張東,博士,副教授,碩士生導(dǎo)師,“仲英青年學(xué)者”,1981年9月出生,安徽固鎮(zhèn)人,兼任國家現(xiàn)代蘋果產(chǎn)業(yè)技術(shù)體系、國家蘋果改良中心楊凌分中心和陜西果業(yè)發(fā)展協(xié)同創(chuàng)新中心學(xué)術(shù)秘書,國際園藝學(xué)會會員,是《Journal of Experiment Botany》等期刊審稿人。2004年畢業(yè)于安徽農(nóng)業(yè)大學(xué)園藝系,獲學(xué)士學(xué)位,2006年在浙江大學(xué)大學(xué)獲碩士學(xué)位。2006-2009年,在淮北師范大學(xué)工作。2009-2012年在浙江大學(xué)攻讀博士學(xué)位,期間曾獲“浙江大學(xué)博士生引領(lǐng)計劃一等資助”、“浙江省優(yōu)秀畢業(yè)生”等獎勵或稱號,2012年6月,獲得農(nóng)學(xué)博士學(xué)位。 2012年7月,到西北農(nóng)林科技大學(xué)工作至今。2013年10月至2017年9月,在職進(jìn)入西北農(nóng)林科技大學(xué)園藝學(xué)博士后流動站工作。2017年入選“仲英青年學(xué)者”。
主持國家自然科學(xué)基金、中國博士后科學(xué)基金批特別資助、教育部博士點基金和陜西省科技統(tǒng)籌重點項目、陜西省自然科學(xué)基金等科研項目10余項。先后在《Plant Biotechnology Journal》、《Plant Cell and Physiology》、《BMC Genomics》、《phytochemistry》、《Postharvest Biology and Technology》、《Frontiers in Plant Science》、《Plant Molecular Biology Reporter》、《Scientia Horticulturae》、《Genetic Resources and Crop Evolution》和《園藝學(xué)報》等雜志發(fā)表論文70余篇,其中SCI收錄論文40余篇,參編專著1部,獲授權(quán)國家發(fā)明專利10余項,獲華耐園藝科技獎一等獎1項(3/20)和教育部高等學(xué)校科學(xué)研究優(yōu)秀成果獎(科學(xué)技術(shù))科技進(jìn)步獎二等獎1項(10/20)。
1) Mao J., Zhang D., Zhang X., Li K., Liu Z., Liu X., Meng Y., Lei C*. 2017. Effect of exogenous indole-3-butanoic acid (IBA) application on the morphology, hormone status, and gene expression of developing lateral roots in Malus hupehensis Scientia Horticulturae 232 (2018) 112–120.
2) Zheng L., Ma J., Zhang L., Gao C., Zhang D., Zhao C., Han M*. 2018. Revealing critical mechanisms of BR-mediated apple nursery tree growth using iTRAQ-based proteomic analysis Journal of Proteomics 173 139-154
3) Song C, Zhang D(Co-first author), Zheng L, Han M* (2017) miRNA and Degradome Sequencing Reveal miRNA and Their Target Genes That May Mediate Shoot Growth in Spur Type Mutant “Yanfu 6.” Frontiers in Plant Science. 2017;8:441. doi:10.3389/fpls.2017.00441.
4) Mao J., Zhang D.(Co-first author), Li K., Liu Z., Liu X., Song C., Li G., Zhao C., Ma J., Han M*. 2017. Effect of exogenous Brassinolide (BR) application on the morphology, hormone status, and gene expression of developing lateral roots in Malus hupehensis. Plant Growth Regul. 82 (4) :1-11 DOI 10.1007/ s10725-017-0264-5
5) Bai S, Sun Y, Yang F, Ni J, Qian M, Shu Qun, Zhang D*,Teng Y*. 2017, Transcriptome analysis of bagging-treated fruit peel of red Chinese sand pear ‘Meirensu’ (Pyrus pyrifolia Nakai) reveals insight of light response and differential regulation of anthocyanin accumulation related genes. Scientific Reports 7, 63 doi:10.1038/s41598-017-00069-z
6) Qian M, Ni J, Niu Q, Bai S, Bao L, Li J, Sun Y, Zhang D*,Teng Y*. 2017, Response of miR156-SPL module during the red peel coloration of bagging-treated Chinese sand pear (Pyrus pyrifolia Nakai). Frontiers in Physiology 8:550. doi: 10.3389/fphys.2017.00550
7) Fan S, Zhang D, Gao C, Zhao M, Wu H, Li Y, Shen Y and Han M*. 2017. Identification, Classification, and Expression Analysis of GRAS Gene Family in Malus domestica. Front. Physiol. 8:253. doi: 10.3389/fphys.2017.00253
8) Li Y., Zhang D., Zhang L., Zuo X., Fan S., Zhang X., Shalmani A., Han M*. 2017. Identification and expression analysis of cytokinin response-regulator genes during floral induction in apple (Malus domestica Borkh). Plant Growth Regul. DOI 10.1007/s10725-017-0311-2
9) Fan S, Zhang D, Zhang L., Gao C, Xin M, Mobeen M. Li Y, Ma J. Han M*. Comprehensive analysis of GASA family members in the Malus domestica genome: identification, characterization, and their expressions in response to apple flower induction. BMC Genomics (2017) 18:827. DOI 10.1186/s12864-017-4213-5
10)Fan S, Zhang D, Xing L., Qi S., Du L., Wu H., Shao H., Li Y., Ma J., Han M*. 2017. Phylogenetic analysis of IDD gene family and characterization of its expression in response to flower induction in Malus. Molecular Genetics and Genomics. doi:10.1007/s00438-017-1306-4
11)Chen H., Zuo X., Shao H., Fan S., Ma J., Zhang D., Zhao C., Yan X., Liu X., Han M.* Genome-wide analysis of carotenoid cleavage oxygenase genes and their responses to various phytohormones and abiotic stresses in apple (Malus domestica) 2017 Plant Physiology and Biochemistry DOI: 10.1016/j.plaphy.2017.12.001
12)Chen H., Shao H., Li K., ZhangD., Fan S., Li Y., Han M.* Genome-wide identification, evolution, and expression analysis of GATA transcription factors in apple (Malus ×domestica Borkh.) Gene. 2017, 5;627:460-472. doi: 10.1016/j.gene.2017.06.049.
