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中国科学院兰州化学物理研究所机构知识库
KMS Lanzhou Institute of Chemical Physics,Chinese Academy of Sciences
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中科院西北特色植物... [13]
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燕志强 [13]
秦波 [13]
金辉 [9]
李秀壮 [8]
崔海燕 [7]
刘权 [5]
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Nematicidal activity against Aphelenchoides besseyi and Ditylenchus destructor of three biflavonoids, isolated from roots of Stellera chamaejasme
期刊论文
Journal of Asia-Pacific Entomology, 2018, 期号: 21, 页码: 21, 1473-1478
Authors:
Jin H(金辉)
;
Haiyan Cui(崔海燕)
;
Yang XY(杨晓燕)
;
Lihong Xu(许立红)
;
Xudong Li(李旭东)
;
Rentao Liu(刘任涛)
;
Yan ZQ(燕志强)
;
Li XZ(李秀壮)
;
Weili Zheng
;
Yuhui Zhao(赵玉卉)
;
Xiaoxia Song
;
Lihua Zhong
;
Anxiang Su(宿安祥)
;
Qin B(秦波)
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Submit date:2018/11/30
Aphelenchoides Besseyi
Ditylenchus Destructor
Biflavonoids
Nematicidal Compounds
Plant Extract
Allelochemicals from rhizosphere soils of Glycyrrhiza uralensis Fisch: Discovery of the autotoxic compounds of a traditional herbal medicine
期刊论文
Industrial Crops and Products, 2017, 卷号: 97, 页码: 302-307
Authors:
Ren X(任夏)
;
Yan ZQ(燕志强)
;
He XF(何小凤)
;
Li XZ(李秀壮)
;
Qin B(秦波)
;
Yan ZQ(燕志强)
;
Qin B(秦波)
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Submit date:2017/04/27
Allelochemicals
Glycyrrhiza Uralensis
Rhizosphere Soils
Autotoxicity
Allelopathic effect of β-cembrenediol and its mode of action: Induced oxidative stress in lettuce seedlings
期刊论文
Emirates Journal of Food and Agriculture, 2017, 卷号: 29, 期号: 6, 页码: 441-449
Authors:
Xia Ren(任夏)
;
Yan ZQ(燕志强)
;
Xiaofeng He(何小凤)
;
Li XZ(李秀壮)
;
Qin B(秦波)
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Submit date:2018/11/30
Β-cembrenediol
Phytotoxicity
Lettuce
Oxidative Stress
Reactive Oxygen Species
Phytotoxicity mechanisms of two coumarin allelochemicals from Stellera chamaejasme in lettuce seedlings
期刊论文
Acta Physiologiae Plantarum, 2016, 卷号: 38, 期号: 10, 页码: 248(1-10)
Authors:
Yan ZQ(燕志强)
;
Wang DD(王丹丹)
;
Cui HY(崔海燕)
;
Zhang DH(张等宏)
;
Sun YH(孙玉合)
;
Jin H(金辉)
;
Li XZ(李秀壮)
;
Yang XY(杨晓燕)
;
Guo HR(郭鸿儒)
;
He XF(何小凤)
;
Pan L(潘乐)
;
Ren X(任夏)
;
Guo K(郭凯)
;
Qin B(秦波)
;
Qin B(秦波)
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Submit date:2016/10/21
Cell Viability
Daphnoretin
Phytotoxicity
Lettuce
Mitosis
Reactive Oxygen Species
Umbelliferone
Two new cembranic diterpenoids from the flowers of Nicotiana tabacum L.
期刊论文
Phytochemistry Letters, 2016, 卷号: 15, 页码: 238-244
Authors:
He XF(何小凤)
;
Hou, Xiao-Dong
;
Ren X(任夏)
;
Guo K(郭凯)
;
Li XZ(李秀壮)
;
Yan ZQ(燕志强)
;
Du, Yong-Mei
;
Zhang, Zhong-Feng
;
Qin B(秦波)
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Submit date:2016/05/14
N. Tabacum
Cembranic Diterpenoids
Anti-tumor Activities
Isolation and characterization of bacteria from the rhizosphere and bulk soil of Stellera chamaejasme L.
期刊论文
Canadian Journal of Microbiology, 2015, 卷号: 61, 期号: 3, 页码: 171-181
Authors:
Cui HY(崔海燕)
;
Yang XY(杨晓燕)
;
Lu DX(路等学)
;
Jin H(金辉)
;
Yan ZQ(燕志强)
;
Chen JX(陈吉祥)
;
Li XZ(李秀壮)
;
Qin B(秦波)
;
Jin H(金辉)
;
Qin B(秦波)
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Submit date:2015/03/20
Culturable Bacterial Community
SteL.era Chamaejasme L.
Plant Growth Promotion
Rhizosphere And Bulk Soil
Potential allelochemicals in root zone soils of Stellera chamaejasme L. and variations at different geographical growing sites
期刊论文
Plant Growth Regulation, 2015, 卷号: 77, 期号: 3, 页码: 335-342
Authors:
Guo HR(郭鸿儒)
;
Cui HY(崔海燕)
;
Jin H(金辉)
;
Yan ZQ(燕志强)
;
Ding L(丁兰)
;
Qin B(秦波)
;
Qin B(秦波)
Adobe PDF(621Kb)
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Submit date:2015/12/21
Flavonoid
Phytotoxic
Allelochemicals
SteL.era Chamaejasme L.
Variations
Phytotoxicity of umbelliferone and its analogs: Structure-activity relationships and action mechanisms
期刊论文
Plant Physiology and Biochemistry, 2015, 卷号: 97, 页码: 272-277
Authors:
Pan L(潘乐)
;
Li XZ(李秀壮)
;
Yan ZQ(燕志强)
;
Guo HR(郭鸿儒)
;
Qin B(秦波)
;
Qin B(秦波)
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Submit date:2015/12/21
Umbelliferone
Analogs
Phytotoxicity
Structure-activity Relationships
Mechanisms
Characterization of rhizosphere and endophytic bacterial communities from leaves, stems and roots of medicinal Stellera chamaejasme L.
期刊论文
Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, Systematic and Applied Microbiology, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 2014, 卷号: 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 37, 期号: 5, 页码: 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385, 376-385
Authors:
Jin H(金辉)
;
Yang XY(杨晓燕)
;
Yan ZQ(燕志强)
;
Liu Q(刘权)
;
Li XZ(李秀壮)
;
Chen JX(陈吉祥)
;
Zhang DH(张等宏)
;
Ceng LM(曾黎明)
;
Qin B(秦波)
;
Qin B(秦波)
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Submit date:2014/12/11
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Plant-associated Bacteria
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
Bacterial Community Structure
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
SteL.era Chamaejasme L.
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
16s Rrna Gene
Biodiversity
Biodiversity
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Biodiversity
Nematicidal metabolites from roots of Stellera chamaejasme against Bursaphelenchus xylophilus and Bursaphelenchus mucronatus
期刊论文
Pest Management Science, 2014, 卷号: 70, 期号: 5, 页码: 827-835
Authors:
Cui HY(崔海燕)
;
Jin H(金辉)
;
Liu Q(刘权)
;
Yan ZQ(燕志强)
;
Ding L(丁兰)
;
Qin B(秦波)
;
Qin B(秦波)
Adobe PDF(270Kb)
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Submit date:2014/12/11
Phytochemical
Bursaphelenchus Mucronatus
Bursaphelenchus Xylophilus
Stellera Chamaejasme
Nematicidal Metabolite