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As a reporter for gene expression in walnut somatic embryos, Plant Cell Rep,2015,34:861-869.(SCI) 5.Zhang Q.X., Liu H.J., Hu H.K., Li S.F., Ying Y.Q., Wu J.S. Analysis of the DNA methylation on Camptotheca acuminata decne plants growing in vitro in response to sodium chloride stress, Propagation of Ornamental Plants. 2014, 14(2):76-83.(SCI) 6.Zhang Q.X., Shen Y.K., Shao R.X., Fang J., He Y.Q., Ren J.X., Zheng B.S., Chen G.J. Genetic diversity of natural Miscanthus sinensis populations in China revealed by ISSR markers. Biochemical Systematics and Ecology.2013, 48:248-256.(SCI) 7.Guo H.P., Shao R.X., Hong C.T., Hu H.K., Zheng B.S.,Zhang Q.X. (通讯作者). Rapid in vitro propagation of bioenergy crop Miscanthus sacchariflorus. Applied Mechanics and Materials, 2012,260-261:181-186.(EI) 8.Zhang Q.X., Hu H.K., Huang Y.J., Han K.Y., Xv H.W., Shen Y.Q., Li S.F., Huang J.Q. The relationship between developmental stages of zygotic embryos at explanting and embryogenic frequency on hickory (Carya cathayensis Sarg.), Scientia Horticulturae. 2012,139:66-70.(SCI) 9.Zhang Q.X.,Sun Y., Hu H.K., Chen B., Hong C.T., Guo H.P., Pan Y.H., Zheng B.S. Micropropagation and plant regeneration from embryogenic callus of Miscanthus sinensis. In Vitro Cellular & Developmental Biology – Plant. 2012,48: 50-57. (SCI) 10.Zhang Q.X., Hu H.K., Lin H.Y., Huang Y.J., Yuan J., Xv H.W., Han K.Y., Huang L.C., Huang J.Q. Somatic embryogenesis and plant regeneration from immature hickory (Carya cathayensis Sarg.) embryos,Propagation of Ornamental Plants. 2011,11 (3):137-143.(SCI) 11.Zhang Q.X., Hu H.K., Wang A.X., Fang Y.M.,. Somatic embryogenesis and plant regeneration of Clematis ‘Multi-Blue’. Propagation of Ornamental Plants. 2011,11 (1):21-27. (SCI) 12.Hu H.K.,Zhang Q.X., Jiang X.M., Han K.Y., Shen Y.Q., Lv F.Y., Huang J.Q. Efficient immature embryo germination in vitro of hickory (Carya cathayensis Sarg.), Propagation of Ornamental Plants, 2011, 11(2):96-101. (SCI) 13.Han K.Y., Hu H.K., Li S.F., Xv H.W., Lin H.Y.,Zhang Q.X. (通讯作者).Micropropagation of Vaccinium bracteatum Thunb. African Journal of Biotechnology.2013,12(7) : 695-701 . 14.Chen W.C, Zhang J.Q, Zheng S., Wang Z.Q., Xu C.M,Zhang Q.X., Wu J.S. ,HLou H.Q. Metabolite profiling and transcriptome analyses reveal novel regulatory mechanisms of melatonin biosynthesis in hickory, Chen et al. 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Plant Sci., 2020,11,84. oi.org/10.3389/fpls.2020.00084.(SCI) 17.Fan T.Q.,Zhang Q.X., Hu Y.Y., Wang Z.J., HuangY.J., Genome-wide identification of lncRNAs during hickory (Carya cathayensis) flowering, Functional & Integrative Genomics ,2020,20:591-607.(SCI) 18.Huang Y.J., XiaoL.H., Zhang Z.G., Zhang R., Wang Z.J., Huang C.Y., Huang R., Luan Y.M., Fan T.G., Wang J.H., Shen C., Zhang S.M., Wang X.W., Jennifer Randall , Zheng B.S., Wu J.S.,Zhang Q.X., Xia G.H., Xu C.M., Chen M., Zhang L.S., Jiang W.K., Gao L.Z., Chen Z.D., Leslie C.A. , L.J. Grauke, Huang J.Q., The genomes of pecan and Chinese hickory provide insights into Carya evolution and nut nutrition, GigaScience, 8, 2019, doi: 10.1093/gigascience/giz036.