维普中文期刊产品整合服务
6篇 您的检索式:作者名="Keming Qi"
    题名 作者 年代 出处 被引量
1SCN1A, SCN1B, and GABRG2 gene mutation analysis in Chinese families with generalized epilepsy with febrile seizures plus显示文摘Huihui Sun Yuehua Zhang Jianmin Liang Xiaoyan Liu Xiuwei Ma Husheng Wu Keming Xu Jiong Qin Yu Qi Xiru Wu 2008Journal of Human Genetics2008,,8:1
2Kinetics char- acteristics of coal low-temperature oxidation in oxygen-depleted air 显示文摘Qi Guansheng Wang Deming Zheng Keming et a/ 2015Journal of Loss Prevention in the Process Industries2015,35,:1
3Kinetics characteristics of coal low-temperature oxidation in oxygendepleted air显示文摘Qi Guansheng Wang Deming Zheng Keming 2015Journal of Loss Prevention in the Process Industries2015,35,:1
4Recycling Carbon Resources from Waste PET to Reduce Carbon Dioxide Emission:Carbonization Technology Review and Perspective显示文摘Greenhouse gas emissions from waste plastics have caused global warming all over the world,which has been a central threat to the ecological environment for humans,flora and fauna.Among waste plastics,waste polyethylene terephthalate(PET)is attractive due to its excellent stability and degradation-resistant.Therefore,merging China’s carbon peak and carbon neutrality goals would be beneficial.In this review,we summarize the current state-of-the-art of carbon emission decrease from a multi-scale perspective technologically.We suggest that the carbon peak for waste PET can be achieved by employing the closed-loop supply chain,including recycling,biomass utilization,carbon capture and utilization.Waste PET can be a valuable and renewable resource in the whole life cycle.Undoubtedly,all kinds of PET plastics can be ultimately converted into CO_(2),which can also be feedstock for various kinds of chemical products,including ethyl alcohol,formic acid,soda ash,PU,starch and so on.As a result,the closed-loop supply chain can help the PET plastics industry drastically reduce its carbon footprint.Xing Zhou Qi Wang Sai Feng Jingrui Deng Keming Zhu Yun Xing Xiaolian Meng Xiaojun Wang Lu Li 2023Journal of Renewable Materials2023,11,5:0
5Combined analysis of transcriptomics and metabolomics revealed complex metabolic genes for diterpenoids biosynthesis in different organs of Anoectochilus roxburghii显示文摘Objective:Diterpenoids with a wide variety of biological activities from Anoectochilus roxburghii,a precious medicinal plant,are important active components.However,due to the lack of genetic information on the metabolic process of diterpenoids in A.roxburghii,the genes involved in the molecular regulation mechanism of diterpenoid metabolism are still unclear.This study revealed the complex metabolic genes for diterpenoids biosynthesis in different organs of A.roxburghii by combining analysis of transcriptomics and metabolomics.Methods:The differences in diterpenoid accumulation in roots,stems and leaves of A.roxburghii were analyzed by metabonomic analysis,and its metabolic gene information was obtained by transcriptome sequencing.Then,the molecular mechanism of differential diterpenoid accumulation in different organs of A.roxburghii was analyzed from the perspective of gene expression patterns.Results:A total of 296 terpenoid metabolites were identified in the five terpenoid metabolic pathways in A.roxburghii.There were 38,34,and 18 diterpenoids with different contents between roots and leaves,between leaves and stems,and between roots and stems,respectively.Twenty-nine metabolic enzyme genes with 883 unigenes in the diterpenoid synthesis process were identified,and the DXS and FDPS in the terpenoid backbone biosynthesis stage and CPA,GA20ox,GA3ox,GA2ox,and MAS in the diterpenoid biosynthesis stage were predicted to be the key metabolic enzymes for the accumulation of diterpenoids.In addition,14 key transcription factor coding genes were predicted to be involved in the regulation of the diterpenoid biosynthesis.The expression of genes such as GA2ox,MAS,CPA,GA20ox and GA3ox might be activated by some of the 14 transcription factors.The transcription factor NTF-Y and PRE6 were predicted to be the most important transcription factors.Conclusion:This study determined 29 metabolic enzyme genes and predicted 14 transcription factors involved in the molecular regulation mechanism of diterpenoid metabolism in A.roxburghii,which provided a reference for the further study of the molecular regulation mechanism of the accumulation of diterpenoids in different organs of A.roxburghii.Yicong Wei Jiayuan Zhang Keming Qi Ye Li Ying Chen 2023Chinese Herbal Medicines2023,15,2:0
6Expert Consensus on Nutritional Support for Children with Congenital Heart Disease(2023 Edition)显示文摘The second edition of the expert consensus on pediatric nutrition was formed based on a global update of pedia-tric nutrition guidelines or consensus worldwide,the management of congenital heart disease,and the results of multi-center clinical nutrition research for congenital heart disease following thefirst Chinese consensus edition of 2016.The consensus was also shaped by the results of three discussion sessions and two questionnaires con-ducted by the 13-member collaboration group.This process was informed by both clinical guidelines and expert consensus.The quality of literature,both in English and Chinese,and the level of recommendations were evaluated using the Grading of Recommendations Assessment,Development,and Evaluations(GRADE)system.Xuming Mo Wei Cai Jirong Qi Zhuoming Xu Ying Wang Weihui Yan Shoujun Li Nianguo Dong Xinxin Chen Jinfen Liu Qiang Shu Jimei Chen Haibo Zhang Hao Zhang Quansheng Xing Qi An Xiaofeng Li Xu Wang Yan He Junwu Su Taibing Fan Teng Ming Weibing Tang Li Hong Jinghao Zheng Ming Ye Guocheng Sun Yiqun Ding Liang Tao Yifeng Yang Zhongshi Wu Hua Cao Qiang Wang Keming Yang Libing Zhang Ping Wen Yanqin Cui Bo Zhai Yong Zou Qingya Tang Rui Chen Chun Wu Zhiyu Feng Caixia Liu Yaping Mi Rufang Zhang Ke Lin Xin Li Mingan Pi Xiangming Fan Shanshan Shi Peng Huang Zhengxia Pan Jiafeng Qi Renwei Chen Shuguang Tao Yaqin Shu Huifeng Zhang Lan Jiang Min Da Nishant Patel Liang Hu Cardiac Surgery Group of Pediatric Surgery Society of Chinese Medical Association and Parenteral Enteral Nutrition Society of Chinese Medical Association 2023Congenital Heart Disease2023,18,6:0
返回顶部 每页显示:
共1页 首页 上一页 第1页 下一页 末页 /1 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费