Xie Y L, He G W, Xiong J P. The production performance and utilization of Pennisetum hydridum . Sichuan Animal and Veterin Sciences, 1999, (4): 23.
[2]
Ma C J, Liu F G. The research progress of Pennisetum hydridum in the application of ecological environmental governance. Soil and Water Conservation in China, 2012, (1): 41-44.
[3]
Shao X W, Ruan C C, Zhao L P, et al . Effects of water stress on growth and yield of rice in tillering stage. Journal of Jilin Agricultural University, 2005, 27(1): 6-10.
[4]
Yang G Y, Luo Y P, Li B G, et al . Effect of different soil water conditions on growth of root and shoot of winter wheat. Agricultural Research in the Arid Areas, 2003, 21(3): 104-109.
[5]
Arulselvi S, Selvi B. Genetic diversity of seedling traits conferring drought tolerance in pearl millet. Madras Agriculture Journal, 2009, 96(1-6): 40-46.
[6]
Kramer P J.Water Deficit and Plant Growth. Water Relations of Plants[M]. New York: Academic Press, 1983: 342.
[7]
Jiang H J, Li J L, Li L X. Effect of water and fertilizer coupling on ecological characters of Festuca arundinacea under heat stress. Pratacultural Science, 2009, 26(7): 152-157.
[8]
Pan R Z, Wang X J, Li N H. Plant Physiology[M]. Beijing: Higher Education Press, 2008.
[9]
Cao H, Wang X W, Han Z H, et al . Relationship between changes of endopeptidases activity and active oxygen in Malus hupehensis leaves during senescence induced by water stress. Scientia Agricultura Sinica, 2004, 37(2): 274-279.
[10]
Qian Y Q, Sun Z Y, Han L, et al . Response of reactive oxygen and its scavenging system in leaves of Buchloe dactyloides (Nutt.) engelm to water stress. Acta Ecologica Sinica, 2010, 30(7): 1920-1926.
[11]
Xia Y. Effects of water stress on changes of proline and chlorophyll in fruit crops. Journal of Gansu Agricultural University, 1993, 28(1): 26-31.
[12]
Wang R, Liang K L, Zhou Z Y, et al . Effect of different waterlogging stress conditions on growth and some physiological characteristics. Acta Prataculturae Sinica, 2012, 21(1): 149-155.
[13]
Pezeshki S R, Pardue J H, Delaune R D. Leaf gas exchange and growth of flood-tolerant and food-sensitive tree species under low soil redox condition. Tree Physiology, 1996, 16: 453-458.
[14]
Chen L H, Zhang S, Zhao H X, et al . Sex-related adaptive responses to interaction of drought and salinity in Populus yunnanensis . Plant, Cell and Environment , 2010, 33: 1767-1778.
[15]
Xu X, Peng G Q, Wu C C, et al . Drought inhibits photosynthetic capacity more in females than in males of Populus cathayana . Tree Physiology, 2008, 28: 1751-1759.
[16]
Zhang M S, Tan F. Relationship between ratio of chlorophyll a and b under water stress and drought resistance of different sweet potato varieties. Seed, 2001, (4): 23-25.
Xiao Z T, Jiang W J, Yu H J. Research progress in crop water and fertilizer coupling effect. Crops, 2007, (6): 18-22.
[24]
Yu F Y, Xu X Z. A review on plant stress physiology. World Forestry Research, 2003, 16(5): 6-11.
[25]
Tan S D, Zhu M Y, Zhang K R, et al . Effect of submergence on the antioxidative enzymes and carbohydrate contents of Paspalum distichum . Acta Prataculturae Sinica, 2013, 22(1): 217-224.
[26]
Magcale-Macandog D B, Predo C D, Menz K M, et al . Napier grass strips and livestock:a bioeconomic analysis. Agroforestry Systems, 1998, 40(1): 41-58.
[27]
Li C S, Liu P, Cai M Z, et al . Physiological response of buckwheat to acid-aluminum stress in growth. Journal of Soil Water Conservation, 2005, 19(3): 105-109.
[28]
Xu B C, Shan L. A study comparing water use efficiency and root/shoot ratio of Alfalfa and Astragalus adsurgens at seedling stage. Acta Agrestia Sinica, 2003, 11(1): 78-82.
[29]
Lai Y P, Li J, Zhang Z Q, et al . Grey correlation analysis of morphological traits related to drought tolerance of wheat at seedling stage. Journal of Triticeae Crops, 2009, 29(6): 1055-1059.
[30]
Muhammad A A, Amjad A, Shahid N, et al . Morpho-physiological criteria for drought tolerance in Sorghum ( Sorghum bicolor ) at seedling and post-anthesis stages. International Journal of Agriculture and Biology, 2009, 11(6): 674-680.