[1] Sui N,Li M,Tian J C,et al.Photosynthetic characteristics of a super high yield cultivar of winter wheat during late growth period[J].Agricultural Sciences in China,2010,9(3):346-354.
[2] 吕妍,王让会,蔡子颖.我国干旱半干旱地区气候变化及其影响[J].干旱区资源与环境,2009,23(11):65-71.
Lv Y,Wang R H,Cai Z Y.Climatic change and influence in arid and semi-arid area of China[J].Journal of Arid Land Resources and Environment,2009,23(11):65-71.(in Chinese)
[3] Wilkinson S,Davies W J.Drought,ozone,ABA and ethylene: new insights from cell to plant to community[J]. Plant Cell & Environment,2010,33(4):510-525.
[4] Lee S C,Luan S.ABA signal transduction at the crossroad of biotic and abiotic stress responses[J].Plant,Cell and Environment, 2012,35(1):53-60.
[5] Hossain Z,Nouri M Z,Komatsu S,et al.Plant cell organelle proteomics in response to abiotic stress[J].Journal of Proteome Research,2012,11(1):37-48.
[6] Chaves M M,Maroco J P,Pereira J S,et al.Understanding plant responses to drought:from genes to the whole plant[J]. Functional Plant Biology,2003,30(3):239-264.
[7] Hare P.Dissecting the roles of osmolyte accumulation during stress[J].Plant Cell Environ,1998,21(6):535-553.
[8] Reddy A R,Chaitanya K V,Vivekanandan M,et al.Drought- induced responses of photosynthesis and antioxidant metabolism in higher plants[J].Journal of Plant Physiology, 2004,161(11):1189-1202.
[9] Mittler R.Oxidative stress,antioxidants and stress tolerance[J]. Trends in Plant Science,2002,7(9):405-410.
[10] Mittler R.Abiotic stress,the field environment and stress combination[J].Trends in Plant Science,2006,11(1):15-19.
[11] Welti R,Li W,Li M,et al.Profiling membrane lipids in plant stress responses:role of phospholipase D alpha in freezing- induced lipid changes in Arabidopsis[J].J Biol Chem, 2002,277:31994-32002.
[12] Hetherington A M,Woodward F I.The role of stomata in sensing and driving environmental change[J].Nature (London),2003,424(6951):901-908.
[13] Belko N,Zaman-Allah M,Cisse N,et al.Lower soil moisture threshold for transpiration decline under water deficit correlates with lower canopy conductance and higher transpiration efficiency in drought-tolerant cowpea[J]. Functional Plant Biology,2012,39(4):306-325.
[14] Kholova J,Hash C T,Kakkera A,et al.Constitutive water- conserving mechanisms are correlated with the terminal drought tolerance of pearl millet[Pennisetum glaucum(L.) R.Br.][J].Journal of Experimental Botany,2010,61(2):369-377.
[15] Kholova J,Hash C T,Kumar P L,et al.Terminal drought-tolerant pearl millet[Pennisetum glaucum(L.)R.Br.] have high leaf ABA and limit transpiration at high vapour pressure deficit[J].Journal of Experimental Botany,2010, 61(5):1431-1440.
[16] Devi M J,Sinclair T R,Vadez V,et al.Genotypic variation in peanut for transpiration response to vapor pressure deficit [J].Crop Science,2010,50(1):191-196.
[17] Merilo E,Yarmolinsky D,Jalakas P,et al.Stomatal VPD response:there is more to the story than ABA[J].Plant Physiology,2018,176 (1):851-864.
[18] Suzuki M,Umeda H,Matsuo S,et al.Effects of relative humidity and nutrient supply on growth and nutrient uptake in greenhouse tomato production[J].Scientia Horticulturae, 2015,187:44-49.
[19] Talbott L D,Rahveh E,Zeiger E,et al.Relative humidity is a key factor in the acclimation of the stomatal response to CO2[J].Journal of Experimental Botany,2003,54(390): 2141-2147.
