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18 条 记 录,以下是 1-18

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Molecular insights into lignin biosynthesis on cadmium tolerance: Morphology, transcriptome and proteome profiling in Salix matsudana被引量:85收藏 分享
作者:Yu, Miao[1,2] Zhuo, Renying[1] Lu, Zhuchou[1] Li, Shaocui[1] Chen, Juanjuan[1]
机构:Chinese Acad Forestry;Nanjing Forestry Univ;Forestry Coll Shandong Agr Univ
来源:JOURNAL OF HAZARDOUS MATERIALS  2023
关键词:Salix matsudana var   matsudana f   umbraculifera   Cd tolerance   Cell wall   Lignin biosynthesis   Transcriptome and proteome analysis  
cDNA Library for Mining Functional Genes in Sedum alfredii Hance Related to Cadmium Tolerance and Characterization of the Roles of a Novel SaCTP2 Gene in Enhancing Cadmium Hyperaccumulation被引量:32收藏 分享
作者:Liu, Mingying[1,2,3] He, Xuelian[1,2] Feng, Tongyu[1,2] Zhuo, Renying[1,2] Qiu, Wenmin[1,2]
机构:State Key Lab Tree Genet & Breeding;Chinese Acad Forestry;Zhejiang Chinese Med Univ;Tsinghua Univ
来源:ENVIRONMENTAL SCIENCE & TECHNOLOGY  2019
关键词:Antioxidants - Bioremediation - Cadmium - Complex networks - Plants (botany)  
Quantitative proteome analysis reveals changes of membrane transport protEIns in Sedum plumbizincicola under cadmium stress被引量:22收藏 分享
作者:Zhu, Yue[1,2,3] Qiu, Wenmin[1,3] Li, Yuhong[1,3] Tan, Jinjuan[4] Han, Xiaojiao[1,3]
机构:Chinese Acad Forestry;Nanjing Forestry Univ;Chinese Acad Forestry;Zhejiang Acad Agr Sci;Chinese Acad Sci
来源:CHEMOSPHERE  2022
关键词:Integrative membrane protEIn   Cadmium tolerance and accumulation   Sedum plumbizincicola   TMT labeling Based quantification proteome   Transporter  
Transformation of Liquidambar formosana L. via Agrobacterium tumefaciens using a mannose selection system and recovery of salt tolerant lines被引量:11收藏 分享
作者:Qiao, Guirong[1] Zhou, Jing[1] Jiang, Jing[1] Sun, Yuehua[1,2,4] Pan, Luanyin[1]
机构:Chinese Acad Forestry;Lanzhou Univ;China Natl Rice Res Inst;Gansu Polytech Coll Anim Husb & Engn
来源:PLANT CELL TISSUE AND ORGAN CULTURE  2010
关键词:Liquidambar formosana L.   Transformation   Mannose-selection marker   AtNHX1  
Functional characterization of a DNA-damage repair/tolerance 100 (DRT100) gene in Sedum alfredii Hance for genome stability maintenance and Cd hypertolerance被引量:7收藏 分享
作者:Liu, Mingying[1] He, Xuelian[2] Zhuo, Renying[3,4] Mu, Ju[1] Zhang, Dayi[5,6]
机构:Zhejiang Chinese Med Univ;Shaanxi Inst Microbiol;Chinese Acad Forestry;Chinese Acad Forestry;Jilin Univ
来源:ENVIRONMENTAL POLLUTION  2023
关键词:Cadmium   Hyperaccumulator   DNA-Damage repair   toleration 100 (DRT100)   Sedum alfredii Hance  
Transgene expression in Chinese sweetgum driven by the salt induced expressed promoter被引量:6收藏 分享
作者:Renying, Zhuo[1] Guirong, Qiao[1] Zongxiu, Sun[2]
机构:Chinese Acad Forest;China Natl Rice Res Inst
