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6篇 您的检索式:作者名="HE Zhendan"
    题名 作者 年代 出处 被引量
1New triterpenoid saponins from the roots of Platyc- odon grandiflorum显示文摘HE Zhendan QIAO Chunfeng HAN Quanbin 2005Tetrahedron2005,61,8:1
2New triterpenoid saponins from the roots of Platycodon grandiflorum 显示文摘He Zhendan Qiao Chunfeng Han Quanbin 2005Tetrahedron2005,61,8:1
3Anti-oxidative,anti-inflammatory and hepato-protective effects of Ligustrum robustum显示文摘Lau KM He Zhendan Dong Hui 0,,1:1
4Phenylpropanoid glycoside inhibition of pepsin, trypsin and α-chymotrypsin enzyme activity in Kudingcha leaves from Ligustrum purpurascens显示文摘Xuli Wu WenPu Wang Tian Zhu Ting Liang FangQi Lu Weiyi He Haiping Zhang Zhigang Liu ShaoHeng He Kaiping Gao Zhendan He 2013Food Research International2013,,2:1
5New triterpenoid saponins from the roots of Platycodon grandiflorum 显示文摘Zhendan He Chunfeng Qiao Quanbin Han 2005Tetrahedron2005,61,8:1
6Responses of plant diversity and soil microorganism diversity to nitrogen addition in the desert steppe,China显示文摘Nitrogen(N)deposition is a significant aspect of global change and poses a threat to terrestrial biodiversity.The impact of plant-soil microbe relationships to N deposition has recently attracted considerable attention.Soil microorganisms have been proven to provide nutrients for specific plant growth,especially in nutrient-poor desert steppe ecosystems.However,the effects of N deposition on plant-soil microbial community interactions in such ecosystems remain poorly understood.To investigate these effects,we conducted a 6-year N-addition field experiment in a Stipa breviflora Griseb.desert steppe in Inner Mongolia Autonomous Region,China.Four N treatment levels(N0,N30,N50,and N100,corresponding to 0,30,50,and 100 kg N/(hm2•a),respectively)were applied to simulate atmospheric N deposition.The results showed that N deposition did not significantly affect the aboveground biomass of desert steppe plants.N deposition did not significantly reduce the alfa-diversity of plant and microbial communities in the desert steppe,and low and mediate N additions(N30 and N50)had a promoting effect on them.The variation pattern of plant Shannon index was consistent with that of the soil bacterial Chao1 index.N deposition significantly affected the beta-diversity of plants and soil bacteria,but did not significantly affect fungal communities.In conclusion,N deposition led to co-evolution between desert steppe plants and soil bacterial communities,while fungal communities exhibited strong stability and did not undergo significant changes.These findings help clarify atmospheric N deposition effects on the ecological health and function of the desert steppe.YE He HONG Mei XU Xuehui LIANG Zhiwei JIANG Na TU Nare WU Zhendan 2024Journal of Arid Land2024,16,3:0
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