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| 1 | Kiwifruit Genome Database(KGD):a comprehensive resource for kiwifruit genomics显示文摘Kiwifruit(Actinidia spp.)plants produce economically important fruits containing abundant,balanced phytonutrients with extraordinarily high vitamin C contents.Since the release of the first kiwifruit reference genome sequence in 2013,large volumes of genome and transcriptome data have been rapidly accumulated for a handful of kiwifruit species.To efficiently store,analyze,integrate,and disseminate these large-scale datasets to the research community,we constructed the Kiwifruit Genome Database(KGD;http://gffzz6fc08c45f9754a68h96cvwk0pb56w6cpn.ffgz.tsg.suse.edu.cn/).The database currently contains all publicly available genome and gene sequences,gene annotations,biochemical pathways,transcriptome profiles derived from public RNA-Seq datasets,and comparative genomic analysis results such as syntenic blocks and homologous gene pairs between different kiwifruit genome assemblies.A set of user-friendly query interfaces,analysis tools and visualization modules have been implemented in KGD to facilitate translational and applied research in kiwifruit,which include JBrowse,a popular genome browser,and the NCBI BLAST sequence search tool.Other notable tools developed within KGD include a genome synteny viewer and tools for differential gene expression analysis as well as gene ontology(GO)term and pathway enrichment analysis. | Junyang Yue Jiacheng Liu Wei Tang Ya Qing Wu Xiaofeng Tang Wei Li Ying Yang Lihuan Wang Shengxiong Huang Congbing Fang Kun Zhao Zhangjun Fei Yongsheng Liu Yi Zheng | 2020 | Horticulture Research2020,7,1: | 6 |
| 2 | Mobile Internet WebRTC and Related Technologies显示文摘This paper describes an improved design for WebRTC technolo-gy. With this design, WebRTC communication at client side,server side, and between these two sides is improved. HTML5WebSocket, media negotiation and synthesis, network addresstranslator(NAT)/firewall traversal, Session Initiation Protocol(SIP) signaling interaction, and P2P communication security areall used in this improved design. This solution solves cross-browser running problem of WebRTC applications, reduces reli-ance on client-side processing capability, and reduces band-width consumption. With this design, WebRTC also becomemore scalable. | Zhenjiang Dong Congbing Li Wei Wang Da Lyu | 2014 | ZTE Communications2014,12,1: | 1 |
| 3 | An Optimization of HTTP/2 for Mobile Applications显示文摘 | DONG Zhenjiang SHUANG Kai CAI Yanan WANG Wei LI Congbing | 2016 | ZTE Communications2016,14,B12: | 0 |
| 4 | Electrically driven motion, destruction, and chirality change of polar vortices in oxide superlattices显示文摘Topological polar vortices, which are electric analogs of magnetic objects, present great potential in applications of future nanoelectronics because of their nanometer size, anomalous dielectric response, and chirality. To enable the functionalities, it is prerequisite to manipulate the polar states and chirality by using external stimuli. Here, we probe the evolutions of polar state and chirality evolutions of topological polar vortices in Pb TiO;/Sr TiO;superlattices under an electric field by using atomically resolved in situ scanning transmission electron microscopy and phase-field simulations. We find that, under electric field, the chiral vortex cores can be moved laterally to form close-pair structures, transform into a/c domain stripes, and finally become a nonchiral c-domain. Such transition is reversible and spontaneous after bias removal. Interestingly, during switching and backswitching events, the vortex rotation can be changed, offering a potential strategy to manipulate vortex chirality. The revealed dynamic behavior of individual polar vortices at the atomic scale provides fundamentals for future device applications. | Pan Chen Congbing Tan Zhexin Jiang Peng Gao Yuanwei Sun Lifen Wang Xiaomei Li Ruixue Zhu Lei Liao Xu Hou Ke Qu Ning Li Xiaomin Li Zhi Xu Kaihui Liu Wenlong Wang Jinbin Wang Xiaoping Ouyang Xiangli Zhong Jie Wang Xuedong Bai | 2022 | Science China(Physics,Mechanics & Astronomy)2022,65,3: | 0 |