERMPOL K.Effect of glycinebetaine on prolinewater useand photosynthetic efficienciesand growth of rice seedlings under salt stress[J].Turkish Journal of Agriculture and Forestry201034(6)517-527

[11]RAZA ACHAN J LSUK Y K.Glycine betainea versatile compound with great potential for gene pyramiding to improve crop plant performance against environmental stresses[J].Plant Biotechnology Reports20137(1)49-57

[12]JIANG YQIU YHU Yet al.Heterologous expression of AtWRKY57 confers drought tolerance in oryza sativa[J].Frontiers in Plant Science2016(7):145-156

[13]ASISH K PANATH B DPRASANNA M.Investigations on the antioxidative defence responses to NaCl stress in a mangroveBruguiera parvifloraDifferential regulations of isoforms of some antioxidative enzymes[J].Plant Growth Regulation,2004,42(3)213-226

[14]SINGH N K,NELSON D EKUHU Det al.Molecular cloning of osmotin and regulation of its expression by ABA and adaptation to low water potential[J].Plant Physiology198990(3)1096-1101

[15]LAROSA P CRAY A B.Abscisic acid stimulated osmotic adjustment and its involvement in adaptation of tobacco cells to NaCl[J].Plant Physiology,1987,85(1)174-181

[16]KENI JJACOB M LLAURIANE Het al.Salt stress affects the redox status of Arabidopsis root meristems[J].Frontiers in Plant Science2016(8):81-91

[17]杨艳兵,姜艳丽,尹晓斐,.NaCl胁迫对棉花幼苗生理特性的影响[J].山西农业大学学报(自然科学版),201333(4)290-294

[18]张勇,韩多红,晋玲,.不同盐碱胁迫对红芪种子萌发和幼苗生理特性的影响[J].中国中药杂志,201237(20)3036-3040

[19]FAHEEM ANEELMA M.Enhancement of salt tolerance in sugarcane by ascorbic acid pretreatment[J].African Journal of Biotechnology201110(80)18362-18370

[20]RANGANI JPARIDA A KPANDA Aet al.Coordinated changes in antioxidative enzymes protect the photosynthetic machinery from salinity induced oxidative damage and confer salt tolerance in an extreme halophyte Salvadora persica L.[J].Frontiers in Plant Science2016,7(537):50-68

[21]ALMUTAWA M M.Glutathione-triggered mitigation in salt-induced alterations in plasmalemma of onion epidermal cells[J].International Journal of Agriculture and Biology200911(5)639-642

[22]RAWIA ALOBNA S ETAHA M M.Alleviation of adverse effects of salinity on growthand chemical constituents of marigold plants by using glutathione and ascorbate[J].Journal of Applied Sciences Research20117(5)714-721

[23]VAN M JSHATKHUU ABATELLI G,et al.The Arabidopsis thaliana mutant air1 implicates SOS3 in the regulation of anthocyanins under salt stress[J].Plant Molecular Biology201383(4-5)405-415

[24]SHEVYAKOVA NMUSATENKO LSTETSENKO L Aet al.Effects of abscisic acid on the contents of polyamines and proline in common bean plants under salt stress[J].Russian Journal of Plant Physiology201360(2)200-211

[25]INGE VEREK VCINDY Met al.Identification of transcribed derived fragments involved in self-incompatibility in perennial ryegrass (Lolium perenne L.) using cDNA-AFLP[J].Euphytica2008163(1)67-80

[26]GURMANI A RBANO AKHAN S Uet al.Alleviation of salt stress by seed treatment with abscisic acid (ABA)6-benzylaminopurine (BA) and chlormequat chloride (CCC) optimizes ion and organic matter accumulation and increases yield of rice (Oryza sativa L.)[J].Australian Journal of Crop Science20115(10)1278-1285

[27]LIAO X RHE PZHU X.Effect of zeatbsf on H2O2 scavenging system of vitis vulpina leaf disks under salt stress[J].植物学报(英文版)199739(7)641-646

[28]SHEN G ZLIU X YSHEN S Ket al.Effect of 6-BA and NAA on germination characteristics of anneslea fragrans wall seed[J].Seed200827(3)73-74

[29]ANA A R.Evidence for a role of gibberellins in salicylic acid-modulated early plant responses to abiotic stress in Arabidopsis seeds[J].Plant Physiology,2009,150(3)1335-1344

