(1) Su P X, Xie T T. Agroecology Research and Practice in the Oasis Region, Northwest China. In: Luo Shiming, Stephen R. Gliessman (eds). Agroecology in China: Science, Practice, and Sustainable Management. Boca Raton, USA: CRC Press, 2016: 315-350.
(2) Su P X, Li S J, Zhou Z J, Shi R, Xie T T. Partitioning evapotranspiration of desert plants under different water regimes in the inland Heihe River Basin, Northwestern China. Arid Land Research and Management, 2016, 30(2): 138-152.
(3) Su P X, Yan Q D, Xie T T, Zhou Z J, Gao S. Associated growth of C3 and C4 desert plants helps the C3 species at the cost of the C4 species. Acta Physiologiae Plantarum, 2012, 34(6): 2057-2068.
(4) Su P X. Photosynthesis of C4 desert plants. K. G. Ramawat (ed.) Desert Plants: Biology and Biotechnology. Berlin Heidelberg: Springer Verlag, 2010: 243-259.
(5) Su P X, Yan Q D, Gao S. Photosynthetic characteristics of desert plant Hedysarum scoparium and its indicating significances on environment. In: Michael Theophanides, Theophile Theophanides. Environmental Engineering and management. Greece, Athens Institute for Education and Research, 2009: 357-368.
(6) Su P X, Chen H B, Yan Q D. Plant community characteristics and their relationships with climate in the Hexi Corridor region of northwestern China. Frontiers of Forestry in China, 2008, 3(4): 393-400.
(7) Su P X, Cheng G D, Yan Q D, Liu X M. Photosynthetic regulation of C4 desert plant Haloxylon ammodendron under drought stress. Plant Growth Regulation, 2007, 51: 139-147.
(8) Su P X, Liu X M. Photosynthetic characteristics of linze jujube in conditions of high temperature and irradiation. Scientia Horticulturae, 2005, 104: 339-350.
(9) Su P X, Xie T T, Zhou Z J. C4 plant species and geographical distribution in relation to climate in the desert vegetation of China. Sciences in Cold and Arid Regions, 2011, 3 (5): 381-391.
(10) Zhou Z J, Su P X, González-Paleo L, Xie T T, Li S J, Zhang H N. Trade-off between leaf turnover and biochemical responses related to drought tolerance in desert woody plants. Journal of Arid Environments, 2014, 103: 107-113.
(11) Zhang H N, Su P X, Li S J, Zhou Z J, Xie T T. Response of root traits of Reaumuria soongorica and Salsola passerina to facilitation. Journal of Arid Land, 2014, 6(5): 628-636.
(12) Xie T T, Su P X, Shan L S, Ma J B. Yield, quality and irrigation water use efficiency of sweet sorghum [Sorghum bicolor (Linn.) Moench] under different land types in arid regions. Australian Journal of Crop Science, 2012, 6(1): 10-16.
(13) Xie T T, Su P X. Canopy and leaf photosynthetic characteristics and water use efficiency of sweet sorghum under drought stress. Russian Journal of Plant Physiology, 2012, 59(2): 224-234.
(14) Xu D H, Su P X, Zhang R Y, Li H L, Zhao L, Wang G. Photosynthetic parameters and carbon reserves of a resurrection plant Reaumuria soongorica during dehydration and rehydration. Plant Growth Regulation, 2010, 60: 183-190.
(15) Gao S, Su P X, Yan Q D, Ding S S. Canopy and leaf gas exchange of Haloxylon ammodendron under different soil moisture regimes. Science China: Life Sciences. 2010, 53(6): 718-728.
(16) Ding S S, Su P X. Effects of tree shading on maize crop within a Poplar-maize compound system in Hexi Corridor oasis, northwestern China. Agroforestry Systems, 2010, 80: 117-129.
(17) Yan Q D, Su P X, Gao S. Comparison of anatomical structure and photosynthetic characteristics between the two photosynthetic organs of the desert plant Hedysarum scoparium. Sciences in Cold and Arid Regions. 2010, 2 (3): 241-249.