来源:PLANT CELL TISSUE AND ORGAN CULTURE  2007
关键词:Chinese sweetgum   plantlet regeneration   transgenic plantlet   salt induced promoter  
SpbZIP60 confers cadmium tolerance by strengthening the root cell wall compartmentalization in Sedum plumbizincicola被引量:5收藏 分享
作者:Yu, Zhuchou Lua Miao[1,2] Han, Xiaojiao[1] Qiao, Guirong[1] Xu, Jing[1] Wu, Longhua[3]
机构:Chinese Acad Forestry;Fujian Acad Forestry Sci;Chinese Acad Sci
来源:JOURNAL OF HAZARDOUS MATERIALS  2024
关键词:Sedum plumbizincicola   bZIP60   Cd tolerance   Transcriptional regulation   Cell wall   Lignin deposition  
Copper-dependent control of uptake, translocation and accumulation of cadmium in hyperaccumlator Sedum alfredii被引量:4收藏 分享
作者:Ma, Chunjie[1] Zhang, Qi[2] Guo, Zhaoyuan[1] Guo, Xiaonuo[1] Song, Wenhua[1]
机构:Tianjin Normal Univ;Tangshan Normal Univ;Chinese Acad Forestry
来源:SCIENCE OF THE TOTAL ENVIRONMENT  2024
关键词:Cadmium   Copper   Sedum alfredii   Cell wall modification   Heavy metal sequestration  
SpCTP3 from the hyperaccumulator Sedum plumbizincicola positively regulates cadmium tolerance by interacting with SpMDH1被引量:4收藏 分享
作者:Li, Shaocui[1,2] He, Zhengquan[3] Qiu, Wenmin[1] Yu, Miao[1] Wu, Longhua[4]
机构:Chinese Acad Forestry;Zhejiang Acad Agr Sci;China Three Gorges Univ;Chinese Acad Sci
来源:JOURNAL OF HAZARDOUS MATERIALS  2024
关键词:SpCTP3   Cadmium   SpMDH1   Malic acid   Phytoremediation  
Analysis of 14- 3-3 Gene Family and Functional Characterization of DlGRF8 / 11 modulating flowering time in Ma bamboo ( Dendrocalamus latiflorus Munro)被引量:1收藏 分享
作者:Fan, Huijin[1,2] Xu, Jing[1,2] Lu, Zhuchou[1,2] Jin, Kangming[1,2] Yu, Miao[1,2]
机构:Chinese Acad Forestry;Chinese Acad Forestry
来源:INDUSTRIAL CROPS AND PRODUCTS  2024
关键词:Ma bamboo ( Dendrocalamus latiflorus Munro)   14-3-3   General regulatory factors ( GRF s)   Drought stress   Floral transition   Flowering  
Prime editing enables precise genome modification of a Populus hybrid被引量:1收藏 分享
作者:Zou, Jinpeng[1,2] Li, Yuhong[1] Wang, Kejian[2,3] Wang, Chun[2] Zhuo, Renying[1]
机构:Chinese Acad Forestry;Chinese Acad Agr Sci;Minist Agr & Rural Affairs
来源:ABIOTECH  2024
关键词:Poplar   Prime editing   PE3 system   Dicot  
Deciphering the of growth-mechanical trade-offs in moso bamboo through multi-omics approaches被引量:0收藏 分享
作者:Wang, Ying[1,3] Zhao, Wen-Wen[1,3] Li, Rui-Bing[1] Guo, Pu-Rui[1,3] Zhuo, Ren-Ying[4]
机构:Cent South Univ Forestry & Technol;Yuelushan Lab;Cent South Univ Forestry & Technol;Chinese Acad Forestry;Cent South Univ Forestry & Technol
来源:INDUSTRIAL CROPS AND PRODUCTS  2025
关键词:Phyllostachys edulis   Bamboo material properties   Comparative Genomics   Genome-wide association study  
Valorization of heavy metal enriched phytoremediation biomass using a deep eutectic solvent (DES)被引量:0收藏 分享
作者:Zhang, Chenyuan[1,2,3] Yang, Xianpeng[3] Yang, Shuang[1,2,3] Liu, Zhongqi[1,2,3] Zhang, Lei[2,3]
