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6篇 您的检索式:作者名="LuoXY"
    题名 作者 年代 出处 被引量
1Gene silencing:Double-stranded RNA mediated mRNA degradation and gene inactivation显示文摘The recent development of gene transfer approaches in plants and animals has revealed that transgene can undergo silencing after integration in the genome. Host genes can also be silenced as a consequence of the presence of a homologous transgene. More and more investigations have demonstrated that double- stranded RNA can silence genes by triggering degradation of homologous RNA in the cytoplasm and by directing methylation of homologous nuclear DNA sequences. Analyses of Arabidopsis mutants and plant viral suppressors of silencing are unraveling RNA-silencing mechanisms and are assessing the role of methy- lation in transcriptional and posttranscriptional gene silencing. This review will focus on double-stranded RNA mediated mRNA degradation and gene inactivation in plants.TangW LuoXY 2001Cell Research2001,11,3:2
2金针菇菌丝体发酵培养及成分破壁提取的研究[D]显示文摘LUOXY(罗湘云) 成都理工大学学报0,,:1
3显示文摘ZHANGJin(张进) TANGYing(唐英) LUOxi(罗茜) eta1 ChineseJlnorgChem(WujiHuaxueXuebao)0,,:1
4Applications and challenges of CRISPR-Cas gene-editing to disease treatment in clinics显示文摘Clustered regularly interspaced short palindromic repeats(CRISPR)-associated systems(Cas)are efficient tools for targeting specific genes for laboratory research,agricultural engineering,biotechnology,and human disease treatment.Cas9,by far the most extensively used gene-editing nuclease,has shown great promise for the treatment of hereditary diseases,viral infection,cancers,and so on.Recent reports have revealed that some other types of CRISPR-Cas systems may also have surprising potential to join the fray as gene-editing tools for various applications.Despite the rapid progress in basic research and clinical tests,some underlying problems present continuous,significant challenges,such as editing efficiency,relative difficulty in delivery,off-target effects,immunogenicity,etc.This article summarizes the applications of CRISPR-Cas from bench to bedside and highlights the current obstacles that may limit the usage of CRISPR-Cas systems as gene-editing toolkits in precision medicine and offer some viewpoints that may help to tackle these challenges and facilitate technical development.CRISPR-Cas systems,as a powerful gene-editing approach,will offer great hopes in clinical treatments for many individuals with currently incurable diseases.Wenyi Liu Luoxi Li Jianxin Jiang Min Wu Ping Lin 2021Precision Clinical Medicine2021,4,3:0
5Impact of Strengthened Japan-U.S. Alliance on China's Peripheral Security显示文摘Formed in the early 1950s,the Japan-U.S alliance is a product of the cold war and its military alliance nature is further highlighted by the revised Japan-U.S.Treaty of Mutua Cooperation and Security.After the end of the cold war,Japan-U.S.alliance is not deceased because of the dissolution of Soviet Union。Huang Dahui Zhao Luoxi 2016Peace2016,,4:0
6Internet of light: Technologies and applications显示文摘Intelligent lighting has attracted lots of research interests to investigate all the possible schemes to support this need as human has spent more and more time indoor.Semiconductor-based illumination network is an ideal bearer to carry on this mission.In this paper,we propose the concept of Internet of Light(IoL)and define its key functionalities by introducing the information and communication technologies to the illumination networks.Our latest research progress on high-speed transmission,resource optimization,and light stroboscopic irradiation experiment based on IoL platform show that IoL can not only provide value-added services such as positioning and information transmission but also act like a sensor network as part of Internet of Things infrastructure.It confirms that with sensors for different purposes integrated into the lamp,IoL helps people be aware of the environmental changes and make the adjustment accordingly,can provide cost-effective information service for Internet of Things applications,and supports the non-intrusive optical therapy in the future.Jian Song Jintao Wang Fang Yang Hongming Zhang Chao Zhang Hui Yang Changyong Pan Xiaofei Wang Yongqiang Lyu Luoxi Hao 2022Intelligent and Converged Networks2022,3,3:0
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