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殷恒福 收藏

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( 任职于 林木遗传育种国家重点实验室)

被引量:509H指数:9SCI-EXPANDED: 40 EI: 6

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46 条 记 录,以下是 1-30

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The Flavonoid Biosynthesis Network in Plants被引量:233收藏 分享
作者:Liu, Weixin[1,2] Feng, Yi[1,2] Yu, Suhang[1,2] Fan, Zhengqi[1,2] Li, Xinlei[1,2]
机构:Chinese Acad Forestry;Chinese Acad Forestry
来源:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES  2021
关键词:flavonoids   biosynthesis   molecular structure   biosynthetic enzyme   gene regulation  
The genome of oil-Camellia and population genomics analysis provide insights into seed oil domestication被引量:59收藏 分享
作者:Lin, Ping[1,2] Wang, Kailiang[2] Wang, Yupeng[3] Hu, Zhikang[1,2] Yan, Chao[1,2]
机构:Chinese Acad Forestry;Chinese Acad Forestry;Nanjing Forestry Univ
来源:GENOME BIOLOGY  2022
关键词:Oil-Camellia   Genome   Population genomics   Genome-wide association analysis   Oil biosynthesis   Domestication  
Overexpression of geranyl diphosphate synthase small subunit 1 (LcGPPS.SSU1) enhances the monoterpene content and biomass被引量:21收藏 分享
作者:Zhao, Yunxiao[1,2] Chen, Yicun[1,2] Gao, Ming[1,2] Yin, Hengfu[1,2] Wu, Liwen[1,2]
机构:Chinese Acad Forestry;Chinese Acad Forestry
来源:INDUSTRIAL CROPS AND PRODUCTS  2020
关键词:Litsea cubeba   Geranyl diphosphate synthase small subunit (GPPS.SSU)   Monoterpene   Tobacco   Feedback regulation   Biomass  
LcERF19, an AP2/ERF transcription factor from Litsea cubeba, positively regulates geranial and neral biosynthesis被引量:18收藏 分享
作者:Wang, Minyan[1,2] Gao, Ming[1,2] Zhao, Yunxiao[1,2] Chen, Yicun[1,2] Wu, Liwen[1,2]
机构:Chinese Acad Forestry;Chinese Acad Forestry
来源:HORTICULTURE RESEARCH  2022
Comparative Transcriptomics Atlases Reveals Different Gene Expression Pattern Related to Fusarium Wilt Disease Resistance and Susceptibility in Two Vernicia Species被引量:15收藏 分享
作者:Chen, Yicun[1] Yin, Hengfu[] Gao, Ming[] Zhu, Huiping[] Zhang, Qiyan[]
机构:Chinese Acad Forestry; Chinese Acad Forestry
来源:FRONTIERS IN PLANT SCIENCE  2016
关键词:Vernicia species   Fusarium wilt   comparative transcriptomics   resistance genes   co-expression  
Comparative genomics analysis reveals gene family expansion and changes of expression patterns associated with natural adaptations of flowering time and secondary metabolism in yellow Camellia被引量:13收藏 分享
作者:Li, Xinlei[1,2] Fan, Zhengqi[1,2] Guo, Haobo[3,4] Ye, Ning[5] Lyu, Tao[1,6]
机构:Chinese Acad Forestry;Chinese Acad Forestry;Univ Tennessee;Univ Tennessee;Nanjing Forestry Univ
来源:FUNCTIONAL & INTEGRATIVE GENOMICS  2018
关键词:Comparative genomics   Gene expression   Gene family   Camellia   Trait adaptation   Floral pigmentation  
Composition analysis of floral scent within genus Camellia uncovers substantial interspecific variations被引量:11收藏 分享
作者:Fan, Zhengqi[1,2] Li, Jiyuan[1,2] Li, Xinlei[1,2] Yin, Hengfu[1,2]
机构:Chinese Acad Forestry;Chinese Acad Forestry
来源:SCIENTIA HORTICULTURAE  2019
关键词:Floral scent   Volatiles   Camellia   Theopsis   HS-SPME-GC-MS  