机构: College of Environmental and Resource Sciences; Key Laboratory of Coastal Environment and Resources of Zhejiang Province; Institute of Advanced Technology; State Key Laboratory of Tree Genetics and Breeding
来源:Green Chemistry  2022
Lignin Biosynthesis Plays an Important Role on Cadmium Tolerance in Salix Matsudana VAR. Matsudana F. Umbraculifera Rehd被引量:0收藏 分享
作者:Han, Xiaojiao[1] Yu, Miao[1,2] Zhuo, Renying[1] Lua, Zhuchou[1] Lia, Shaocui[1]
机构: State Key Laboratory of Tree Genetics and Breeding; Forestry Faculty; Forestry College
来源:SSRN  2022
关键词:Biochemistry - Biosynthesis - Cadmium compounds - Chemical analysis - Cytology - Genes - Lignin - ProtEIns - Soil pollution - Soils - Value engineering  
Comprehensive analysis of calcium-dependent protEIn kinase genes reveals the potential role of PeCDPK32 in lignin biosynthesis of Phyllostachys edulis被引量:0收藏 分享
作者:Li, Mengyun[1,2] Li, Yanan[1] Jia, Yuhan[1] Ouyang, Longfei[1] Xu, Jing[1]
机构:Chinese Acad Forestry;Nanjing Forestry Univ;Agr Technol Extens Ctr Dongtai;Fuyang Dist Agr & Forestry Resource Conservat Ctr
来源:INDUSTRIAL CROPS AND PRODUCTS  2025
关键词:Calcium-dependent protEIn kinase   Phyllostachys edulis   Expression pattern   Lignin biosynthesis   Secondary cell wall  
Screening and a Comprehensive Evaluation of Pinus elliottii with a High Efficiency of Phosphorus Utilization被引量:0收藏 分享
作者:Liu, Huan[1,2] He, Zhengquan[1] Yang, Yuying[2] Zhao, Yazhi[1,2] Chen, Huiling[1,2]
机构:China Three Gorges Univ;Chinese Acad Forestry
来源:FORESTS  2025
关键词:Pinus elliottii   line selection   low-phosphorus tolerance   phosphorus utilization efficiency  
Integrated Analysis of Phenotypic and Transcriptomic Variation in an F1 Population of Oil-Camellia Reveals the Major Genes Controlling Seed Size and Oil Accumulation被引量:0收藏 分享
作者:Liu, Linxiu[1,2,3] Sheng, Yu[1,3] Zhang, Yunbin[4] Xie, Xinru[1,3] Chen, Juanjuan[1,3]
机构: Key Laboratory of Tree Breeding of Zhejiang Province; Faculty of Forestry; State Key Laboratory of Tree Genetics and Breeding; Mount Huangshan Forestry Research Institute
来源:SSRN  2024
关键词:Oils and fats - Transcription  
Functional Characterization of a Dna-Damage Repair/Tolerance 100 (Drt100) Gene in Sedum Alfredii Hance for Genome Stability Maintenance and Cd Hypertolerance被引量:0收藏 分享
作者:Liu, Mingying[1] He, Xuelian[2] Mu, Ju[1] Zhuo, Renying[3,4] Zhang, Dayi[5,6]
机构: School of Basic Medical Sciences; Fungal Research Center; State Key Laboratory of Tree Genetics and Breeding; The Research Institute of Subtropical of Forestry; Key Laboratory of Groundwater Resources and Environment
来源:SSRN  2022
关键词:Antennas - Bioremediation - Cadmium - DNA - Genetic engineering - Plants (botany) - Repair - Soil pollution  
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