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  • 收录类型=SCI-EXPANDED x
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18 条 记 录,以下是 1-18

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Comparative Genomics and Phylogenetic Analysis Revealed the Chloroplast Genome Variation and Interspecific Relationships of Corylus (Betulaceae) Species被引量:36收藏 分享
作者:Yang, Zhen[1] Zhao, Tiantian[1] Ma, Qinghua[1] Liang, Lisong[1] Wang, Guixi[1]
机构:Chinese Acad Forestry
来源:FRONTIERS IN PLANT SCIENCE  2018
关键词:Corylus   comparative genomics   phylogenetic analysis   chloroplast genome variation   interspecific relationships  
The complete chloroplast genomes of three Betulaceae species: implications for molecular phylogeny and historical biogeography被引量:24收藏 分享
作者:Yang, Zhen[1] Wang, Guixi[1] Ma, Qinghua[1] Ma, Wenxu[1] Liang, Lisong[1]
机构:Chinese Acad Forestry
来源:PEERJ  2019
关键词:Betulaceae   Chloroplast genome   Divergence times   Ancestral areas reconstruction   Molecular phylogeny   Comparative genomics  
Resolving the Speciation Patterns and Evolutionary History of the Intercontinental Disjunct Genus Corylus (Betulaceae) Using Genome-Wide SNPs被引量:12收藏 分享
作者:Yang, Zhen[1] Zhao, Tian-Tian[1] Ma, Qing-Hua[1] Liang, Li-Song[1] Wang, Gui-Xi[1]
机构:Chinese Acad Forestry
来源:FRONTIERS IN PLANT SCIENCE  2018
关键词:Corylus   speciation   recombination   hybridization   divergence time estimation   ancestral area reconstruction   genome-wide SNPs  
Multilocus data reveal deep phylogenetic relationships and intercontinental biogeography of the Eurasian-North American genus Corylus (Betulaceae)被引量:12收藏 分享
作者:Zhao, Tiantian[1] Wang, Guixi[1] Ma, Qinghua[1] Liang, Lisong[1] Yang, Zhen[1]
机构:Chinese Acad Forestry
来源:MOLECULAR PHYLOGENETICS AND EVOLUTION  2020
关键词:Corylus   Multilocus phylogeny   Recombination   Introgressive hybridization   Molecular dating   Biogeography inference  
Seasonal Changes in Soil Microbial Community and Co-Occurrence Network of Species of the Genus Corylus被引量:8收藏 分享
作者:Ma, Wenxu[1,2,3,4] Yang, Zhen[1,2,3,4] Liang, Lisong[1,2,3,4] Ma, Qinghua[1,2,3,4] Wang, Guixi[1,2,3,4]
机构:State Key Lab Tree Genet & Breeding;Chinese Acad Forestry;State Forestry & Grassland Adm;Natl Forestry & Grassland Innovat Alliance Hazeln
来源:MICROORGANISMS  2021
关键词:hazelnut   microbial community   structure   function   seasonal variation   co-occurrence network analyses  
Evolution of lipid characteristics and minor compounds in hazelnut oil based on partial least squares regression during accelerated oxidation process被引量:7收藏 分享
作者:Cui, Nana[1,2,3] Wang, Guixi[1,2,3] Ma, Qinghua[1,2,3] Zhao, Tiantian[1,2,3] Han, Zhentai[4]
机构:Chinese Acad Forestry;Natl Innovat Alliance Hazelnut Ind;State Forestry & Grassland Adm;Chinese Acad Forestry
来源:LWT-FOOD SCIENCE AND TECHNOLOGY  2021
关键词:Hazelnut oil   Lipid oxidation   Antioxidant capacity   Bioactive compounds   PLSR  
Species divergence and phylogeography of Corylus heterophylla Fisch complex (Betulaceae): Inferred from molecular, climatic and morphological data被引量:7收藏 分享
作者:Yang, Zhen[1,2,3] Ma, Wen-Xu[1,2,3] He, Xin[1,2,3] Zhao, Tian-Tian[1,2,3] Yang, Xiao-Hong[4]
机构:Chinese Acad Forestry;Natl Forestry & Grassland Innovat Alliance Hazeln;State Forestry & Grassland Adm;Guizhou Acad Forestry;Anhui Acad Forestry
来源:MOLECULAR PHYLOGENETICS AND EVOLUTION  2022
关键词:Species delimitation   Phylogeography   Single-copy nuclear genes   chloroplast DNA   Ecological divergence   Mophological differentiation  
Application of metabolomics to explore the automatic oxidation process of hazelnut oil被引量:6收藏 分享
作者:Gao, Yan[1] Cui, Nana[2,3,4] Liu, Jing[1] Ma, Qinghua[2,3,4] Zhao, Tiantian[2,3,4]
机构:Beijing Forestry Univ;Chinese Acad Forestry;Natl Forestry & Grassland Innovat Alliance Hazelnu;State Forestry & Grassland Adm
来源:FOOD RESEARCH INTERNATIONAL  2022
关键词:Cold -pressed hazelnut oil   Automatic oxidation   Metabolomics   Free radical   UPLC-QE   MS   Metabolic pathway  
Characteristics of the Fungal Communities and Co-occurrence Networks in Hazelnut Tree Root Endospheres and Rhizosphere Soil被引量:6收藏 分享
作者:Ma, Wenxu[1,2,3,4] Yang, Zhen[1,2,3,4] Liang, Lisong[1,2,3,4] Ma, Qinghua[1,2,3,4] Wang, Guixi[1,2,3,4]
