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Volatile chemical product emissions enhance ozone and modulate urban chemistry 期刊论文
Proceedings of the National Academy of Science, 2021
作者:  Matthew M. Coggon;  Georgios I. Gkatzelis;  Brian C. McDonald;  Jessica B. Gilman;  Rebecca H. Schwantes;  Nader Abuhassan;  Kenneth C. Aikin;  Mark F. Arend;  Timothy A. Berkoff;  Steven S. Brown;  Teresa L. Campos;  Russell R. Dickerson;  Guillaume Gronoff;  James F. Hurley;  Gabriel Isaacman-VanWertz;  Abigail R. Koss;  Meng Li;  Stuart A. McKeen;  Fred Moshary;  Jeff Peischl;  Veronika Pospisilova;  Xinrong Ren;  Anna Wilson;  Yonghua Wu;  Michael Trainer;  Carsten Warneke
收藏  |  浏览/下载:14/0  |  提交时间:2021/08/10
Persistently well-ventilated intermediate-depth ocean through the last deglaciation 期刊论文
Nature, 2020
作者:  Tianyu Chen;  Laura F. Robinson;  Andrea Burke;  Louis Claxton;  Mathis P. Hain;  Tao Li;  James W. B. Rae;  Joseph Stewart;  Timothy D. J. Knowles;  Daniel J. Fornari;  Karen S. Harpp
收藏  |  浏览/下载:13/0  |  提交时间:2020/10/20
A comprehensive quantification of global nitrous oxide sources and sinks 期刊论文
Nature, 2020
作者:  Hanqin Tian;  Rongting Xu;  Josep G. Canadell;  Rona L. Thompson;  Wilfried Winiwarter;  Parvadha Suntharalingam;  Eric A. Davidson;  Philippe Ciais;  Robert B. Jackson;  Greet Janssens-Maenhout;  Michael J. Prather;  Pierre Regnier;  Naiqing Pan;  Shufen Pan;  Glen P. Peters;  Hao Shi;  Francesco N. Tubiello;  ;  nke Zaehle;  Feng Zhou;  Almut Arneth;  Gianna Battaglia;  Sarah Berthet;  Laurent Bopp;  Alexander F. Bouwman;  Erik T. Buitenhuis;  Jinfeng Chang;  Martyn P. Chipperfield;  Shree R. S. Dangal;  Edward Dlugokencky;  James W. Elkins;  Bradley D. Eyre;  Bojie Fu;  Bradley Hall;  Akihiko Ito;  Fortunat Joos;  Paul B. Krummel;  Angela Landolfi;  Goulven G. Laruelle;  Ronny Lauerwald;  Wei Li;  Sebastian Lienert;  Taylor Maavara;  Michael MacLeod;  Dylan B. Millet;  Stefan Olin;  Prabir K. Patra;  Ronald G. Prinn;  Peter A. Raymond;  Daniel J. Ruiz;  Guido R. van der Werf;  Nicolas Vuichard;  Junjie Wang;  Ray F. Weiss;  Kelley C. Wells;  Chris Wilson;  Jia Yang;  Yuanzhi Yao
收藏  |  浏览/下载:23/0  |  提交时间:2020/10/12
Timing and structure of the Younger Dryas event and its underlying climate dynamics 期刊论文
Proceedings of the National Academy of Science, 2020
作者:  Hai Cheng;  Haiwei Zhang;  Christoph Spötl;  Jonathan Baker;  Ashish Sinha;  Hanying Li;  Miguel Bartolomé;  Ana Moreno;  Gayatri Kathayat;  Jingyao Zhao;  Xiyu Dong;  Youwei Li;  Youfeng Ning;  Xue Jia;  Baoyun Zong;  Yassine Ait Brahim;  Carlos Pérez-Mejías;  Yanjun Cai;  Valdir F. Novello;  Francisco W. Cruz;  Jeffrey P. Severinghaus;  Zhisheng An;  R. Lawrence Edwards
收藏  |  浏览/下载:12/0  |  提交时间:2020/09/14
Global variability in seawater Mg:Ca and Sr:Ca ratios in the modern ocean 期刊论文
Proceedings of the National Academy of Science, 2020
