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The effects of activated carbon and plants diversity ... - 华南农业大学

The effects of activated carbon and plants diversity ... - 华南农业大学

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华 南 农 业 大 学 农 学 院 第 三 届 综 述 大 赛 获 奖 作 品 论 文 集二 等 奖 作 品related to rice quality during caryopsis development <strong>and</strong> the effect <strong>of</strong> high temperatureon expression[J]. Proteomics, 5:2140-2156.Mahmood T , Jan A , Kakishima M et al. 2006. Proteomic analysis <strong>of</strong> bacterial-blightdefense-responsive proteins in rice leaf blades[J]. Proteomics, 6:6053-6065.Markllam K R , Tanner G J , Caasi-Lit M et al. 1998. Possible protective role for3’,4’-dihydroxyflavones indueed by enhanced UV-B in a UV-tolerant rice cultivar[J].Phytochemistry, 49:1913-1919.P<strong>and</strong>ey A , Mann M. 2000. Proteomics to study genes <strong>and</strong> genomes[J]. Nature,405(15):837-846.Parker R,Timothy J F,Anthony L M et al. 2006. An accurate <strong>and</strong> reproducible method forproteome pr<strong>of</strong>iling <strong>of</strong> the <strong>effects</strong> <strong>of</strong> salt stress in the rice leaf lamina[J]. Plant <strong>and</strong> salinityspecial issue,57(5) :1109-1118.proteins in rice leaf sheath. Proteomics,4:2072-2081.Rakwal R , Komatsu S. 2000. Role <strong>of</strong> jasmonate in the rice (Oryz asativa) selfdefensemechanism using proteome analysis[J]. Electrophoresis,21:2492- 2500.Salekdeh G H,Siopongeo J,Wade L J et al.2002. Proteomic analysis <strong>of</strong> rice leaves duringdrought stress <strong>and</strong> recovery[J]. Proteomics, 2:1131-1145.Shen S H, Jing Y X,Kuang T Y. 2003. Proteomics approach to identify wound-responserelated proteins from rice leaf sheath[J]. Proteomics, 3:527-535.Ventelon-debout M,Delal<strong>and</strong>e F,Brizard J P et a1. 2003. Proteome analysis <strong>of</strong> cuhivar-specificdegradation <strong>of</strong> Oryza sativa indica <strong>and</strong> O. sativa japonica cellular suspensions undergoingrice yellow mottle virus infection. Protcomics, 4(1):216-225.Wang Y M,Kim S G,Kim S T. 2011. Biotic stress-responsive rice proteome:an overview[J].Journal <strong>of</strong> plant biology, 10:1007.Yan S P,Zhang Q Y,Tang Z C et al. 2005. Comparative proteomic analysis provides newinsights into chilling stress responses in rice. Proteomics, 5:484-496.Yang Q S,Wang Y Q,Zhang J J et al. 2007. Identification <strong>of</strong> aluminum-responsive proteins inrice roots by a proteomic approach:Cysteine synthase as a key player in Al response[J].Proteomics, 7:737-749.Zang X , Komatsu S. 2007. A proteomics approach for identifying osmotic-stress-relatedproteins in rice [J]. Phytochemistry, 68:426-437.66

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