| [1] | 
					 Bender, J., Hertstein, U., Black, C.R. Growth and yield responses of spring wheat to increasing carbon dioxide, ozone and physiological stresses: a statistical analysis ‘ESPACE-wheat’ results Eur J. Agron., 10 (1999),pp. 185-195 
						
					 | 
			
| [2] | 
					 Calderini, D.F., Reynolds, M.P., Slafer, G.A. 
						
					 | 
			
| [3] | 
					 Choudhury, N.K., Behera, R.K. Photoinhibition of photosynthesis: role of carotenoids in photoprotection of chloroplasts Photosynthetica, 39 (2001),pp. 481-488 
						
					 | 
			
| [4] | 
					 Churchill, G.A., Doerge, R.W. Empirical threshold values for quantitative trait mapping Genetics, 138 (1994),pp. 963-971 
						
					 | 
			
| [5] | 
					 Dall'Osto, L., Cazzaniga, S., North, H. et al. Plant Cell, 19 (2007),pp. 1048-1064 
						
					 | 
			
| [6] | 
					 Doerge, R.W., Churchill, G.A. Permutation tests for multiple loci affecting a quantitative character Genetics, 142 (1996),pp. 285-294 
						
					 | 
			
| [7] | 
					 Demmig-Adams, B., Photoprotection and other responses of plants to high light stress Annu. Rev. Plant Physiol. Plant Mol. Biol., 43 (1992),pp. 599-626 
						
					 | 
			
| [8] | 
					 Evans, L.T. 
						
					 | 
			
| [9] | 
					 Fischer, R.A., Rees, D., Sayre, K.D. et al. Wheat yield progress associated with higher stomatal conductance and photosynthetic rate, and cooler canopies Crop Sci., 38 (1998),pp. 1467-1475 
						
					 | 
			
| [10] | 
					 Fracheboud, Y., Jompuk, C., Ribaut, J.M. et al. Genetic analysis of cold-tolerance of photosynthesis in maize Plant Mol. Biol., 56 (2004),pp. 241-253 
						
					 | 
			
| [11] | 
					 Guo, P., Baum, M., Grando, S. et al. QTLs for chlorophyll and chlorophyll fluorescence parameters in barley under post-flowering drought Euphytica, 163 (2008),pp. 203-214 
						
					 | 
			
| [12] | 
					 Hao, Z.F., Chang, X.P., Guo, X.J. et al. Agriculture Science in China, 2 (2003),pp. 943-949 
						
					 | 
			
| [13] | 
					 Havaux, M., Eymery, F., Porfirova, S. et al. Plant Cell, 17 (2005),pp. 3451-3469 
						
					 | 
			
| [14] | 
					 Hubbart, S., Peng, S., Horton, P. et al. Trends in leaf photosynthesis in historical rice varieties developed in the Philippines since 1966 J. Exp. Bot., 58 (2007),pp. 3429-3438 
						
					 | 
			
| [15] | 
					 Hurry, V.M., Huner, N.P. Effect of cold hardening on sensitivity of winter and spring wheat leaves to short-term photoinhibition and recovery of photosynthesis Plant Physiol., 100 (1992),pp. 1283-1290 
						
					 | 
			
| [16] | 
					 Jiang, G.M., Sun, J.Z., Liu, H.Q. et al. Changes in the rate of photosynthesis accompanying the yield increase in wheat cultivars released in the past 50 years J. Plant Res., 116 (2003),pp. 347-354 
						
					 | 
			
| [17] | 
					 Jing, R.L., Chang, X.P., Jia, J.Z. Establishing wheat doubled haploid population for genetic mapping by anther culture Biotechnology, 8 (1999),pp. 10-14 
						
					 | 
			
| [18] | 
					 Jompuk, C., Fracheboud, Y., Stamp, P. et al. J. Exp. Bot., 56 (2005),pp. 1153-1163 
						