13)Du L.,Qi S., Ma J., Xing L., Fan S., Zhang S., Li Y., Shen Y., Zhang D., Han M.* Identification of TPS family members in apple (Malus x domestica Borkh.) and the effect of sucrose sprays on TPS expression and floral induction. Plant Physiology and Biochemistry. 2017, 120,10-23
14)Bao L., Li K., Teng Y., Zhang D*. 2017. Characterization of the complete chloroplast genome of the wild Himalayan pear Pyrus pashia (Rosales: Rosaceae: Maloideae). Conservation Genet Resour, 9:1-3.
15)Zheng L., Ma J., Zhang L., Gao C., Zhang D., Zhao C., Song C., An N., Qi S., Han M*. 2017., Genome-wide identification and expression profiling analysis of brassinolide signal transduction genes regulating apple tree architecture. Acta Physiol Plant (2017) 39:177
16)Chen H, Shao H, Fan S, Ma J, Zhang D, Han M. 2016. Identification and Phylogenetic Analysis of the POLYGALACTURONASE Gene Family in Apple. Horticultural Plant Journal 2, 241-252.
17)Xing L., Zhang D.(Co-first author), Zhao C., Li Y., Ma J., An na., Han M*. 2016. Shoot bending promotes flower bud formation by miRNA-mediated regulation in apple (Malus domestica Borkh.) Plant Biotechnology Journal doi: 10.1111/pbi.12425
18)Xing L., Zhang D. (Co-first author), Song X. Weng K. Zhao C., Li Y., Ma J., An na., Han M*. 2016. Identifying genome-wide sequence variations and comparing floral-associated traits based on re-sequencing of two varieties of apple (Malus domestica Borkh.) ‘Nagafu No. 2’ and ‘Qinguan’. Frontiers in Plant Science
19)Fan S, Zhang D (Co-first author), Zhao C, Ma J., Han M*.2016. Correlative Proteome by iTRAQ Analysis Reveals Critical Mechanisms in Alternate Bearing Malus prunifolia; Journal of Proteome Research, 2016, 15(10).
20)Zhang S, Zhang D (Co-first author), Fan S, Du L, Shen Y, Xing L, Li Y, Ma J, Han M* Effect of exogenous GA3 and its inhibitor paclobutrazol on floral formation, endogenous hormones, and flowering-associated genes in ‘Fuji’ apple (Malus domestica Borkh.);Plant Physiology and Biochemistry; 2016 107:178-186
21)Song C., Zhang D.(Co-first author), Zhao C., Han M*.2016.Expressions analysis of key auxin synthesis, transport and metabolism genes in different young dwarfing apple trees. Acta Physiologiae Plantarum DOI 10.1007/s11738-016-2065-2
22)Bao L., Li K., Liu Z., Han M., Zhang D*. 2016. Characterization of the complete chloroplast genome of the Chinese crabapple Malus prunifolia (Rosales: Rosaceae: Maloideae). Conservation Genet Resour. DOI 10.1007/s12686-016-0540-0
23)Li G., Ma J., Tan M., Mao J., An na., Sha G., Zhang D., Zhao C., Han M*. 2016. Transcriptome analysis reveals the effects of sugar metabolism and auxin and 4 cytokinin signaling pathways on root growth and development of grafted apple, BMC Genomics, DOI 10.1186/s12864-016-2484-x
24)Xing L., Zhang D.(Co-first author), Li Y., Zhao C., Zhang S., Shen Y., An na., Han M*. 2015. 'Transcription profiles reveal sugar and hormone signaling pathways mediating flower induction in apple (Malus domestica Borkh.). Plant Cell Physiology doi:10.1093/pcp/pcv124
25)Xing L., Zhang D.(Co-first author), Li Y., Zhao C., Zhang S., Shen Y., An na., Han M*. 2014. Genome-wide identification of vegetative phase transition-associated microRNAs and target predictions using degradome sequencing in Malus hupehensis. BMC Genomics, 15:1125 doi:10.1186/1471-2164-15-1125
26)Li Y., Zhang D.(Co-first author), Xing L., Zhao C., Han M*.2015. Effect of 6-benzylaminopurine (6-BA) spraying on branch type, floral induction and initiation, and related gene expression in'Fuji'apple (Malus domestica Borkh). Plant Growth Regulation DOI 10.1007/s10725-015-0111-5
27)Li B., Wang J., Ren X., Bao L., Zhang L., Zhang L., Han M., Zhang D.*. 2015 Root growth, yield and fruit quality of 'Red Fuji' apple trees in relation to planting depth of dwarfing interstock on the Loess Plateau. European Journal of Horticultural Science, 2015, 80(3):109-116.