Identification of alternatively spliced gene isoforms and novel noncoding RNAs by single-molecule long-read sequencing in Camellia被引量:11收藏 分享
作者:Hu, Zhikang[1,2,3] Lyu, Tao[1,3] Yan, Chao[1,4] Wang, Yupeng[1,2] Ye, Ning[2]
机构:Chinese Acad Forestry;Nanjing Forestry Univ;Chinese Acad Forestry;Chinese Acad Forestry
来源:RNA BIOLOGY  2020
关键词:Alternative splicing   single-molecule sequencing   phased small interfering RNA   polyadenylation   Camellia   lipoxygenase  
Flavonoid 3 '-hydroxylase of Camellia nitidissima Chi. promotes the synthesis of polyphenols better than flavonoids被引量:10收藏 分享
作者:Jiang, Lina[1,2,3] Fan, Zhengqi[1,3] Tong, Ran[1] Yin, Hengfu[1,2,3] Li, Jiyuan[1,3]
机构:Chinese Acad Forestry;Chinese Acad Forestry;Chinese Acad Forestry;Fujian Univ Technol
来源:MOLECULAR BIOLOGY REPORTS  2021
关键词:Camellia nitidissima   F3 ' H   Expression patterns   Functional verification   Polyphenol synthesis  
Genetic diversity in the endangered Camellia nitidissima assessed using transcriptome-based SSR markers被引量:9收藏 分享
作者:Li, Xin-lei[1,2] Wang, Jie[1,2] Fan, Zheng-qi[1,2] Li, Ji-yuan[1,2] Yin, Heng-fu[1,2]
机构:Chinese Acad Forestry;Chinese Acad Forestry
来源:TREES-STRUCTURE AND FUNCTION  2020
关键词:Camellia nitidissima   Genetic diversity   Genetic structure   SSR   Germplasm conservation  
A Model of Hormonal Regulation of Stamen Abortion during Pre-Meiosis of Litsea cubeba被引量:9收藏 分享
作者:Xu, Zilong[1,2] Wang, Yangdong[1,2] Chen, Yicun[1,2] Yin, Hengfu[1,2] Wu, Liwen[1,2]
机构:Chinese Acad Forestry;Chinese Acad Forestry
来源:GENES  2020
关键词:Litsea cubeba   sex differentiation   stamen abortion   plant hormone   salicylic acid  
Functional Diversification of the Dihydroflavonol 4-Reductase from Camellia nitidissima Chi. in the Control of Polyphenol Biosynthesis被引量:9收藏 分享
作者:Jiang, Lina[1,2] Fan, Zhengqi[1,2] Tong, Ran[1] Zhou, Xingwen[3] Li, Jiyuan[1]
机构:Chinese Acad Forestry;Chinese Acad Forestry;Yulin Normal Univ
来源:GENES  2020
关键词:floral pigmentation   dihydroflavonol 4-reduetase   Camellia nitidissima Chi   polyphenols   anthocyanins  
Alternative Polyadenylation in response to temperature stress contributes to gene regulation in Populus trichocarpa被引量:8收藏 分享
作者:Yan, Chao[1,2,3,4] Wang, Yupeng[2] Lyu, Tao[1,3] Hu, Zhikang[1,2,3] Ye, Ning[2]
机构:Chinese Acad Forestry;Nanjing Forestry Univ;Chinese Acad Forestry;Chinese Acad Forestry
来源:BMC GENOMICS  2021
关键词:Alternative polyadenylation   Abiotic stress   Temperature   Populus  
Unraveling the Roles of Regulatory Genes during Domestication of Cultivated Camellia: Evidence and Insights from Comparative and Evolutionary Genomics被引量:8收藏 分享
作者:Yan, Chao[1,2,3] Lin, Ping[1,2] Lyu, Tao[1,2,4] Hu, Zhikang[1,2] Fan, Zhengqi[1,2]
机构:Chinese Acad Forestry;Chinese Acad Forestry;Chinese Acad Forestry;Ningbo Univ
来源:GENES  2018
关键词:domestication   genomics   Camellia   transcription factors   quantitative trait locus   genome-wide association study   fruit development  
Characterization of the complete chloroplast genome of Camellia brevistyla, an oil-rich and evergreen shrub被引量:7收藏 分享
作者:Wang, Yupeng[1,2,3] Li, Jiyuan[2,3] Fan, Zhengqi[2,3] Wu, Dongyang[1] Yin, Hengfu[2,3]
机构:Nanjing Forestry Univ;Chinese Acad Forestry;Chinese Acad Forestry