					 | 
			
| [19] | 
					 Kimball, B.A. Carbon-dioxide and agricultural yield—an assemblage and analysis of 430 prior observations Agron. J., 75 (1983),pp. 779-788 
						
					 | 
			
| [20] | 
					 Kok, B. On the inhibition of photosynthesis by intense light Biochim. Biophys. Acta, 21 (1956),pp. 234-244 
						
					 | 
			
| [21] | 
					 Lebreton, C., Lazic-Jancic, V., Steed, A. et al. Identification of QTL for drought responses in maize and their use in testing causal relationships between traits J. Exp. Bot., 46 (1995),pp. 853-865 
						
					 | 
			
| [22] | 
					 Long, S.P., Humphries, S., Falkowski, P.G. Photoinhibition of photosynthesis in nature Annu. Rev. Plant Physiol. Plant Mol. Biol., 45 (1994),pp. 633-662 
						
					 | 
			
| [23] | 
					 Lu, C.M., Lu, Q.T., Zhang, J.H. et al. Characterization of photosynthetic pigment composition, photosystem II photochemistry and thermal energy dissipation during leaf senescence of wheat plants grown in the field J. Exp. Bot., 52 (2001),pp. 1805-1810 
						
					 | 
			
| [24] | 
					 McCouch, S.R., Cho, Y.G., Yano, M. et al. Suggestions for QTL nomenclature for rice Rice Genetics Newsletter, 14 (1997),p. 11 
						
					 | 
			
| [25] | 
					 Maxwell, K., Johnson, G.N. Chlorophyll fluorescence–a practical guide J. Exp. Bot., 51 (2000),pp. 659-668 
						
					 | 
			
| [26] | 
					 Mitchell, R.A.C., Black, C.R., Burkart, S. et al. Photosynthetic responses in spring wheat grown under elevated CO2 concentrations and stress conditions in the European, multiple-site experiment ‘ESPACEwheat’ Eur. J. Agron., 10 (1999),pp. 205-214 
						
					 | 
			
| [27] | 
					 Monneveux, P., Pastenes, C., Reynolds, M.P. Limitations to photosynthesis under light and heat stress in three high-yielding wheat genotypes J. Plant Physiol., 160 (2003),pp. 657-666 
						
					 | 
			
| [28] | 
					 Murchie, E.H., Chen, Y., Hubbart, S. et al. Interactions between senescence and leaf orientation determine in situ patterns of photosynthesis and photoinhibition in field-grown rice Plant Physiol., 119 (1999),pp. 553-564 
						
					 | 
			
| [29] | 
					 Murchie, E.H., Pinto, M., Horton, P. Agriculture and the new challenges for photosynthesis research New Phytol., 181 (2009),pp. 532-552 
						
					 | 
			
| [30] | 
					 Ögren, E., Rosenqvist, E. On the significance of photoinhibition of photosynthesis in the field and its generality among species Photosyn. Res., 33 (1992),pp. 63-71 
						
					 | 
			
| [31] | 
					 Oyanedel, E., Wolfe, D.W., Monforte, A.J. et al. Acta Hort., 542 (2001),pp. 387-389 
						
					 | 
			
| [32] | 
					 Oyanedel, E., Wolfe, D.W., Owens, T.G. et al. Quantitative trait loci analysis of photoinhibition under chilling stress in tomato Acta Hort., 521 (2000),pp. 227-232 
						
					 | 
			
| [33] | 
					 Pimentel, C., Davey, P.A., Juvik, J.A. et al. Gene loci in maize influencing susceptibility to chilling dependent photoinhibition of photosynthesis Photosynth. Res., 85 (2005),pp. 319-326 
						
					 | 
			
| [34] | 
					 Powles, S.B. Photoinhibition of photosynthesis induced by visible light Annu. Rev. Plant Physiol., 35 (1984),pp. 15-44 
						