28)Teng Y*, Zhang D, Yu B, Qian M, Wang S, Li X, Su J and Shu Q. 2015. Comparison of anthocyanin accumulation of red Chinese sand pear (Pyrus pyrifolia Nakai) grown at two locations. Acta Horticulturae, 1094:175-182.
29)Qian M, Sun Y, Andrew A. Teng Y, Zhang D*. 2014. The red sport of 'Zaosu'pear and its red-striped pigmentation pattern are associated with demethylation of the PyMYB10 promoter. Phytochemistry 107:16-23. (IF=3.5)
30)Qian M, Yu B, Teng Y, Zhang D*. 2014. Isolation and expression analysis of anthocyanin biosynthesis genes from the red Chinese sand pear, Pyrus pyrifolia Nakai cv. Mantianhong, in response to methyl jasmonate treatment and UV-B/VIS conditions. Plant Molecular Biology Reporter 32:48-437 (IF=2.8)
31)Sun Y, Qian M, Wu R, Niu Q, Teng Y, Zhang D*. 2014.Postharvest pigmentation in red Chinese sand pears (Pyrus pyrifolia Nakai) in response to optimum light and temperature. Postharvest Biology and Technology 91:64-71.
32)Zhang Q, Han M*, Song C, Song X, Zhao C, Liu H, Hirst PM, Zhang D. 2014. Optimizing planting density for production of high-quality apple nursery stock in China. New Zealand Journal of Crop and Horticultural Science. http://dx.doi.org/10.1080/01140671.2014.900093
33)Zhang D, Qian M, Yu B and Teng Y. 2013. Effect of fruit maturity on UV-B-induced post-harvest anthocyanin accumulation in red Chinese sand pear. Acta Physiologiae Plantarum. 35 (9):2857-2866.
34)Zhang D, Teng Y and Bao L. 2011. Genetic diversity of red skinned Chinese sand pear cultivars revealed by AFLP markers. Acta Horticulturae, 918:679-684.
35)Zhang D, Yu B, Bai J, Qian M, Shu Q, Su J, Teng Y. 2012. Effects of high temperatures on UV-B/visible irradiation induced postharvest anthocyanin accumulation in 'Yunhongli No. 1' (Pyrus pyrifolia Nakai) pears. Scientia Horticulturae, 134:53-59.
36)Qian M, Zhang D(Co-first author), Yue X, Wang S, Li X and Teng Y. 2013. Analysis of different pigmentation patterns in 'Mantianhong' (Pyrus pyrifolia Nakai) and 'Cascade' (P. communis L.) under bagging treatment and postharvest UV-B/visible irradiation conditions. Scientia Horticulturae, 151:75-82.
37)Yu B, Zhang D(Co-first author), ang C, Qian M, Zheng X. Teng Y, Su J, and Shu Q. 2012. Isolation of anthocyanin biosynthetic genes in red Chinese sand pear (Pyrus pyrifolia Nakai) and their expression as affected by organ/tissue, cultivar, bagging and fruit side. Scientia Horticulturae, 136:29-37.
38)Liu D, Zhang D, Liu G, Hussain S and Teng Y. 2013. Influence of heat stress on leaf ultrastructure, photosynthetic performance and ascorbate peroxidase gene expression of two pear cultivars (Pyrus pyrifolia). Journal of Zhejiang University SCIENCE B 14(12):1070-1083.
39)Bao L, Chen K, Zhang D, Li X and Teng Y. 2008. An Assessment of Genetic Variability and Relationships within Asian Pears Based on AFLP (Amplified Fragment Length Polymorphism) Markers. Scientia Horticulturae, 116:374-380.
40)Bao L, Chen K,Zhang D,Cao Y, Yamamoto T and Teng Y. 2007. Genetic diversity and similarity of pear cultivars native to East Asia revealed by SSR (Simple Sequence Repeat) markers. Genetic Resources and Crop Evolution, 54:959-971.