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Yonghong Hu
huyonghong@csnbgsh.cn
Chinese, English
Shanghai
University of Chinese Academy of Sciences
Life Sciences
  • 1994-09--1997-07 PhD: Beijing Forestry University
  • 1991-09--1994-07 Master's: Beijing Forestry University
  • 1987-09--2016-07 Bachelor's: Northeast Forestry University
  • 2021 Shanghai Most Beautiful Science Worker (2021): Ministry Level
  • 2019 Shanghai Botanical Society Contribution Award (2019): Provincial Level
  • 2018 China Ornamental Horticulture Annual Special Honor Award (2018): National Level
  • 2013 Shanghai Science and Technology Progress Award (2013): Provincial Level
  • 2011 National 'May 1st' Labor Medal (2011): National Level
  • 2010 National Excellent Science Worker (2010): National Level
Peony Genomics and Germplasm Resource Innovation
High-Quality Peony Variety Breeding and Efficient Cultivation
Secondary Metabolites with Medicinal Active Ingredients
Molecular Mechanism of High Unsaturated Fatty Acid Accumulation in Oil Peony
Molecular Mechanism of Peony Flower Size Formation
  • Paeoniflorin in Paeoniaceae: Distribution, influencing factors, and biosynthesis, Zhang, XiaoXiao, Zuo, JiaQi, Wang, YiTing, Duan, HuiYun, Yuan, JunHui, Hu, YongHong, 2022
  • PacBio full-length sequencing integrated with RNA-seq reveals the molecular mechanism of waterlogging and its recovery in Paeonia ostii, Zhang, Xiaoxiao, Liu, Xiang, Zhou, Minghui, Hu, Yonghong, Yuan, Junhui, 2022
  • Genomic basis of the giga-chromosomes and giga-genome of tree peony Paeonia ostii, Yuan, Junhui, Jiang, Sanjie, Jian, Jianbo, Liu, Mingyu, Yue, Zhen, Xu, Jiabao, Li, Juan, Xu, Chunyan, Lin, Lihong, Jing, Yi, Zhang, Xiaoxiao, Chen, Haixin, Zhang, Linjuan, Fu, Tao, Yu, Shuiyan, Wu, Zhangyan, Zhang, Ying, Wang, Chongzhi, Zhang, Xiao, Huang, Liangbo, Wang, Hongqi, Hong, Deyuan, Chen, XiaoYa, Hu, Yonghong, 2022
  • Air Layering Improves Rooting in Tree Peony Cultivars from the Jiangnan Group, Zhang, Ying, Yu, ShuiYan, Hu, YongHong, 2022
  • PoDPBT, a BAHD acyltransferase, catalyzes the benzoylation in paeoniflorin biosynthesis in Paeonia ostii, Zhang XX, Zuo JQ, Wang YT, Duan HY, Zhou MM, Li HJ, Hu YY, Yuan JJ, 2022
  • Identification of miRNA responsive to early flowering in tree peony (Paeonia ostii) by high-throughput sequencing, Han, Jigang, Zhang, Tianrui, Li, Jian, Hu, Yonghong, 2021
  • Genetic diversity generated by introgression between wild species and cultivars of tree peony in Baokang, China, Han, Jigang, Li, Jian, Li, Xiaoqing, Liu, Qunlu, Hu, Yonghong, 2021
  • Interspecific Variation in the Unsaturation Level of Seed Oils Were Associated With the Expression Pattern Shifts of Duplicated Desaturase Genes and the Potential Role of Other Regulatory Genes, Wang, Mengli, Gao, Lexuan, Li, Gengyun, Zhou, Chengchuan, Jian, Jinjing, Xing, Zhen, Wang, Yuguo, Zhang, Wenju, Song, Zhiping, Hu, Yonghong, Yang, Ji, 2021