[30]WEN F PZHANG TZHANG Z Het al.Proteome analysis of relieving effect of gibberellin on the inhibition of rice seed germination by salt stress[J].Acta Agronomica Sinica200935(3)483-489

[31]ALBINO MGIANCARLO BGIAMPAOLO Ret al.Contrasting effects of GA3 treatments on tomato plants exposed to increasing salinity[J].Journal of Plant Growth Regulation201029(1)63-72

[32]RAGNIERE C FSERRANO MABOU E Met al.Salicylic acid and its location in response to biotic and abiotic stress[J].Febs Letters2011585(12)1847-1852

[33]JAYAKANNAN MBOSE JBAHOURINA Oet al.Salicylic acid improves salinity tolerance in Arabidopsis by restoring membrane potential and preventing salt-induced K+ loss via a GORK channel[J].Journal of Experimental Botany201364(8)2255-2268

[34]ABDEL A AHEBA I M.Brassinolide alleviates salt stress and increases antioxidant activity of cowpea plants (Vigna sinensis)[J].Protoplasma2012249(3)625-635

[35]RUBEN AJUAN C CJOAN Pet al.Integration of polyamines in the cold acclimation response[J].Plant Science an International Journal of Experimental Plant Biology2011180(1)31-38

[36]SHU SGUO S RYUAN L Y.A reviewpolyamines and photosynthesis[J].Advances in Photosynthesis -Fundamental Aspects2012928(8)439-464

[37]MIRZA HKAMRUN NFUJITA Met al.Regulatory role of polyamines in growthdevelopment and abiotic stress tolerance in plants[J].Plant Adaptation to Environmental Change Significance of Amino Acids and Their Derivatives201451(5)157-193

[38]DUAN JLI JGUO Set al.Exogenous spermidine affects polyamine metabolism in salinity-stressed Cucumis sativus roots and enhances short-term salinity tolerance[J].Journal of Plant Physiology2008165(15)1620-1635

[39]CHAI Y YJIANG C DSHI Let al.Effects of exogenous spermine on sweet sorghum during germination under salinity[J].Biologia Plantarum201054(1)145-148

[40]WIMALASEKERA RTEBARTZ FSCHERER G F.Polyaminespolyamine oxidases and nitric oxide in developmentabiotic and biotic stresses[J].Plant Science2011181(5)593-603

[41]刘颖,王莹,龙萃,.植物多胺代谢途径研究进展[J].生物工程学报,201127(2)147-155

[42]於丙军,吉晓佳,刘俊,.氯化钠胁迫下野生和栽培大豆幼苗体内的多胺水平变化[J].应用生态学报,200415(7)1223-1226

[43]DONG YLI CZHANG Yet al.Glutathione transferase gene family in Gossypium raimondii and garboreumcomparative genomic study and their expression under salt stress[J].Frontiers in Plant Science2016(7)770

[44]GROB FDURNER JGAUPELS F.Nitric oxideantioxidants and prooxidants in plant defence responses[J].Frontiers in Plant Science20134(1)55-60

[45]ANDRZEJ B.Nitric oxiderole in plants under abiotic stress[J].Physiological Mechanisms and Adaptation Strategies in Plants Under Changing Environment20142(7)137-159

[46]CHANG H SHONG J K.Sodium nitroprusside mediates seedling development and attenuation of oxidative stresses in Chinese cabbage[J].Plant Biotechnology Reports20104(4)243-251

[47]HOSSAIN K KITOH RYOSHIMURA Get al.Effects of nitric oxide scavengers on thermoinhibition of seed germination in Arabidopsis thaliana[J].Russian Journal of Plant Physiology201057(2)222-232

[48]AKIO UANDRE T JTAKASHI Het al.Effects of hydrogen peroxide and nitric oxide on both salt and heat stress tolerance in rice[J].Plant Science2002163(2)515-523

[49]MISHRA SJHA A BDUBEY R S.Arsenite treatment induces oxidative stressupregulates antioxidant systemand causes phytochelatin synthesis in rice seedlings[J].Protoplasma2011248(3)565-577

[50]景欣,张旸,李玉花.植物耐盐研究进展[J].生物技术通讯,201021(2)290-294

[51]YIN FGAO JLIU Met al.Genome-wide analysis of water-stress-responsive microRNA expression profile in tobacco roots[J].Functional and Integrative Genomics,201414(2):319-332

Memo

Memo:
-
Last Update: 2017-01-19