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SoilTemp: A global database of near‐surface temperature 期刊论文
Global Change Biology, 2020
作者:  Jonas J. Lembrechts;  Juha Aalto;  Michael B. Ashcroft;  Pieter De Frenne;  Martin Kopecký;  Jonathan Lenoir;  Miska Luoto;  Ilya M. D. Maclean;  Olivier Roupsard;  Eduardo Fuentes‐;  Lillo;  Rafael A. Garcí;  a;  Loï;  c Pellissier;  Camille Pitteloud;  Juha M. Alatalo;  Stuart W. Smith;  Robert G. Bjö;  rk;  Lena Muffler;  Amanda Ratier Backes;  Simone Cesarz;  Felix Gottschall;  Joseph Okello;  Josef Urban;  Roman Plichta;  Martin Svá;  tek;  Shyam S. Phartyal;  Sonja Wipf;  Nico Eisenhauer;  Mihai Puș;  caș;  Pavel D. Turtureanu;  Andrej Varlagin;  Romina D. Dimarco;  Alistair S. Jump;  Krystal Randall;  Ellen Dorrepaal;  Keith Larson;  Josefine Walz;  Luca Vitale;  Miroslav Svoboda;  Rebecca Finger Higgens;  Aud H. Halbritter;  Salvatore R. Curasi;  Ian Klupar;  Austin Koontz;  William D. Pearse;  Elizabeth Simpson;  Michael Stemkovski;  Bente Jessen Graae;  Mia Vedel Sø;  rensen;  Toke T. Hø;  ye;  M. Rosa Ferná;  ndez Calzado;  Juan Lorite;  Michele Carbognani;  Marcello Tomaselli;  T'ai G. W. Forte;  Alessandro Petraglia;  Stef Haesen;  Ben Somers;  Koenraad Van Meerbeek;  Mats P. Bjö;  rkman;  Kristoffer Hylander;  Sonia Merinero;  Mana Gharun;  Nina Buchmann;  Jiri Dolezal;  Radim Matula;  Andrew D. Thomas;  Joseph J. Bailey;  Dany Ghosn;  George Kazakis;  Miguel A. de Pablo;  Julia Kemppinen;  Pekka Niittynen;  Lisa Rew;  Tim Seipel;  Christian Larson;  James D. M. Speed;  Jonas Ardö;  Nicoletta Cannone;  Mauro Guglielmin;  Francesco Malfasi;  Maaike Y. Bader;  Rafaella Canessa;  Angela Stanisci;  Juergen Kreyling;  Jonas Schmeddes;  Laurenz Teuber;  Valeria Aschero;  Marek Č;  iliak;  Františ;  ek Má;  liš;  Pallieter De Smedt;  Sanne Govaert;  Camille Meeussen;  Pieter Vangansbeke;  Khatuna Gigauri;  Andrea Lamprecht;  Harald Pauli;  Klaus Steinbauer;  Manuela Winkler;  Masahito Ueyama;  Martin A. Nuñ;  ez;  Tudor‐;  Mihai Ursu;  Sylvia Haider;  Ronja E. M. Wedegä;  rtner;  Marko Smiljanic;  Mario Trouillier;  Martin Wilmking;  Jan Altman;  Josef Brů;  na;  Lucia Hederová;  Martin Macek;  Matě;  j Man;  Jan Wild;  Pascal Vittoz;  Meelis Pä;  rtel;  Peter Baranč;  ok;  ;  bert Kanka;  Jozef Kollá;  r;  Andrej Palaj;  Agustina Barros;  Ana C. Mazzolari;  Marijn Bauters;  Pascal Boeckx;  José;  ;  Luis Benito Alonso;  Shengwei Zong;  Valter Di Cecco;  Zuzana Sitková;  Katja Tielbö;  rger;  Liesbeth van den Brink;  Robert Weigel;  ;  rgen Homeier;  C. Johan Dahlberg;  Sergiy Medinets;  Volodymyr Medinets;  Hans J. De Boeck;  Miguel Portillo‐;  Estrada;  Lore T. Verryckt;  Ann Milbau;  Gergana N. Daskalova;  Haydn J. D. Thomas;  Isla H. Myers‐;  Smith;  Benjamin Blonder;  ;  rg G. Stephan;  Patrice Descombes;  Florian Zellweger;  Esther R. Frei;  Bernard Heinesch;  Christopher Andrews;  Jan Dick;  Lukas Siebicke;  Adrian Rocha;  Rebecca A. Senior;  Christian Rixen;  Juan J. Jimenez;  Julia Boike;  Aní;  bal Pauchard;  Thomas Scholten;  Brett Scheffers;  David Klinges;  Edmund W. Basham;  Jian Zhang;  Zhaochen Zhang;  Charly Gé;  ron;  Fatih Fazlioglu;  Onur Candan;  Jhonatan Sallo Bravo;  Filip Hrbacek;  Kamil Laska;  Edoardo Cremonese;  Peter Haase;  Fernando E. Moyano;  Christian Rossi;  Ivan Nijs
收藏  |  浏览/下载:51/0  |  提交时间:2020/06/29
GISS Model E2.2: A Climate Model Optimized for the Middle Atmosphere-Model Structure, Climatology, Variability, and Climate Sensitivity 期刊论文
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2020, 125 (10)
作者:  Rind, D.;  Orbe, C.;  Jonas, J.;  Nazarenko, L.;  Zhou, T.;  Kelley, M.;  Lacis, A.;  Shindell, D.;  Faluvegi, G.;  Romanou, A.;  Russell, G.;  Tausnev, N.;  Bauer, M.;  Schmidt, G.
收藏  |  浏览/下载:15/0  |  提交时间:2020/07/02
climate model  middle atmosphere  model development  
Live-animal imaging of native haematopoietic stem and progenitor cells 期刊论文
NATURE, 2020, 578 (7794) : 278-+
作者:  Gerstung, Moritz;  Jolly, Clemency;  Leshchiner, Ignaty;  Dentro, Stefan C.;  Gonzalez, Santiago;  Rosebrock, Daniel;  Mitchell, Thomas J.;  Rubanova, Yulia;  Anur, Pavana;  Yu, Kaixian;  Tarabichi, Maxime;  Deshwar, Amit;  Wintersinger, Jeff;  Kleinheinz, Kortine;  Vazquez-Garcia, Ignacio;  Haase, Kerstin;  Jerman, Lara;  Sengupta, Subhajit;  Macintyre, Geoff;  Malikic, Salem;  Donmez, Nilgun;  Livitz, Dimitri G.;  Cmero, Marek;  Demeulemeester, Jonas;  Schumacher, Steven;  Fan, Yu;  Yao, Xiaotong;  Lee, Juhee;  Schlesner, Matthias;  Boutros, Paul C.;  Bowtell, David D.;  Zhu, Hongtu;  Getz, Gad;  Imielinski, Marcin;  Beroukhim, Rameen;  Sahinalp, S. Cenk;  Ji, Yuan;  Peifer, Martin;  Markowetz, Florian;  Mustonen, Ville;  Yuan, Ke;  Wang, Wenyi;  Morris, Quaid D.;  Spellman, Paul T.;  Wedge, David C.;  Van Loo, Peter;  Deshwar, Amit G.;  Adams, David J.;  Campbell, Peter J.;  Cao, Shaolong;  Christie, Elizabeth L.;  Cun, Yupeng;  Dawson, Kevin J.;  Drews, Ruben M.;  Eils, Roland;  Fittall, Matthew;  Garsed, Dale W.;  Ha, Gavin;  Lee-Six, Henry;  Martincorena, Inigo;  Oesper, Layla;  Peto, Myron;  Raphael, Benjamin J.;  Salcedo, Adriana;  Shi, Ruian;  Shin, Seung Jun;  Spiro, Oliver;  Stein, Lincoln D.;  Vembu, Shankar;  Wheeler, David A.;  Yang, Tsun-Po
收藏  |  浏览/下载:15/0  |  提交时间:2020/07/03