作者:  Mario Lebrato;  Dieter Garbe-Schönberg;  Marius N. Müller;  Sonia Blanco-Ameijeiras;  Richard A. Feely;  Laura Lorenzoni;  Juan-Carlos Molinero;  Karen Bremer;  Daniel O. B. Jones;  Debora Iglesias-Rodriguez;  Dana Greeley;  Miles D. Lamare;  Aurelien Paulmier;  Michelle Graco;  Joan Cartes;  Joana Barcelos e Ramos;  Ana de Lara;  Ricardo Sanchez-Leal;  Paz Jimenez;  Flavio E. Paparazzo;  Susan E. Hartman;  Ulrike Westernströer;  Marie Küter;  Roberto Benavides;  Armindo F. da Silva;  Steven Bell;  Chris Payne;  Solveig Olafsdottir;  Kelly Robinson;  Liisa M. Jantunen;  Alexander Korablev;  Richard J. Webster;  Elizabeth M. Jones;  Olivier Gilg;  Pascal Bailly du Bois;  Jacek Beldowski;  Carin Ashjian;  Nejib D. Yahia;  Benjamin Twining;  Xue-Gang Chen;  Li-Chun Tseng;  Jiang-Shiou Hwang;  Hans-Uwe Dahms;  Andreas Oschlies
收藏  |  浏览/下载:14/0  |  提交时间:2020/09/08
New Guinea has the world鈥檚 richest island flora 期刊论文
Nature, 2020
作者:  Rodrigo Cá;  mara-Leret;  David G. Frodin;  Frits Adema;  Christiane Anderson;  Marc S. Appelhans;  George Argent;  Susana Arias Guerrero;  Peter Ashton;  William J. Baker;  Anders S. Barfod;  David Barrington;  Renata Borosova;  Gemma L. C. Bramley;  Marie Briggs;  Sven Buerki;  Daniel Cahen;  Martin W. Callmander;  Martin Cheek;  Cheng-Wei Chen;  Barry J. Conn;  Mark J. E. Coode;  Iain Darbyshire;  Sally Dawson;  John Dransfield;  Clare Drinkell;  Brigitta Duyfjes;  Atsushi Ebihara;  Zacky Ezedin;  Long-Fei Fu;  Osia Gideon;  Deden Girmansyah;  Rafaë;  l Govaerts;  Helen Fortune-Hopkins;  Gustavo Hassemer;  Alistair Hay;  Charlie D. Heatubun;  D. J. Nicholas Hind;  Peter Hoch;  Peter Homot;  Peter Hovenkamp;  Mark Hughes;  Matthew Jebb;  Laura Jennings;  Tiberius Jimbo;  Michael Kessler;  Ruth Kiew;  Sandra Knapp;  Penniel Lamei;  Marcus Lehnert;  Gwilym P. Lewis;  Hans Peter Linder;  Stuart Lindsay;  Yee Wen Low;  Eve Lucas;  Jeffrey P. Mancera;  Alexandre K. Monro;  Alison Moore;  David J. Middleton;  Hidetoshi Nagamasu;  Mark F. Newman;  Eimear Nic Lughadha;  Pablo H. A. Melo;  Daniel J. Ohlsen;  Caroline M. Pannell;  Barbara Parris;  Laura Pearce;  Darin S. Penneys;  Leon R. Perrie;  Peter Petoe;  Axel Dalberg Poulsen;  Ghillean T. Prance;  J. Peter Quakenbush;  Niels Raes;  Michele Rodda;  Zachary S. Rogers;  André;  Schuiteman;  Pedro Schwartsburd;  Robert W. Scotland;  Mark P. Simmons;  David A. Simpson;  Peter Stevens;  Michael Sundue;  Weston Testo;  Anna Trias-Blasi;  Ian Turner;  Timothy Utteridge;  Lesley Walsingham;  Bruce L. Webber;  Ran Wei;  George D. Weiblen;  Maximilian Weigend;  Peter Weston;  Willem de Wilde;  Peter Wilkie;  Christine M. Wilmot-Dear;  Hannah P. Wilson;  John R. I. Wood;  Li-Bing Zhang;  Peter C. van Welzen
收藏  |  浏览/下载:32/0  |  提交时间:2020/08/18
Rapid reconstruction of SARS-CoV-2 using a synthetic genomics platform 期刊论文
NATURE, 2020
