7LIN Zhifang1,PENG Changlian1,Xu Xinlan1,LIN Guizhu 1 & ZHANG Jingliu2 1.South China Institute of Botany,Chinese Academy of Sciences,Guangdong Key Laboratory of Digital Botanical Garden,Guangzhou 510650,China,2.National Key Laboratory of Plant Molecular Genetics,Institute of Plant Physiology & Ecology,Shanghai Institutes of Biological Sci- ences,Chinese Academy of Sciences,Shanghai 200032,China.Thermostability of photosynthesis in two new chlorophyll b-less rice mutants[J].Science China(Life Sciences),2005,48(2):139-147. 被引量:4
5Cai YZ, Sun M, Wu HX, Huang RH, Harold C (1998). Characterization and quantification of betacyanin pigments from diverse Amaranthus species. J Agr Food Chem, 46 (6): 2063-2070.
6Fukumoto LR, Mazza G (2000). Assessing antioxidant and prooxidant activities of phenolic compounds. J Agr Food Chem, 48:3597-3604.
7Giannopolitis CN, Ries SK (1977). Superoxide dismutase I. Occurrence in higher plants. Plant Physiol, 59 (2): 309-314.
8Lu H, Higgins VJ (1998). Measurement of active oxygen species generated in planta in response to elicitor AVR9 of Cladosporium fulvum. Physiol Mol Plant Pathol, 52 (1): 35-51.
9Ptushenko VV, Gins MS, Gins VK, Tikhonov AN (2002). Interaction of amaranthin with the electron transport chain of chloroplasts. Russ J Plant Physiol, 49 (5): 585-591.
10Sepulveda-Jimenez G, Rueda-Benitez P, Porta H, Rocha-Sosa M (2004). Betacyanin synthesis in red beet (Beta vulgaris) leaves induced by wounding and bacterial infiltration is preceded by an oxidative burst. Physiol Mol Plant Pathol, 64: 125-133.