来源:MITOCHONDRIAL DNA PART B-RESOURCES  2020
关键词:Camellia brevistyla   chloroplast genome   phylogenetic analysis  
CcBLH6, a bell-like homeodomain-containing transcription factor, regulates the fruit lignification pattern被引量:7收藏 分享
作者:Yan, Chao[1,2,3] Hu, Zhikang[1,2] Nie, Ziyan[1,2,4] Li, Jiyuan[2] Yao, Xiaohua[2]
机构:Chinese Acad Forestry;Chinese Acad Forestry;Chinese Acad Forestry;Anhui Agr Univ
来源:PLANTA  2021
关键词:BELL-like homeodomain gene   Camellia chekiangoleosa   Fruit development   Lignification   TALE transcription factor  
Association Genetics Identifies Single Nucleotide Polymorphisms Related to Kernel Oil Content and Quality in Camellia oleifera被引量:7收藏 分享
作者:Lin, Ping[1,2] Yin, Hengfu[1,2] Yan, Chao[1,2,3] Yao, Xiaohua[1,2] Wang, Kailiang[1,2]
机构:Chinese Acad Forestry;Chinese Acad Forestry;Chinese Acad Forestry
来源:JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY  2019
关键词:candidate-gene-based association mapping   Camellia oleifera   single nucleotide polymorphisms (SNPs)   oil content (OC) and fatty acid composition   stearoyl-ACP desaturase gene (CoSAD) and Delta 12 (omega 6)-desaturase gene (Cofad2)  
Transcriptomic and Chemical Analyses Reveal the Hub Regulators of Flower Color Variation from Camellia japonica Bud Sport被引量:7收藏 分享
作者:Fan, Menglong[1] Zhang, Ying[1] Yang, Meiying[1] Wu, Si[1] Yin, Hengfu[1]
机构:Chinese Acad Forestry
来源:HORTICULTURAE  2022
关键词:Camellia japonica   anthocyanin   flower color   transcriptome   bud sport  
Genome-Wide Identification and Characterization of the LRR-RLK Gene Family in Two Vernicia Species被引量:6收藏 分享
作者:Zhu, Huiping[1,2] Wang, Yangdong[1,2] Yin, Hengfu[1,2] Gao, Ming[1,2] Zhang, Qiyan[1,2]
机构:Chinese Acad Forestry;Chinese Acad Forestry
来源:INTERNATIONAL JOURNAL OF GENOMICS  2015
Characterization and phylogenetic significance of the complete chloroplast genome of Camellia Kissii, an economic crop for producing oil被引量:5收藏 分享
作者:Cao, Lei[1,2,3] Li, Jiyuan[2,3] Fan, Zhengqi[2,3] Yin, Hengfu[2,3] Li, Xinlei[2,3]
机构:Nanjing Forestry Univ;Chinese Acad Forestry;Chinese Acad Forestry
来源:MITOCHONDRIAL DNA PART B-RESOURCES  2020
关键词:Camellia kissii   chloroplast genome   oil production   phylogenetic significance  
Transcriptome and Degradome Profiling Reveals a Role of miR530 in the Circadian Regulation of Gene Expression in Kalanchoe marnieriana被引量:5收藏 分享
作者:Hu, Zhikang[1,2,3] Nie, Ziyan[1,3] Yan, Chao[4] Huang, Hu[1,2] Ma, Xianjin[1,2]
机构:Chinese Acad Forestry;Nanjing Forestry Univ;Chinese Acad Forestry;Chinese Acad Forestry;Oak Ridge Natl Lab
来源:CELLS  2021
关键词:crassulacean acid metabolism   microRNA   photosynthesis   drought   circadian clock   Kalanchoe  
Comparative Transcriptome and Pigment Analyses Reveal Changes in Gene Expression Associated with Flavonol Metabolism in Yellow Camellia被引量:4收藏 分享
作者:Liu, Weixin[1] Yu, Suhang[1] Feng, Yi[1] Mo, Runhong[1] Wang, Kaineng[2]
机构:Chinese Acad Forestry;Zhejiang Construct Technician Coll
来源:FORESTS  2022
关键词:Camellia nitidssima   hybrids   flower color   transcriptome   flavonol   ethylene  
Characterizations of a Class-I BASIC PENTACYSTEINE Gene Reveal Conserved Roles in the Transcriptional Repression of Genes Involved in Seed Development被引量:4收藏 分享