作者:  Touat, Mehdi;  Li, Yvonne Y.;  Boynton, Adam N.;  Spurr, Liam F.;  Iorgulescu, J. Bryan;  Bohrson, Craig L.;  Cortes-Ciriano, Isidro;  Birzu, Cristina;  Geduldig, Jack E.;  Pelton, Kristine;  Lim-Fat, Mary Jane;  Pal, Sangita;  Ferrer-Luna, Ruben;  Ramkissoon, Shakti H.;  Dubois, Frank;  Bellamy, Charlotte;  Currimjee, Naomi;  Bonardi, Juliana;  Qian Kenin;  Ho, Patricia;  Malinowski, Seth;  Taquet, Leon;  Jones, Robert E.;  Shetty, Aniket;  Chow, Kin-Hoe;  Sharaf, Radwa;  Pavlick, Dean;  Albacker, Lee A.;  Younan, Nadia;  Baldini, Capucine;  Verreault, Maite;  Giry, Marine;  Guillerm, Erell;  Ammari, Samy;  Beuvon, Frederic;  Mokhtari, Karima;  Alentorn, Agusti;  Dehais, Caroline;  Houillier, Caroline;  Laigle-Donadey, Florence;  Psimaras, Dimitri;  Lee, Eudocia Q.;  Nayak, Lakshmi;  McFaline-Figueroa, J. Ricardo;  Carpentier, Alexandre;  Cornu, Philippe;  Capelle, Laurent;  Mathon, Bertrand;  Barnholtz-Sloan, Jill S.;  Chakravarti, Arnab;  Bi, Wenya Linda;  Chiocca, E. Antonio;  Fehnel, Katie Pricola;  Alexandrescu, Sanda;  Chi, Susan N.;  Haas-Kogan, Daphne;  Batchelor, Tracy T.;  Frampton, Garrett M.;  Alexander, Brian M.;  Huang, Raymond Y.;  Ligon, Azra H.;  Coulet, Florence;  Delattre, Jean-Yves;  Hoang-Xuan, Khe;  Meredith, David M.;  Santagata, Sandro;  Duval, Alex;  Sanson, Marc;  Cherniack, Andrew D.;  Wen, Patrick Y.;  Reardon, David A.;  Marabelle, Aurelien;  Park, Peter J.;  Idbaih, Ahmed;  Beroukhim, Rameen;  Bandopadhayay, Pratiti;  Bielle, Franck;  Ligon, Keith L.
收藏  |  浏览/下载:11/0  |  提交时间:2020/07/03

Reverse genetics has been an indispensable tool to gain insights into viral pathogenesis and vaccine development. The genomes of large RNA viruses, such as those from coronaviruses, are cumbersome to clone and manipulate inEscherichia coliowing to the size and occasional instability of the genome(1-3). Therefore, an alternative rapid and robust reverse-genetics platform for RNA viruses would benefit the research community. Here we show the full functionality of a yeast-based synthetic genomics platform to genetically reconstruct diverse RNA viruses, including members of theCoronaviridae,FlaviviridaeandPneumoviridaefamilies. Viral subgenomic fragments were generated using viral isolates, cloned viral DNA, clinical samples or synthetic DNA, and these fragments were then reassembled in one step inSaccharomyces cerevisiaeusing transformation-associated recombination cloning to maintain the genome as a yeast artificial chromosome. T7 RNA polymerase was then used to generate infectious RNA to rescue viable virus. Using this platform, we were able to engineer and generate chemically synthesized clones of the virus, severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2)(4), which has caused the recent pandemic of coronavirus disease (COVID-19), in only a week after receipt of the synthetic DNA fragments. The technical advance that we describe here facilitates rapid responses to emerging viruses as it enables the real-time generation and functional characterization of evolving RNA virus variants during an outbreak.


A yeast-based synthetic genomics platform is used to reconstruct and characterize large RNA viruses from synthetic DNA fragments  this technique will facilitate the rapid analysis of RNA viruses, such as SARS-CoV-2, during an outbreak.


