Quarrie S A, Stojanovic J, Pekic S. Improing drought resistance in small-frained cereals: A case study, progress and prospects. Plant Growth Regulation, 1999, 29: 1-21.
[24]
Costa Frana M G, Pham Thi A T, Pimentel C, et al. Differences in growth and water relations among Phaseolus vulgaris cultivars in response to induced drought stress. Environmental and Experimental Botany, 2000, 43: 227-237.
[25]
Sánchez F J, Manzanares M, de Andres E F, et al. Turgor maintenance, osmotic adjustment and soluble sugar and proline accumulation in 49 pea cultivars in response to water stress. Field Crops Research, 1998, 59: 225-235.
[26]
Patakas A, Nikolaou N, Zioziou E, et al. The role of organic solute and ion accumulation in osmotic adjustment in drought- stressed grapevines. Plant Science, 2002, 163: 361-367.
[27]
Mead J F. Free radical mechanisms of lipid damage and consequences for cellular membranes. Free Radical In Biology. New York: Academic Press, 1976.
[28]
赵可夫, 冯立田, 张圣强. 黄河三角洲不同生态型芦苇对盐度适应生理的研究 I. 渗透调节物质及其贡献. 生态学报, 1998, 18(5): 463-469.
Placer Z A, Cushman L L, Johnson B C. Estimation of product of lipid peroxidation (malonyl dialdehyde) in biochemical systems. Analytical Biochemistry, 1996, 16: 359-364.
Wang J, Li D Q. The accumulation of plant osmoticum and active oxygen metablism under stress. Chinese Bulletin of Botany, 2001, 18(4): 459-465.
[33]
Lima A L S, Damatta F M, Pinheiro H A, et al. Photochemical response and oxidative stress in two clones of Coffea canephora under water deficit conditions. Environmental and Experimental Botany, 2002, 47: 239-247.
[34]
Liu P, Yang Y S, Xu G, et al. Physiological response of rare and endangered seven-son-flower (Heptacodium miconioides) to light stress under habitat fragmentation. Environmental and Experimental Botany, 2006, 57(1-2): 32-40.