[1] 荆家海等: 利用热电49} p, SJ度计则定水势, 《谊物’胜理子通讯》, ?93}(1): 5I-53;
[2] Aspinall, D.: Role of hormancs in adaptation to water stress In adaptation of pia“[towater and high temperature str}.ss, Eds IV, C, Turner, I'.J. Kramer, 1980: 155-'72;
[3] Henson, I, E, et al: Osmotic adjustment to water stress in pearl millet, Plant Cell Envi-ron., Hsiao147-154;
[4] al: Maize leaf elongation: on plant water stress, Science, 1970 (1.60): C}ntinuou.s measurement and close dependence590-591;
[5] Levitt, J, : Response of plant to environmental19'2: 731-13.1;
[6] Sties, , Vol 2, Academic Press, New York;
[7] Levitt, J.: I}}_sponse of plant to envis: , n: nental stress, Voi.2, Academic Press, New York, 1Q80: 131-13;
[8] Ludlow, M.M.: Adaptive signif icance of stomatal respones to water stress, In adaptationof punts to water and high temperature stress, Eds, N, C, Turner and P. 7, Kramer, 1980;
123-138;
[9] Milburn, T.A.: Water flow in plants, Lcngman London and New York, 1979: 193-194;
[10] Morgan, J.M, : O}mcregulation and water stress in higher plants, Ann. Rev, Plant Phy-siol., 1q84 (35): 299-319;
[11] Turner, N.C.: Stomatal behaviour and water status of maize, sorghum and tobacco underfield condition^, Plant Physiol., 1974 (53): 3611-365;
[12] Turner, N_C, et al. Turgor maintenance by osmotic adjustment. A review and valuation, iu adaptation of pants t} water and high temperature stress, 19g0;
155-172;
[13] Wnght, G, C, et aI: Difference between two grain sorghum genotypes in adaptation todrought stress, 兀Rcot water uptake and water use, Aust. 7, Agri, Res 1983 (34) |