  
Effect of inorganic-to-organic mass ratio on the heterogeneous OH reaction rates of erythritol: implications for atmospheric chemical stability of 2-methyltetrols 期刊论文
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2020, 20 (6) : 3879-3893
作者:  Xu, Rongshuang;  Lam, Hoi Ki;  Wilson, Kevin R.;  Davie, James F.;  Son, Mijung;  Li, Wentao;  Tse, Ying-Lung Steve;  Chan, Man Nin
收藏  |  浏览/下载:10/0  |  提交时间:2020/07/02
Environmental reservoir dynamics predict global infection patterns and population impacts for the fungal disease white-nose syndrome 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2020, 117 (13) : 7255-7262
作者:  Hoyt, Joseph R.;  Langwig, Kate E.;  Sun, Keping;  Parise, Katy L.;  Li, Aoqiang;  Wang, Yujuan;  Huang, Xiaobin;  Worledge, Lisa;  Miller, Helen;  White, J. Paul;  Kaarakka, Heather M.;  Redell, Jennifer A.;  Gorfol, Tamas;  Boldogh, Sandor Andras;  Fukui, Dai;  Sakuyama, Muneki;  Yachimori, Syuuji;  Sato, Akiyoshi;  Dalannast, Munkhnast;  Jargalsaikhan, Ariunbold;  Batbayar, Nyambayar;  Yovel, Yossi;  Amichai, Eran;  Natradze, Ioseb;  Frick, Winifred F.;  Foster, Jeffrey T.;  Feng, Jiang;  Kilpatrick, A. Marm
收藏  |  浏览/下载:14/0  |  提交时间:2020/05/13
environmental pathogen reservoir  global disease dynamics  white-nose syndrome  Pseudogymnoascus destructans  
Z-nucleic-acid sensing triggers ZBP1-dependent necroptosis and inflammation 期刊论文
NATURE, 2020, 580 (7803) : 391-+
作者:  Zhang, Zhibin;  Zhang, Ying;  Xia, Shiyu;  Kong, Qing;  Li, Shunying;  Liu, Xing;  Junqueira, Caroline;  Meza-Sosa, Karla F.;  Mok, Temy Mo Yin;  Ansara, James;  Sengupta, Satyaki;  Yao, Yandan;  Wu, Hao;  Lieberman, Judy
收藏  |  浏览/下载:11/0  |  提交时间:2020/07/03

The biological function of Z-DNA and Z-RNA, nucleic acid structures with a left-handed double helix, is poorly understood(1-3). Z-DNA-binding protein 1 (ZBP1  also known as DAI or DLM-1) is a nucleic acid sensor that contains two Z alpha domains that bind Z-DNA(4,5) and Z-RNA(6-8). ZBP1 mediates host defence against some viruses(6,7,9-14) by sensing viral nucleic acids(6,7,10). RIPK1 deficiency, or mutation of its RIP homotypic interaction motif (RHIM), triggers ZBP1-dependent necroptosis and inflammation in mice(15,16). However, the mechanisms that induce ZBP1 activation in the absence of viral infection remain unknown. Here we show that Z alpha-dependent sensing of endogenous ligands induces ZBP1-mediated perinatal lethality in mice expressing RIPK1 with mutated RHIM (Ripk1(mR/mR)), skin inflammation in mice with epidermis-specific RIPK1 deficiency (RIPK1(E-KO)) and colitis in mice with intestinal epithelial-specific FADD deficiency (FADD(IEC-KO)). Consistently, functional Z alpha domains were required for ZBP1-induced necroptosis in fibroblasts that were treated with caspase inhibitors or express RIPK1 with mutated RHIM. Inhibition of nuclear export triggered the Z alpha-dependent activation of RIPK3 in the nucleus resulting in cell death, which suggests that ZBP1 may recognize nuclear Z-form nucleic acids. We found that ZBP1 constitutively bound cellular double-stranded RNA in a Z alpha-dependent manner. Complementary reads derived from endogenous retroelements were detected in epidermal RNA, which suggests that double-stranded RNA derived from these retroelements may act as a Z alpha-domain ligand that triggers the activation of ZBP1. Collectively, our results provide evidence that the sensing of endogenous Z-form nucleic acids by ZBP1 triggers RIPK3-dependent necroptosis and inflammation, which could underlie the development of chronic inflammatory conditions-particularly in individuals with mutations in RIPK1 and CASP8(17-20).