Huang M, Guo Z. Responses of antioxidative system to chilling stress in two rice cultivars differing in sensitivity[J]. Biologia Plantarum, 2005, 49 (1):81-84
[8]
Morsy M R, Jouve L, Hausman J F, Hoffmann L. Alteration of oxidative and carbohydrate metabolism under abiotic stress in two rice (Oryza sativa L.) genotypes contrasting chilling tolerance[J]. Journal of Plant Physiology, 2007, 164(2):157-167
[9]
Li X, Cao K, Wang C, Sun Z W, Yan L N. Variation of photosynthetic tolerance of rice cultivars (Oryza sativa L.) to chilling temperature in the light[J]. African Journal of Biotechnology, 2010, 9(9):1325-1337
Yan Q Y, Duan Z Q, Mao J D, Li X, Dong F. Low root zone temperature limits nutrient effects on cucumber seedling growth and induces adversity physiological response[J]. Journal of Integrative Agriculture, 2013, 12(8):1450-1460
[12]
Sun S J, Li J M, Zong J W, Yao Y Z, Chen K L. Effects of sub-low temperature and drought stress on root morphology and leaf structure of tomato seedlings[J]. Chinese Journal of Applied Ecology, 2012, 23(11):3027-3032
Guo Z, Ou W, Lu S, Zhong Q. Differential responses of antioxidative system to chilling and drought in four rice cultivars differing in sensitivity[J]. Plant Physiol Biochem, 2006, 44(11/12):828-836
Sun X C, Hu C X, Tan Q L. Effects of molybdenum on antioxidative defense system and membrane lipid peroxidation in winter wheat under low temperature stress[J]. Journal of Plant Physiology and Molecular Biology, 2006, 32(2):175-182
[22]
Satvir K, Meenakshi A, Anil K G, Narinder K. Exploration of biochemical and molecular diversity in chickpea seeds to categorize cold stress-tolerant and susceptible genotypes[J]. Acta Physiology Plant, 2012, 34(2):569-580
Moieni K Z, Karimzadeh G, Sharifi M. Evaluation of total soluble protein and antioxidant activities in two spring cultivars of canola (Brassica napus L.) in response to low temperature[J]. International Journal of Agriculture and Crop Sciences, 2013, 5(4):401-409