					 | 
			
| [35] | 
					 Quarrie, S., Pekic Quarrie, S., Radosevic, R. et al. Dissecting a wheat QTL for yield present in a range of environments: from the QTL to candidate genes J. Exp. Bot., 57 (2006),pp. 2627-2637 
						
					 | 
			
| [36] | 
					 Reynolds, M.P., Balota, M., Delgado, M.I.B. et al. Physiological and morphological traits associated with spring wheat yield under hot, irrigated conditions Aust. J. Plant Physiol., 21 (1994),pp. 717-730 
						
					 | 
			
| [37] | 
					 Reynolds, M.P., Delgado, B.M.I., Gutierrez-Rodrguez, M. et al. Photosynthesis of wheat in a warm, irrigated environment. I: Genetic diversity and crop productivity Field Crops Res., 66 (2000),pp. 37-50 
						
					 | 
			
| [38] | 
					 Reynolds, M.P., van Ginkel, M., Ribaut, J.M. Avenues for genetic modification of radiation use efficiency in wheat J. Exp. Bot., 51 (2000),pp. 459-473 
						
					 | 
			
| [39] | 
					 Rosengrant, M.W., Agcaoilli-Sombilla, M., Perez, N.D. 
						
					 | 
			
| [40] | 
					 Russell, A.W., Critchley, C., Robinson, S.A. et al. Plant Physiol., 107 (1995),pp. 943-952 
						
					 | 
			
| [41] | 
					 Su, J.Y., Tong, Y.P., Liu, Q.Y. et al. Mapping quantitative trait loci for post-anthesis dry matter accumulation in wheat J. Integr. Plant Biol., 48 (2006),pp. 938-944 
						
					 | 
			
| [42] | 
					 Su, J.Y., Zheng, Q., Li, H.W. et al. Detection of QTLs for phosphorus use efficiency in relation to agronomic performance of wheat grown under phosphorus sufficient and limited conditions Plant Sci., 176 (2009),pp. 824-836 
						
					 | 
			
| [43] | 
					 Takahashi, S., Murata, N. How do environmental stresses accelerate photoinhibition? Trends Plant Sci., 13 (2008),pp. 178-182 
						
					 | 
			
| [44] | 
					 Tuberosa, R., Salvi, S., Sanguineti, M.C. et al. Mapping QTL regulating morpho-physiologyical traits and yields: case studies, shortcomings and perpecitves in drought-stressed maize Ann. Bot., 89 (2002),pp. 941-963 
						
					 | 
			
| [45] | 
					 Wang, S., Basten, C.J., Zeng, Z.B. 
						
					 | 
			
| [46] | 
					 Wang, S.W., Xu, C.C., Bai, K.Z. et al. Comparative study on photoinhibition between two wheat genotypes Acta Bot. Sin., 42 (2000),pp. 1300-1303 
						
					 | 
			
| [47] | 
					 Xu, D.Q., and Shen, Y.G. (2005). External and internal factors responsible for midday depression of photosynthesis. In Handbook of Photosynthesis, pp. 287–294. 
						
					 | 
			
| [48] | 
					 Yang, D.L., Jing, R.L., Chang, X.P. et al. J. Integr. Plant Biol., 49 (2007),pp. 646-654 
						
					 | 
			
| [49] | 
					 Yang, X.H., Chen, X.Y., Ge, Q.Y. et al. Characterization of photosynthesis of flag leaves in a wheat hybrid and its parents grown under field conditions J. Plant Physiol., 164 (2007),pp. 318-326 
						
					 | 
			
| [50] | 
					 Yang, X.H., hen, X.Y., Ge, Q.Y. et al. Tolerance of photosynthesis to photoinhibition, high temperature and drought stress in flag leaves of wheat: A comparison between a hybridization line and its parents grown under field conditions Plant Sci., 171 (2006),pp. 389-397 
						
					 | 
			
| [51] | 
					 Zeng, Z.B. Precision mapping of quantitative trait loci Genetics, 136 (1994),pp. 1457-1468 
						
					 |