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Quantum computational advantage using photons 期刊论文
Science, 2020
作者:  Han-Sen Zhong;  Hui Wang;  Yu-Hao Deng;  Ming-Cheng Chen;  Li-Chao Peng;  Yi-Han Luo;  Jian Qin;  Dian Wu;  Xing Ding;  Yi Hu;  Peng Hu;  Xiao-Yan Yang;  Wei-Jun Zhang;  Hao Li;  Yuxuan Li;  Xiao Jiang;  Lin Gan;  Guangwen Yang;  Lixing You;  Zhen Wang;  Li Li;  Nai-Le Liu;  Chao-Yang Lu;  Jian-Wei Pan
收藏  |  浏览/下载:35/0  |  提交时间:2020/12/22
Identification of Integrator-PP2A complex (INTAC), an RNA polymerase II phosphatase 期刊论文
Science, 2020
作者:  Hai Zheng;  Yilun Qi;  Shibin Hu;  Xuan Cao;  Congling Xu;  Zhinang Yin;  Xizi Chen;  Yan Li;  Weida Liu;  Jie Li;  Jiawei Wang;  Gang Wei;  Kaiwei Liang;  Fei Xavier Chen;  Yanhui Xu
收藏  |  浏览/下载:11/0  |  提交时间:2020/11/30
Genomic surveillance reveals multiple introductions of SARS-CoV-2 into Northern California 期刊论文
Science, 2020
作者:  Xianding Deng;  Wei Gu;  Scot Federman;  Louis du Plessis;  Oliver G. Pybus;  Nuno R. Faria;  Candace Wang;  Guixia Yu;  Brian Bushnell;  Chao-Yang Pan;  Hugo Guevara;  Alicia Sotomayor-Gonzalez;  Kelsey Zorn;  Allan Gopez;  Venice Servellita;  Elaine Hsu;  Steve Miller;  Trevor Bedford;  Alexander L. Greninger;  Pavitra Roychoudhury;  Lea M. Starita;  Michael Famulare;  Helen Y. Chu;  Jay Shendure;  Keith R. Jerome;  Catie Anderson;  Karthik Gangavarapu;  Mark Zeller;  Emily Spencer;  Kristian G. Andersen;  Duncan MacCannell;  Clinton R. Paden;  Yan Li;  Jing Zhang;  Suxiang Tong;  Gregory Armstrong;  Scott Morrow;  Matthew Willis;  Bela T. Matyas;  Sundari Mase;  Olivia Kasirye;  Maggie Park;  Godfred Masinde;  Curtis Chan;  Alexander T. Yu;  Shua J. Chai;  Elsa Villarino;  Brandon Bonin;  Debra A. Wadford;  Charles Y. Chiu
收藏  |  浏览/下载:15/0  |  提交时间:2020/08/09
Changes in contact patterns shape the dynamics of the COVID-19 outbreak in China 期刊论文
Science, 2020
作者:  Juanjuan Zhang;  Maria Litvinova;  Yuxia Liang;  Yan Wang;  Wei Wang;  Shanlu Zhao;  Qianhui Wu;  Stefano Merler;  Cécile Viboud;  Alessandro Vespignani;  Marco Ajelli;  Hongjie Yu
收藏  |  浏览/下载:9/0  |  提交时间:2020/06/29
Structural basis for inhibition of the RNA-dependent RNA polymerase from SARS-CoV-2 by remdesivir 期刊论文
Science, 2020
作者:  Wanchao Yin;  Chunyou Mao;  Xiaodong Luan;  Dan-Dan Shen;  Qingya Shen;  Haixia Su;  Xiaoxi Wang;  Fulai Zhou;  Wenfeng Zhao;  Minqi Gao;  Shenghai Chang;  Yuan-Chao Xie;  Guanghui Tian;  He-Wei Jiang;  Sheng-Ce Tao;  Jingshan Shen;  Yi Jiang;  Hualiang Jiang;  Yechun Xu;  Shuyang Zhang;  Yan Zhang;  H. Eric Xu
收藏  |  浏览/下载:19/0  |  提交时间:2020/06/29
Structures of cell wall arabinosyltransferases with the anti-tuberculosis drug ethambutol 期刊论文
Science, 2020
作者:  Lu Zhang;  Yao Zhao;  Yan Gao;  Lijie Wu;  Ruogu Gao;  Qi Zhang;  Yinan Wang;  Chengyao Wu;  Fangyu Wu;  Sudagar S. Gurcha;  Natacha Veerapen;  Sarah M. Batt;  Wei Zhao;  Ling Qin;  Xiuna Yang;  Manfu Wang;  Yan Zhu;  Bing Zhang;  Lijun Bi;  Xian’en Zhang;  Haitao Yang;  Luke W. Guddat;  Wenqing Xu;  Quan Wang;  Jun Li;  Gurdyal S. Besra;  Zihe Rao
收藏  |  浏览/下载:10/0  |  提交时间:2020/06/16
Improvement in municipal wastewater treatment alters lake nitrogen to phosphorus ratios in populated regions 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2020, 117 (21) : 11566-11572
作者:  Tong, Yindong;  Wang, Mengzhu;  Penuelas, Josep;  Liu, Xueyan;  Paerl, Hans W.;  Elser, James J.;  Sardans, Jordi;  Couture, Raoul-Marie;  Larssen, Thorjorn;  Hu, Hongying;  Dong, Xin;  He, Wei;  Zhang, Wei;  Wang, Xuejun;  Zhang, Yang;  Liu, Yi;  Zeng, Siyu;  Kong, Xiangzhen;  Janssen, Annette B. G.;  Lin, Yan
收藏  |  浏览/下载:12/0  |  提交时间:2020/05/13
nutrient balance  water quality change  anthropogenic source  wastewater treatment  aquatic ecosystem  
The water lily genome and the early evolution of flowering plants 期刊论文
NATURE, 2020, 577 (7788) : 79-+
作者:  Zhang, Liangsheng;  Chen, Fei;  Zhang, Xingtan;  Li, Zhen;  Zhao, Yiyong;  Lohaus, Rolf;  Chang, Xiaojun;  Dong, Wei;  Ho, Simon Y. W.;  Liu, Xing;  Song, Aixia;  Chen, Junhao;  Guo, Wenlei;  Wang, Zhengjia;  Zhuang, Yingyu;  Wang, Haifeng;  Chen, Xuequn;  Hu, Juan;  Liu, Yanhui;  Qin, Yuan;  Wang, Kai;  Dong, Shanshan;  Liu, Yang;  Zhang, Shouzhou;  Yu, Xianxian;  Wu, Qian;  Wang, Liangsheng;  Yan, Xueqing;  Jiao, Yuannian;  Kong, Hongzhi;  Zhou, Xiaofan;  Yu, Cuiwei;  Chen, Yuchu;  Li, Fan;  Wang, Jihua;  Chen, Wei;  Chen, Xinlu;  Jia, Qidong;  Zhang, Chi;  Jiang, Yifan;  Zhang, Wanbo;  Liu, Guanhua;  Fu, Jianyu;  Chen, Feng;  Ma, Hong;  Van de Peer, Yves;  Tang, Haibao
收藏  |  浏览/下载:13/0  |  提交时间:2020/07/03