[20] Haque M S,Alexandra D S,Cristiano S,et al.Temperature variation under continuous light restores tomato leaf photosynthesis and maintains the diurnal pattern in stomatal conductance[J].Frontiers in Plant Science,2017,8:1602-1615.
[21] Schultz H R.Leaf absorptance of visible radiation in Vitis vinifera L.:stimates of age and shade effects with a simple field method[J].Scientia Horticulturae(Amsterdam),1996, 66(1-2):93-102.
[22] Condon A G,Richards R A,Rebetzke G J,et al.Improving intrinsic water-use efficiency and crop yield[J].Crop Science, 2002,42(1):122-131.
[23] Lee J C.The stabilization of proteins by sucrose[J].Journal of Biological Chemistry,1981,256(14):7193-7201.
[24] Nambara E,Kawaide H,Kamiya Y,et al.Characterization of an Arabidopsis thaliana mutant that has a defect in ABA accumulation:ABA-dependent and ABA-independent accumulation of free amino acids during dehydration[J]. Plant & Cell Physiology,1998,39(8):853-858.
[25] Berglund A H,Norberg P,Quartacci M F,et al.Properties of plant plasma membrane lipid models-bilayer permeability and monolayer behaviour of glucosylceramide and phosphatidic acid in phospholipid mixtures[J].Physiologia Plantarum,2010,109(2):117-122.
[26] Cooke D T,Burden R S.Lipid modulation of plasma membrane-bound ATPases[J].Physiologia Plantarum,1990, 78(1):153-159.
[27] Liljenberg C,Kates M.Changes in lipid composition of oat root membranes as a function of water-deficit stress[J]. Biochemistry and Cell Biology,1985,63(2):77-84.
[28] Gill S S,Tuteja N.Reactive oxygen species and antioxidant machinery in abiotic stress tolerance in crop plants[J].Plant Physiology and Biochemistry,2010,48(12):909-930.
[29] Jiang M.Water stress-induced abscisic acid accumulation triggers the increased generation of reactive oxygen species and up-regulates the activities of antioxidant enzymes in maize leaves[J].Journal of Experimental Botany,2002,53 (379):2401-2410.
[30] Bota J,Flexas J,Medrano H,et al.Genetic variability of photosynthesis and water use in Balearic grapevine cultivars [J].Annals of Applied Biology,2001,138(3):353-361.
[31] Saeidi M,Abdoli M.Effect of drought stress during grain filling on yield and its components,gas exchange variables, and some physiological traits of wheat cultivars[J].Journal of Agricultural Science and Technology,2015,17(4):885-898.
[32] Ratnayaka I,B?ga M,Fowler D B,et al.Construction and characterization of a BAC library of a cold-tolerant hexaploid wheat cultivar[J].Crop Science,2005,45(4): 1571-1577.
[33] Turan,Ekmekci Y.Activities of photosystem II and antioxidant enzymes in chickpea(Cicer arietinum L.) cultivars exposed to chilling temperatures[J].Acta Physiologiae Plantarum,2011,33(1):67-78.
[34] Zhang J,Kirkham M B.Drought-stress-induced changes in activities of superoxide dismutase,catalase,and peroxidase in wheat species[J].Plant and Cell Physiology,1994,35(5): 785-791.
[35] 毛浩田,陈梦莹,吴楠,等.干旱胁迫对不同倍性小麦和八倍体小黑麦苗期光合能力与抗氧化系统的影响[J].麦类作物学报,2018,38(10):114-122.
Mao H T,Chen M Y,Wu N,et al.Effects of drought stress on photosynthetic capacity and antioxidant system in wheat with different ploidy levels and octoploid triticale at seedling stage[J].Journal of Triticeae Crops,2018,38(10): 114-122.(in Chinese)
[36] Halder K P,Burrage S W.Drought stress effects on water relations of rice grown in nutrient film technique[J].Pakistan Journal of Biological Sciences,2003,6(5):441-444.
[37] Wang Y,Zhang X,Huang G,et al.iTRAQ:based quantitative analysis of responsive proteins under peg-induced drought stress in wheat leaves[J].International Journal of Molecular Sciences,2019,20(11):2621-1640. |