The biology of haematopoietic stem cells (HSCs) has predominantly been studied under transplantation conditions(1,2). It has been particularly challenging to study dynamic HSC behaviour, given that the visualization of HSCs in the native niche in live animals has not, to our knowledge, been achieved. Here we describe a dual genetic strategy in mice that restricts reporter labelling to a subset of the most quiescent long-term HSCs (LT-HSCs) and that is compatible with current intravital imaging approaches in the calvarial bone marrow(3-5). We show that this subset of LT-HSCs resides close to both sinusoidal blood vessels and the endosteal surface. By contrast, multipotent progenitor cells (MPPs) show greater variation in distance from the endosteum and are more likely to be associated with transition zone vessels. LT-HSCs are not found in bone marrow niches with the deepest hypoxia and instead are found in hypoxic environments similar to those of MPPs. In vivo time-lapse imaging revealed that LT-HSCs at steady-state show limited motility. Activated LT-HSCs show heterogeneous responses, with some cells becoming highly motile and a fraction of HSCs expanding clonally within spatially restricted domains. These domains have defined characteristics, as HSC expansion is found almost exclusively in a subset of bone marrow cavities with bone-remodelling activity. By contrast, cavities with low bone-resorbing activity do not harbour expanding HSCs. These findings point to previously unknown heterogeneity within the bone marrow microenvironment, imposed by the stages of bone turnover. Our approach enables the direct visualization of HSC behaviours and dissection of heterogeneity in HSC niches.


A dual genetic strategy enables the labelling and in vivo imaging of native long-term haematopoietic stem cells in the mouse calvarial bone marrow.


  
Importance of Indigenous Peoples' lands for the conservation of Intact Forest Landscapes 期刊论文
FRONTIERS IN ECOLOGY AND THE ENVIRONMENT, 2020, 18 (3) : 135-140
作者:  Fa, John E.;  Watson, James E. M.;  Leiper, Ian;  Potapov, Peter;  Evans, Tom D.;  Burgess, Neil D.;  Molnar, Zsolt;  Fernandez-Llamazares, Alvaro;  Duncan, Tom;  Wang, Stephanie;  Austin, Beau J.;  Jonas, Harry;  Robinson, Cathy J.;  Malmer, Pernilla;  Zander, Kerstin K.;  Jackson, Micha, V;  Ellis, Erle;  Brondizio, Eduardo S.;  Garnett, Stephen T.
收藏  |  浏览/下载:12/0  |  提交时间:2020/07/02