共 15 条
[1]
Armstrong W., Brandle R., Jackson M.B., Mechanisms of flood tolerance in plants, Acta Botanica Neerlandica, 43, 4, pp. 307-358, (1994)
[2]
Bacanamwo M., Purcell L.C., Soybean dry matter and N accumulation responses to flooding stress, N sources and hypoxia, Journal of Experimental Botany, 50, 334, pp. 689-696, (1999)
[3]
Bailey-Serres J., Voesenek L.A.C.J., Flooding Stress: Acclimations and Genetic Diversity, Annual Review of Plant Biology, 59, 1, pp. 313-339, (2008)
[4]
Fehr W., Caviness C., Burmood D., Pennington J., Stage of development descriptions for soybeans, Glycine Max (L.) Merrill 1, Crop science, 11, 6, pp. 929-931, (1971)
[5]
Githiri S.M., Watanabe S., Harada K., Takahashi R., QTL analysis of flooding tolerance in soybean at an early vegetative growth stage, Plant Breeding, 125, 6, pp. 613-618, (2006)
[6]
Kim Y.-H., Hwang S.-J., Waqas M., Khan A., Lee J.-H., Lee J.-D., Nguyen H., Lee I.-J., Comparative analysis of endogenous hormones level in two soybean (Glycine max L.) lines differing in waterlogging tolerance, Frontiers in Plant Science, 6, 714, (2015)
[7]
Lee C.-Y., Cho J.-W., Comparisons in anatomical morphology between soybean cultivars of different flooding tolerance under early vegetative flooding conditions, Korean Journal of Crop Science, 52, 3, pp. 320-324, (2007)
[8]
Lee J.-E., Kim H.-S., Kwon Y.-U., Jung G.-H., Lee C.-K., Yun H.-T., Kim C.-K., Responses of Photosynthetic Characters to Waterlogging in Soybean [Glycine max (L.) Merrill], Korean Journal of Crop Science, 55, 2, pp. 111-118, (2010)
[9]
Mustroph A., Improving flooding tolerance of crop plants, Agronomy, 8, 9, (2018)
[10]
Oosterhuis D.M., Scott H.D., Hampton R.E., Wullschleger S.D., Physiological responses of two soybean [Glycine max (L.) Merr] cultivars to short-term flooding, Environmental and Experimental Botany, 30, 1, pp. 85-92, (1990)