作者:Ma, Xianjin[1,2,3] Yu, Yifan[1,2,3] Hu, Zhikang[1,2,3] Huang, Hu[1,2,3] Li, Sijia[1,2,3]
机构:Chinese Acad Forestry;Nanjing Forestry Univ;Chinese Acad Forestry
来源:CURRENT ISSUES IN MOLECULAR BIOLOGY  2022
关键词:BPC transcription factor   flower development   histone methylation   ovule   seed  
IsoSplitter: identification and characterization of alternative splicing sites without a reference genome被引量:3收藏 分享
作者:Wang, Yupeng[1,2] Hu, Zhikang[1,2] Ye, Ning[1] Yin, Hengfu[2,3]
机构:Nanjing Forestry Univ;Chinese Acad Forestry;Chinese Acad Forestry
来源:RNA  2021
关键词:gene structure   gene expression   alternative splicing   sequence alignment  
Comparative Transcriptome Analysis of Flower Senescence of Camellia lutchuensis被引量:3收藏 分享
作者:Liu, Weixin[1,2] Yin, Hengfu[1,2] Feng, Yi[1,2] Yu, Suhang[1,2] Fan, Zhengqi[1,2]
机构:Chinese Acad Forestry;Chinese Acad Forestry
来源:CURRENT GENOMICS  2022
关键词:Camellia lutchuensis   flower senescence   transcriptome   differentially expressed genes   ethylene   reactive oxygen species  
CjPLE, a PLENA-like gene, is a potential regulator of fruit development via activating the FRUITFUL homolog in Camellia被引量:3收藏 分享
作者:Lyu, Tao[1,2,3] Fan, Zhengqi[1,2] Yang, Wen[1,2] Yan, Chao[1,2,4] Hu, Zhikang[1,2]
机构:Chinese Acad Forestry;Chinese Acad Forestry;Ningbo Univ;Chinese Acad Forestry
来源:JOURNAL OF EXPERIMENTAL BOTANY  2019
关键词:Camellia   chromatin immunoprecipitation   fruit development   FRUITFUL   MADS-box gene   PLENA  
Comparative Genomic Analysis Uncovers the Chloroplast Genome Variation and Phylogenetic Relationships of Camellia Species被引量:2收藏 分享
作者:Lin, Ping[1,2] Yin, Hengfu[1,2] Wang, Kailiang[2] Gao, Haidong[3] Liu, Lei[3]
机构:Chinese Acad Forestry;Chinese Acad Forestry;Genepioneer Biotechnol Co Ltd
来源:BIOMOLECULES  2022
关键词:Camellia   chloroplast genome   genetic relationship   marker   phylogenetic analysis  
The complete chloroplast genome of Camellia vietnamensis, an economic shrub producing edible seed oil被引量:2收藏 分享
作者:Lyu, Tao[1,2] Wang, Yupeng[1,2,3] Hu, Zhikang[1,2] Li, Xinlei[1,2] Li, Jiyuan[1,2]
机构:Chinese Acad Forestry;Chinese Acad Forestry;Nanjing Forestry Univ
来源:MITOCHONDRIAL DNA PART B-RESOURCES  2019
关键词:Camellia   chloroplast   genome sequencing   edible oil   phylogeny  
Small RNA profiling reveals that an ovule-specific microRNA, cja-miR5179, targets a B-class MADS-box gene in Camellia japonica被引量:2收藏 分享
作者:Ma, Xianjin[1,2,3] Nie, Ziyan[1,2,3] Huang, Hu[1,2,3] Yan, Chao[1,4] Li, Sijia[1,2,3]
机构:Chinese Acad Forestry;Nanjing Forestry Univ;Chinese Acad Forestry;Chinese Acad Forestry
来源:ANNALS OF BOTANY  2023
关键词:Arabidopsis   Camellia   miR5179   floral development   MADS-box gene   BASIC PENTACYSTEINE proteins  
Novel insight into anthocyanin metabolism and molecular characterization of its key regulators in Camellia sasanqua被引量:2收藏 分享
作者:Fan, Menglong[1] Li, XinLei[1] Zhang, Ying[1] Yang, Meiying[1] Wu, Si[1]
机构:Chinese Acad Forestry
来源:PLANT MOLECULAR BIOLOGY  0
关键词:Camellia sasanqua   Flower color   Delphinidin   Coexpression   Transcriptome  
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