(SCI) 19.Huang J.Q, Zhang T.,Zhang Q.X., Chen M.. Wang Z.J., Zheng B.S., Xia G.H., Yang X.Y., Huang C.Y., Huang Y.J. The mechanism of high contents of oil and oleic acid revealed by transcriptomic and lipidomic analysis during embryogenesis in Carya cathayensis Sarg., BMC Genomics, 2016, 17:113, DOI 10.1186/s12864-016-2434-7.(SCI) 20. Huang Y.J, Zhou Q., Huang J.Q., Zeng Y.R., Wang Z.J.,Zhang Q.X., Zhu Y.H., Shen C.,Zheng B.S..Transcriptional profiling by DDRT-PCR analysis reveals gene expression during seed development in Carya cathayensis Sarg. Plant Physiology and Biochemistry ,2015,91 :28-35.(SCI) 21.Huang Y.J., Liu L.L., Huang J.Q. Wang Z.J., Chen F.F.,Zhang Q.X., Zheng B.S., Chen M., Use of transcriptome sequencing to understand the pistillate flowering in hickory (Carya cathayensis Sarg.), BMC Genomics, 2013, 14:691 doi:10.1186/1471-2164-14-691.(SCI) 22.魏晶晶,胡恒康,张佳琦,严泽埔,王正加,李岩,王克涛,张瑞,梁婧,黄坚钦,黄有军,娄和强,张启香(通讯作者).薄壳山核桃赤霉素氧化酶基因CiGA2ox1克隆与功能分析,果树学报,2022,39(8):368-1381. 23.周佳君,胡恒康,龚丽,干安格,喻卫武,吴家胜,黄坚钦,张启香(通讯作者).农杆菌介导的香榧幼胚遗传转化体系,浙江农林大学学报,2022,39(1):13-21. 24.魏广利,梁璧,张佳琦,胡恒康,黄有军,娄和强,张启香(通讯作者).山核桃赤霉素氧化酶基因CcGA3ox的克隆和功能分析,果树学报,2021,38(1):13-28. 25.任飞,张佳琦,胡恒康,梁璧,黄有军,娄和强,张启香(通讯作者).红色荧光蛋白基因DsRED在核桃植株再生过程中的表达稳定性,林业科学,2020,56(12):166-176.(EI) 26.梁璧,张佳琦,任飞,胡恒康,徐川梅,胡渊渊,黄有军,娄和强,张启香(通讯作者).山核桃贝壳杉烯氧化酶基因CcKO的克隆和表达分析,林业科学,2020,56(10):70-82.(EI) 27.张佳琦,胡恒康,徐川梅,胡渊渊,黄有军,夏国华,黄坚钦,常英英,叶磊,娄和强,张启香(通讯作者).核桃JrGA2ox基因的克隆、亚细胞定位及功能验证,林业科学,2019,55(2):50-60.(EI) 28.龚丽,胡恒康,胡渊渊,喻卫武,吴家胜,黄坚钦,张启香(通讯作者).香榧幼胚发育与胚性感受态之间的相关性,浙江农林大学学报,2018,35(5):861-867. 29.项伟波,赵金凯,吴家胜,黄坚钦,喻卫武,吴连海,张启香(通讯作者).香榧体细胞胚发生、发育的形态与细胞学观察,园艺学报,2015,42 (8):1477-1486. 30.李顺福,胡恒康,张秋露,徐艳玲,张启香(通讯作者).基于ISSR分子标记技术的山核桃幼胚DNA甲基化初步研究,浙江农林大学学报,2014,31(4):521-527. 31.姚进,黄坚钦,胡恒康,裘林艳,朱旻华,张启香(通讯作者).香榧体细胞胚发生的初步研究.浙江农林大学学报, 2013, 30(1): 129-135. 32.张启香,胡恒康,王正加,袁佳,万俊丽,黄坚钦.山核桃间接体细胞胚发生和植株再生,园艺学报,2011,38(6): 1063-1070. 33.袁佳,胡恒康,方炎明,张启香(通讯作者).不同培养条件对铁线莲不定芽增殖及玻璃化的影响.西北植物学报,2011,31(2): 0401-0406. 34.张启香,胡恒康,方炎明.铁线莲品种‘Multi-Blue’不定根的诱导培养及其发生过程的解剖学观察,植物资源与环境学报, 2010, 19(1): 80-85. 35.张启香,胡恒康,方炎明.铁线莲品种‘Multi-Blue’体细胞胚诱导和植株再生.南京林业大学学报, 2010, 34(6): 18-22. 36.张启香,付素静,方炎明,陈娜,铁皮石斛拟原球茎的发生过程.浙江林学院学报,2009,26(3):444-448. 37.张启香,方炎明,吕梅,陈娜,铁线莲‘Multi-Blue’不定芽及体细胞胚发生的初步研究,2007园艺学报,34(2):465-468. 38.严泽埔,张佳琦,梁璧,魏广利,张启香,王正加.外施赤霉素对薄壳山核桃幼苗生长及相关代谢基因表达的影响,浙江农林大学学报, 2020,37(5):922-929. 39.黄仁,张韵,张启香,王正加,夏国华,黄坚钦,胡渊渊.异源授粉山核桃果皮光合能力差异的转录组分析,林业科学,2019,55(1):128-137.(EI) 40.帅敏敏,张启香,黄有军.光周期途径成花关键基因CONSTANS的进化机制,浙江农林大学学报,2019, 36(1):7-13. 41.常英英,张启香,宋晓波,査巍巍,裴东.早实核桃体细胞胚发生和植株再生的影响因素研究,林业科学研究,2019, 32(3): 34-39. 42.黄春颖,黄有军,吴建峰,黄仁,栾雨濛,张深梅,王正加,张启香,黄坚钦. SAD和FAD家族基因调控山核桃不饱和脂肪酸组分配比,园艺学报,2018,45 (2):250-260. 43.徐川梅,黄坚钦,王正加,夏国华,张启香,黄有军,张守攻.山核桃花粉母细胞减数分裂及核型,林业科学,2017,53(11):77-84. (EI) 44.杨先友,黄春颖,吴建峰,黄有军,张启香.植物WRI1基因生物信息学分析,分子植物育种,2016,14(5):1140-1151. 45.高航洋,张启香,胡恒康,张振茹,黄坚钦.天目杜鹃组培苗生根培养体系的优化,浙江农林大学学报,2011,28(6):982-985. 46.胡恒康,江香梅,张启香,陈贝,黄坚钦.碳源对山核桃体细胞胚发生和植株再生的影响,浙江农林大学学报,2011, 28(6):911-917. 47.付素静,方炎明,张启香.梨蒴珠藓愈伤组织诱导和配子体再生研究,广西植物2011,31( 3) : 403 -406. 48.胡恒康,江香梅,黄坚钦,张启香,孙瑜,郑炳松.五节芒的组织培养与快速繁殖,植物生理学通讯,2009,45(11 ):1109. 49.万俊丽,黄坚钦,夏国华,张启香,黄丽春.山核桃幼胚不定芽的诱导,浙江林学院学报,2009,26(5): 762 -766. |