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[21] Liu CX, Fan PG, He MX, Zhang HH, Liu XJ, Luo ZR, Ombwara FK, Liang ZC*, Li SH*. Inheritance of muscat berry volatiles in grape interspecific cross population. Euphytica. 2015,1-17
[22] Liu H, Wang CP, Chen F, Shen SH*. Proteomic analysis of oil bodies in mature Jatropha curcas seeds with different lipid content. Journal of Proteomics. 2015, 113:403-414.
[23] Liu RL, Xu Y, Li BQ, Qin GZ, Tian SP*. The role of 1-methylcyclopropene in lipid peroxidation, anti-oxidant enzyme activities, and ethylene biosynthesis in ‘Laiyang’ pear (Pyrus bretschneideri Rehd.) during fruit ripening. Journal of Horticultural Science & Biotechnology. 2015, 90:210-216.
[24] Liu SJ, Song SH, Wang WQ, Song SQ*. De novo assembly and characterization of germinating lettuce seed transcriptome using Illumina paired-end sequencing. Plant Physiology and Biochemistry. 2015,96: 154-162.
[25] Liu YB, Zhang YX, Song SQ*, Li JS, Stewart CN, Wei W, Zhao YJ, Wang WQ*. A proteomic analysis of seeds from Bt-transgenic Brassica napus and hybrids with wild B. juncea. Scientific Reports. 2015,5:15480
[26] Ma BQ, Chen J, Zheng HY, Fang Ting, Ogutu C, Li SH, Han YP*, Wu BH. Comparative assessment of sugar and malic acid composition in cultivated and wild apples. Food Chemistry. 2015, 172:86-91.
[27] Ma QH*, Liu YC: TaDIR13, a dirigent protein from wheat, promotes lignan biosynthesis and enhances pathogen resistance. Plant Molecular Biology Reporter. 2015, 33:143-152.
[28] Ma QH*, Luo HR: Biochemical characterization of caffeoyl coenzyme A 3-O-methyltransferase from wheat. Planta. 2015, 242:113-122.
[29] Mocoeur A, Zhang YM, Liu ZQ, Shen X, Zhang LM, Rasmussen SK*, Jing HC*. Stability and genetic control of morphological, biomass and biofuel traits under temperate maritime and continental conditions in sweet sorghum (Sorghum bicolour). Theoretical and Applied Genetics. 2015, 128:1685-1701.
[30] Peng XJ, Wu QQ, Teng LH, Tang F, Pi Z, Shen SH*. Transcriptional regulation of the paper mulberry under cold stress as revealed by a comprehensive analysis of transcription factors. BMC Plant Biology. 2015, 15.
[31] Peng XJ, Teng LH, Yan XQ, Zhao ML, Shen SH*. The cold responsive mechanism of the paper mulberry: decreased photosynthesis capacity and increased starch accumulation. BMC Genomics. 2015, 16:898.
[32] Qiu ZB, Li XJ, Zhao YY, Zhang MM, Wan YL, Cao DC, Lu SF, Lin JX*. Genome-wide analysis reveals dynamic changes in expression of microRNAs during vascular cambium development in Chinese fir, Cunninghamia lanceolata. Journal of Experimental Botany. 2015, 66:3041-3054.
[33] Schippers JHM*, Schmidt R, Wagstaff C, Jing HC*. Living to Die and dying to live: the survival strategy behind leaf senescence. Plant Physiology. 2015,169, 914–930
[34] Shen X, Liu ZQ, Mocoeur A, Xia Y, Jing HC*. PAV markers in Sorghum bicolour: genome pattern, affected genes and pathways, and genetic linkage map construction. Theoretical and Applied Genetics. 2015, 128:623-637.
[35] Su LY, Dai ZW, Li SH*, Xin HP. A novel system for evaluating drought-cold tolerance of grapevines using chlorophyll fluorescence. BMC Plant Biology. 2015, 15.
[36] Sun XM, Fan GT, Su LY, Wang WJ, Liang ZC, Li SH*, Xin HP. Identification of cold-inducible microRNAs in grapevine. Frontiers in Plant Science. 2015, 6.
[37] Suo JW, Chen SX, Zhao Q, Shi L*, Dai SJ*. Fern spore germination in response to environmental factors. Frontiers in Biology. 2015, 10(4):358-376.
[38] Wang JF, Ma L, Xi HF, Wang LJ*, Li SH. Resveratrol synthesis under natural conditions and after UV-C irradiation in berry skin is associated with berry development stages in‘Beihong’ (V. vinifera x V. amurensis). Food Chemistry. 2015, 168:430-438.
[39] Wang JJ, Lai LM, Zhao XC, Jiang LH, Wang YJ, Zhou JH, Wang F, Zhang C, Zheng YR*. Litter priming and trenching greatly affect soil respiration in a mature subtropical evergreen broadleaf forest in southwestern China. Contemporary Problems of Ecology. 2015, 8(4): 486-494.
[40] Wang L, Li H, Lv XQ, Chen Tong, Li, RL, Xue YQ, Jiang JJ, Jin B, Baluska F, Samaj J, Wang XL, Lin JX*.
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