Water lilies belong to the angiosperm order Nymphaeales. Amborellales, Nymphaeales and Austrobaileyales together form the so-called ANA-grade of angiosperms, which are extant representatives of lineages that diverged the earliest from the lineage leading to the extant mesangiosperms(1-3). Here we report the 409-megabase genome sequence of the blue-petal water lily (Nymphaea colorata). Our phylogenomic analyses support Amborellales and Nymphaeales as successive sister lineages to all other extant angiosperms. The N. colorata genome and 19 other water lily transcriptomes reveal a Nymphaealean whole-genome duplication event, which is shared by Nymphaeaceae and possibly Cabombaceae. Among the genes retained from this whole-genome duplication are homologues of genes that regulate flowering transition and flower development. The broad expression of homologues of floral ABCE genes in N. colorata might support a similarly broadly active ancestral ABCE model of floral organ determination in early angiosperms. Water lilies have evolved attractive floral scents and colours, which are features shared with mesangiosperms, and we identified their putative biosynthetic genes in N. colorata. The chemical compounds and biosynthetic genes behind floral scents suggest that they have evolved in parallel to those in mesangiosperms. Because of its unique phylogenetic position, the N. colorata genome sheds light on the early evolution of angiosperms.


  
Massively multiplexed nucleic acid detection with Cas13 期刊论文
NATURE, 2020, 582 (7811) : 277-+
作者:  Mahato, Biraj;  Kaya, Koray Dogan;  Fan, Yan;  Sumien, Nathalie;  Shetty, Ritu A.;  Zhang, Wei;  Davis, Delaney;  Mock, Thomas;  Batabyal, Subrata;  Ni, Aiguo;  Mohanty, Samarendra;  Han, Zongchao;  Farjo, Rafal;  Forster, Michael J.;  Swaroop, Anand;  Chavala, Sai H.
收藏  |  浏览/下载:62/0  |  提交时间:2020/07/03

CRISPR-based nucleic acid detection is used in a platform that can simultaneously detect 169 human-associated viruses in multiple samples, providing scalable, multiplexed pathogen detection aimed at routine surveillance for public health.


The great majority of globally circulating pathogens go undetected, undermining patient care and hindering outbreak preparedness and response. To enable routine surveillance and comprehensive diagnostic applications, there is a need for detection technologies that can scale to test many samples(1-3)while simultaneously testing for many pathogens(4-6). Here, we develop Combinatorial Arrayed Reactions for Multiplexed Evaluation of Nucleic acids (CARMEN), a platform for scalable, multiplexed pathogen detection. In the CARMEN platform, nanolitre droplets containing CRISPR-based nucleic acid detection reagents(7)self-organize in a microwell array(8)to pair with droplets of amplified samples, testing each sample against each CRISPR RNA (crRNA) in replicate. The combination of CARMEN and Cas13 detection (CARMEN-Cas13) enables robust testing of more than 4,500 crRNA-target pairs on a single array. Using CARMEN-Cas13, we developed a multiplexed assay that simultaneously differentiates all 169 human-associated viruses with at least 10 published genome sequences and rapidly incorporated an additional crRNA to detect the causative agent of the 2020 COVID-19 pandemic. CARMEN-Cas13 further enables comprehensive subtyping of influenza A strains and multiplexed identification of dozens of HIV drug-resistance mutations. The intrinsic multiplexing and throughput capabilities of CARMEN make it practical to scale, as miniaturization decreases reagent cost per test by more than 300-fold. Scalable, highly multiplexed CRISPR-based nucleic acid detection shifts diagnostic and surveillance efforts from targeted testing of high-priority samples to comprehensive testing of large sample sets, greatly benefiting patients and public health(9-11).


  
Self-preservation strategy for approaching global warming targets in the post-Paris Agreement era 期刊论文
NATURE COMMUNICATIONS, 2020, 11 (1)
作者:  Wei, Yi-Ming;  Han, Rong;  Wang, Ce;  Yu, Biying;  Liang, Qiao-Mei;  Yuan, Xiao-Chen;  Chang, Junjie;  Zhao, Qingyu;  Liao, Hua;  Tang, Baojun;  Yan, Jinyue;  Cheng, Lijing;  Yang, Zili
收藏  |  浏览/下载:8/0  |  提交时间:2020/05/13