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Li S, Wang X, He S, Li J, Huang Q, Imaizumi T, Qu LQ, Qin G, Qu LJ, Gu HY*. 2016. CFLAP1 and CFLAP2 are two bHLH transcription factors participating in synergistic regulation of AtCFL1-mediated cuticle development in Arabidopsis. PLoS Genetics, 12: e1005744 [more]
Dong XB, Zhang D, Liu J, Liu QQ, Liu HL, Tian L, Jiang L, Qu LQ*. 2015. Plastidial disproportionating enzyme participates in starch synthesis in rice endosperm by transferring maltooligosyl groups from amylose and amylopectin to amylopectin. Plant Physiology, 169: 2496-2512 [more]
Qian DD, Tian L, Qu LQ*. 2015. Proteomic analysis of endoplasmic reticulum stress responses in rice seeds. Scientific Reports, 5: 14255 [more]
Xu XP, Liu H, Tian L, Dong XB, Shen SH, Qu LQ*. 2015. Integrated and comparative proteomics of high-oil and high-protein soybean seeds. Food Chemistry, 172: 105-116 [more]
Yin ZJ, Liu HL, Dong XB, Tian L, Xiao L, Xu YN, Qu LQ*. 2014. Increasing α-linolenic acid content in rice bran by embryo-specific expression of ω-3/Δ15-desaturase gene. Molecular Breeding, 33: 987-996 [more]
Tian L, Dai LL, Yin ZJ, Fukuda M, Kumamaru K, Dong XB, Xu XP, Qu LQ*. 2013. Small GTPase Sar1 is crucial for proglutelin and α-globulin export from endoplasmic reticulum in rice endosperm. Journal of Experimental Botany, 64: 2831-2845 [more]
Liu WX, Liu HL, Qu LQ*. 2013. Embryo-specific expression of soybean oleosin altered oil body morphogenesis and increased lipid content in transgenic rice seeds. Theoretical and Applied Genetics, 126: 2289-2297 [more]
Liu HL, Yin ZJ, Xiao L, Xu YN, Qu LQ*. 2012. Identification and evaluation of ω-3 fatty acid desaturase genes for hyper-fortifying α-linolenic acid in transgenic rice seed. Journal of Experimental Botany, 63: 3279-3287 [more]
Yu HT, Wang T*. 2016. Proteomic dissection of endosperm starch granule associated proteins reveals a network coordinating starch biosynthesis and amino acid metabolism and glycolysis in rice endosperms. Frontiers in Plant Science, 7:707 [more]
Li Q, Deng ZY, Gong CY, Wang T*. 2016. The rice eukaryotic translation initiation factor 3 subunit f (OseIF3f) is involved in microgametogenesis. Frontiers in Plant Science, 7: 532 [more]