  • Lipidomic profiling of the developing kernel clarifies the lipid metabolism of Paeonia ostii, ShuiYan Yu, Ying Zhang, YuPing Lyu, ZuJie Yao, YongHong Hu, 2021
  • Transcriptomic analysis of α-linolenic acid content and biosynthesis in Paeonia ostii fruits and seeds, ShuiYan Yu, Xiao Zhang, LiangBo Huang, YuPing Lyu, Ying Zhang, ZuJie Yao, XiaoXiao Zhang, JunHui Yuan, YongHong Hu, 2021
  • New insights into Paeoniaceae used as medicinal plants in China, Zhang, Xiaoxiao, Zhai, Yuhui, Yuan, Junhui, Hu, Yonghong, 2019
  • 油用牡丹ISSR-PCR 反应体系的建立和优化, 李健, 胡永红, 2017
  • 水淹和恢复对凤丹光合特性和根系活力的影响, 胡永红, 袁军辉, 胡永红, 2017
  • Chemical Composition Analysis, Sensory, and Feasibility Study of Tree Peony Seed, Mao, Yingyi, Han, Jigang, Tian, Fang, Tang, Xue, Hu, Yonghong, Guan, Yan, 2017
  • 油用兼观赏型凤丹牡丹杂交育种研究初探, 戚杰, 何新颖, 宣亚楠, 刘庆华, 胡永红, 2017
  • Health Benefits of Dietary Tree Peony Seed Oil in a High Fat Diet Hamster Model, Zhiqiang Zheng, Jigang Han, Yingyi Mao, Xue Tang, Yan Guan, Yonghong Hu, 2017
  • Extensive Transcriptome Changes Underlying the Flower Color Intensity Variation in Paeonia ostii, Gao, Lexuan, Yang, Hongxing, Liu, Hongfeng, Yang, Ji, Hu, Yonghong, 2016
  • Fatty acid profile in the seeds and seed tissues of Paeonia L. species as new oil plant resources, Yu, Shuiyan, Du, Shaobo, Yuan, Junhui, Hu, Yonghong, 2016
  • Selection of Reference Genes for Quantitative Real-Time PCR during Flower Development in Tree Peony (Paeonia suffruticosa Andr.), Li, Jian, Han, Jigang, Hu, Yonghong, Yang, Ji, 2016
  • Gene Expression Reaction Norms Unravel the Molecular and Cellular Processes Underpinning the Plastic Phenotypes of Alternanthera Philoxeroides in Contrasting Hydrological Conditions, Gao, Lexuan, Geng, Yupeng, Yang, Hongxing, Hu, Yonghong, Yang, Ji, 2015
  • 辰山花环,四季乐章——上海辰山植物园大尺度花境的探索, 舒婷婷, 陈夕雨, 胡永红, 2015
  • ‘凤丹’种子成熟过程中脂肪酸的累积规律, 刘炤, 韩继刚, 李晓青, 李健, 唐雪, 高乐旋, 袁军辉, 张颖, 胡永红, 2015
  • 牡丹不同发育阶段种子和花瓣组织实时荧光定量PCR中内参基因的挖掘与筛选, 刘洪峰, 高乐旋, 胡永红, 2015
  • 牡丹油用价值及其应用前景, 韩继刚, 李晓青, 刘炤, 胡永红, 2014
  • 不同地区凤丹经济性状及其籽油脂肪酸成分分析, 李晓青, 韩继刚, 刘炤, 刘庆华, 胡永红, 2014
  • Detecting the Characteristics of the Spatial Patterns of Trees Adjacent to Buildings within Changed Settlements of Farmers in Shanghai, China, Wang, Hongbing, Qin, Jun, Hu, Yonghong, Dong, Li, Chen, Jiakuan, 2014
  • Tentative identification and quantification of the principal volatile organic compounds in fruit of eight new varieties of Chaenomeles spp. (quince), Zhang, Y L, Hu, W L, Sun, J S, Wei, Y K, Liu, Z, Hu, Y H, 2013
  • 七个江南牡丹品种花瓣中类黄酮物质分析, 张宝智, 胡永红, 韩继刚, 刘群录, 2013
Genomics Germplasm Innovation Breeding Cultivation Secondary Metabolites Medicinal Unsaturated Fatty Acids Molecular Mechanism Peony

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