[1] 张卫华,张方秋,张守攻,等.马占相思抗旱性生理指标的选择研究[J].中南林学院学报,2005,25(6):56~59.
[2] 张玲,王华、汪天,等.不同桉树品种在低温胁迫下的生理反应[J].安徽农业大学学报,2014,41(3):456~461.
[3] 王红梅,包维楷,李芳兰.不同干旱强度胁迫下白刺花幼苗叶片的生理生化反应[J].应用环境生物学报,2008,14(6):757~762.
[4] 赵和文,崔金腾,王杰,等.干旱胁迫下常春藤响应的生理生化机制[J].中国农学通报,2013,29(7):12~19.
[5] 孔艳菊,孔明高,胡学俭,等.干旱胁迫对黄栌幼苗几个生理指标的影响[J].中南林学院学报,2006,26(4):43~46.
[6] 张志良.植物生理学实验指导[M].北京:高等教育出版社,1990:165~681.
[7] 袁晓华,张中汉.植物生理生化实验[M].北京:高等教育出版社,1983,128~133.
[8] 朱新强,张新颖,师尚礼,等.干旱胁迫下4个苜蓿品种根系抗旱性的比较[J].甘肃农业大学学报,2012,47(1):103~107.
[9]

Damiano R,Rossano M,Comparison of water status indicators for yonug peach tree[J].Irrigation Science,2003,22(1):39~46.
[10]

Feanaasez R J,Reynold J F.Potential growth and drought tolerance of eight desert grasses[J].Oncologic,2000,123:90~98.
[11]

Egert M,Tevini M.Inluence of drought on some physiological parameters symptomatic for oxiditative stresses in leaves of cvives(Alliums schoenoprasum)[J].Environmental and Experimental Botany,2002,48:43~49.
[12]

Hodges D M,Delong J M,Fomey C F,et al.Improving the thiobarbituric acid-reactive-substances assay for estimating lipid peroxidation in plant tissues containing anthocyanin and other interfering compounds[J].Planta.1999,207:604~611.
[13] 曾凡江,张希明,李小明,等.柽柳的水分生理特性研究进展[J].应用生态学报,2002,13(5):611~614.
[14]

Wison JB,Shoot competition and root competition[J].Journal of Applied Ecology,1988,25(1):279~296.
[15]

Guow H,Li B,Zhang X S.Architectural plasticity and growth responses of Hippophae rhamnoides and Caragana intermedia seedlings to simulated water stress[J].Journal of Arid Environments 2007,69(3):385~399.
[16] 束良佐,刘英慧.硅对盐胁迫下玉米幼苗生长的影响[J].农业环境保护,2001,20(1):38~40.
[17] 赵忠,李鹏.渭北黄土高坡主要造林树种根系分布特征及抗旱性研究[J].水土保持学报,2002,16(1):96~99.
[18] 宋海星,李生秀.玉米生长空间对根系吸收特性的影响[J].中国农业科学,2003,36(8):899~904.