机构:Chinese Acad Forestry;State Key Lab Tree Genet & Breeding;Natl Forestry & Grassland Adm;Natl Forestry & Grassland Adm
来源:FRONTIERS IN PLANT SCIENCE  2021
关键词:hazelnut   fungal community   co-occurrence network   roots   surrounding soil  
A chromosome-level reference genome of the hazelnut, Corylus heterophylla Fisch被引量:6收藏 分享
作者:Zhao, Tiantian[1,2] Ma, Wenxu[1,2] Yang, Zhen[1,2] Liang, Lisong[1,2] Chen, Xin[2,3]
机构:Chinese Acad Forestry;Natl Hazelnut Ind Innovat Alliance;Shandong Acad Agr Sci;Anhui Acad Forestry
来源:GIGASCIENCE  2021
关键词:Corylus heterophylla Fisch.   Genome sequences   Nanopore   Hi-C  
Effects of Living Cover on the Soil Microbial Communities and Ecosystem Functions of Hazelnut Orchards被引量:5收藏 分享
作者:Ma, Wenxu[1,2,3] Yang, Zhen[1,2,3] Hou, Sihao[1,2,3] Ma, Qinghua[1,2,3] Liang, Lisong[1,2,3]
机构:Chinese Acad Forestry;State Forestry & Grassland Adm;Natl Hazelnut Ind Innovat Alliance;Liaoning Agr Tech Coll
来源:FRONTIERS IN PLANT SCIENCE  2021
关键词:living cover   Vulpia myuros   microbial communities   ecosystem functions   hazelnut orchard  
Plastome phylogenomics provide new perspective into the phylogeny and evolution of Betulaceae (Fagales)被引量:5收藏 分享
作者:Yang, Zhen[1,2,3,4] Ma, Wenxu[2,5] Yang, Xiaohong[6] Wang, Lujun[7] Zhao, Tiantian[1,2,3,4]
机构:State Key Lab Tree Genet & Breeding;Chinese Acad Forestry;Natl Innovat Alliance Hazelnut Ind;State Forestry & Grassland Adm;Univ Goettingen
来源:BMC PLANT BIOLOGY  2022
关键词:Betulaceae   Plastome structure   Molecular dating   Biogeographic history   Character evolution  
High genetic variability and complex population structure of the native Chinese hazelnut被引量:5收藏 分享
作者:Yang, Zhen[1] Wang, Lujun[1] Zhao, Tiantian[1]
机构:Chinese Acad Forestry
来源:BRAZILIAN JOURNAL OF BOTANY  2018
关键词:Corylus mandshurica   Genetic differentiation   Genetic diversity   Molecular markers  
Characterisation of oil oxidation, fatty acid, carotenoid, squalene and tocopherol components of hazelnut oils obtained from three varieties undergoing oxidation被引量:5收藏 分享
作者:Cui, Nana[1,2,3] Zhao, Tiantian[1,2,3] Han, Zhentai[4] Yang, Zhen[1,2,3] Wang, Guixi[1,2,3]
机构:Chinese Acad Forestry;Natl Forestry & Grassland Innovat Alliance Hazeln;Hazelnut Engn & Tech Res Ctr;Chinese Acad Forestry
来源:INTERNATIONAL JOURNAL OF FOOD SCIENCE AND TECHNOLOGY  2022
关键词:Active component   hybrid hazelnut   lipid oxidation   oil   Raman spectroscopy  
Genetic Diversity and Population Structure of Chinese Corylus heterophylla and Corylus kweichowensis Using Simple Sequence Repeat Markers被引量:4收藏 分享
作者:Zhao, Tiantian[1,2] Ma, Wenxu[1,2] Ma, Qinghua[1,2] Yang, Zhen[1,2] Liang, Lisong[1,2]
机构:State Forestry & Grassland Adm;Chinese Acad Forestry;Anhui Acad Forestry
来源:JOURNAL OF THE AMERICAN SOCIETY FOR HORTICULTURAL SCIENCE  2020
关键词:hazelnut   genetic variability   genetic differentiation   molecular markers   protection strategy   SSR  
Stigmatic Transcriptome Analysis of Self-Incompatible and Compatible Pollination in Corylus heterophylla Fisch. x Corylus avellana L.被引量:4收藏 分享
作者:Hou, Sihao[1,2,3,4] Zhao, Tiantian[1,2,3,4] Yang, Zhen[1,2,3,4] Liang, Lisong[1,2,3,4] Ma, Wenxu[1,2,3,4]
机构:State Key Lab Tree Genet & Breeding;Chinese Acad Forestry;State Forestry & Grassland Adm;Natl Forestry & Grassland Innovat Alliance Hazeln
来源:FRONTIERS IN PLANT SCIENCE  2022
关键词:Corylus   sporophytic self-incompatibility   transcriptome   self-pollination   cross-pollination  
Genetic Analysis of the Cultivars of Ping'ou Hybrid Hazelnut (C. heterophylla Fisch. x C. avellana L.) in China Based on SSR Markers被引量:1收藏 分享
作者:Yang, Zhen[1] Zhao, Tiantian[1] Liang, Lisong[1] Jiang, Lei[2] Wang, Lujun[3]
机构:Chinese Acad Forestry;Langfang Acad Agr & Forestry Sci;Anhui Acad Forestry
来源:FORESTS  2023
关键词:Ping'ou hybrid hazelnut   SSR markers   germplasm identification   fingerprinting   genetic relationships  
Population genomics reveals demographic history and selection signatures of hazelnut (Corylus)被引量:0收藏 分享
作者:Yang, Zhen[1] Ma, Wenxu[1,2] Wang, Lujun[3] Yang, Xiaohong[4] Zhao, Tiantian[1]
机构:Chinese Acad Forestry;Univ Goettingen;Anhui Acad Forestry;Guizhou Acad Forestry
来源:HORTICULTURE RESEARCH  2023
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