[1] Bagstad K J, Stromberg J C, Lite S J. Response of herbaceous riparian plants to rain and flooding on the San Pedro River, Arizona, USA [J]. Wetlands,2005,25(1):210-223
[2] Kinley T A, Newhouse N J. Relationship of riparian reserve zone width to bird density and diversity in southeastern British Columbia [J]. Northwest Science,1997,71(2):75-86
[3] 邓红兵,王青春,王庆礼. 河岸植被缓冲带与河岸带管理[J]. 应用生态学报,2001,12(6):951-954
[4] 胡化广,张振铭,沈晓华. 5种草坪草对水涝胁迫的反应及耐涝评价[J]. 草地学报,2011,19(2):253-256
[5] 姜爱军,周学东,周桂香,等. 长江下游异常雨涝及其对农业影响的评估[J]. 地理学报,2000,55(S):46-51
[6] Kotschy K, Rogers K. Reed clonal characteristics and response to disturbance in a semi-arid river [J]. Aquatic Botany, 2008,88(1):47-56
[7] 刘可心,李科云,杨知建. 耐淹性草种的研究进展[J]. 草业科学,2008,25(7):11-18
[8] Jones H E, Etherington J R. Comparative studies of plant growth and distribution in relation to waterlogging: I.The survival of Erica cinerea and E. tetralix and its apparent relationship to iron and manganese uptake in waterlogged soil [J]. Journal of Ecology,1970,58(2):487-496
[9] Cooper A. The effects of salinity and waterlogging on the growth and cation uptake of salt-marsh plants [J]. New Phytologist,1982,90(2):263-275
[10] Fry J D. Submersion tolerance of warm-season turfgrasses [J]. HortScience,1991,26(7):927
[11] Baruch Z. Responses to drought and flooding in tropical forage grasses [J]. Plant and Soil,1994,164(1):87-96
[12] Liao J, Jiang M, Li L. Effects of simulated submergence on survival and recovery growth of three species in water fluctuation zone of the Three Gorges reservoir [J]. Acta Ecologica Sinica,2010,30(4):216-220
[13] 谭淑端,朱明勇,张克荣,等. 水淹对双穗雀稗抗氧化酶活性及碳水化合物含量的影响[J]. 草业学报,2013,22(1):217-224
[14] 谭淑端,张守君,张克荣,等. 长期深淹对三峡库区三种草本植物的恢复生长及光合特性的影响[J]. 武汉植物学研究,2009,27(4):391-396
[15] 谭淑端,朱明勇,党海山,等. 三峡库区狗牙根对深淹胁迫的生理响应[J]. 生态学报,2009,29(7):3685-3691
[16] Mommer L, Lenssen J P M, Huber H, et al. Ecophysiological determinants of plant performance under flooding: a comparative study of seven plant families [J]. Journal of Ecology,2006,94(6):1117-1129
[17] 时明芝,周保松. 植物涝害和耐涝机理研究进展[J]. 安徽农业科学,2006,34(2):209-210
[18] 李娅,曾波,叶小齐,等. 水淹对三峡库区岸生植物秋华柳 (Salix variegata Franch.) 存活和恢复生长的影响[J]. 生态学报,2008,28(5):1923-1930
[19] Schlichting C D. The evolution of phenotypic plasticity in plants [J]. Annual Review of Ecology and Systematics,1986,17:667-693
[20] Poorter H, Niklas K J, Reich P B, et al. Biomass allocation to leaves, stems and roots: meta-analyses of interspecific variation and environmental control [J]. New Phytologist,2012,193(1):30-50
[21] 金茜,王瑞,周向睿,等. 水淹胁迫对紫穗槐生长及营养元素积累的影响[J]. 草业科学,2013,30(6):904-909
[22] Striker G G. Time is on our side: The importance of considering a recovery period when assessing flooding tolerance in plants [J]. Ecological Research,2012,27(5):983-987
[23] Voesenek L, Rijnders J, Peeters A J M, et al. Plant hormones regulate fast shoot elongation under water: From genes to communities [J]. Ecology,2004,85(1):16-27
[24] Chen X, Huber H, de Kroon H, et al. Intraspecific variation in the magnitude and pattern of flooding-induced shoot elongation in Rumex palustris [J] .Annals of botany,2009,104(6):1057-1067
[25] Bailey-Serres J, Voesenek L. Flooding stress: Acclimations and genetic diversity [J]. Annual Review of Plant Biology,2008,59:313-339
[26] Bailey-Serres J, Voesenek L. Life in the balance: A signaling network controlling survival of flooding [J]. Current Opinion in Plant Biology,2010,13(5):489-494
[27] Malik A I, Colmer T D, Lambers H, et al. Short-term waterlogging has long-term effects on the growth and physiology of wheat [J]. New Phytologist,2002,153(2):225-236
[28] Real D, Warden J, Sandral G A, et al. Waterlogging tolerance and recovery of 10 Lotus species [J]. Animal Production Science,2008,48(4):480-487
[29] Armstrong W, Brndle R, Jackson M B. Mechanisms of flood tolerance in plants [J]. Acta Botanica Neerlandica, 1994,43(4):307-358
[30] 董登峰,骆炳山. 小麦苗期和孕穗期涝渍的某些生理特性比较研究[J]. 广西农业大学学报,1998,17(4):351-355
[31] Vashisht D, Hesselink A, Pierik R, et al. Natural variation of submergence tolerance among Arabidopsis thaliana accessions [J]. New Phytologist,2011,190(2):299-310
[32] Voesenek L, Colmer T D, Pierik R, et al. How plants cope with complete submergence [J]. New Phytologist,2006,170(2):213-226
[33] 刘友良. 植物水分逆境生理[M]. 北京:农业出版社,1992
[34] Jackson M B, Ram P C. Physiological and molecular basis of susceptibility and tolerance of rice plants to complete submergence [J]. Annals of Botany,2003,91(2):227-241
[35] 李玉昌,李阳生,李绍清. 淹涝胁迫对水稻生长发育危害与耐淹性机理研究的进展[J]. 中国水稻科学,1998,12(S1):70-76
[36] Okamoto G, Ueki K, Imai T, et al. A comparative study of drought and excess-water tolerance in Vitis coignetiae and several table grapes grown in Japan [J]. Scientific Reports of the Faculty of Agriculture,2004,93(1):39-43
[37] 汤聪,郭微,蔡桂芬,等. 高温高湿环境佛甲草栽培基质的研制[J]. 草业科学,2013,30(3):334-340
[38] Imaz J A, Giménez D O, Grimoldi A A, et al. The effects of submergence on anatomical, morphological and biomass allocation responses of tropical grasses Chloris gayana and Panicum coloratum at seedling stage [J]. Crop and Pasture Science,2013,63(12):1145-1155
[39] Mollard F P O, Striker G G, Ploschuk E L, et al. Subtle topographical differences along a floodplain promote different plant strategies among Paspalum dilatatum subspecies and populations [J]. Austral Ecology,2010,35(2):189-196 |