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Magnitude and uncertainty of nitrous oxide emissions from North America based on bottom-up and top-down approaches: Informing future research and national inventories 期刊论文
Geophysical Research Letters, 2021
作者:  R. Xu;  H. Tian;  N. Pan;  R. L. Thompson;  J. G. Canadell;  E. A. Davidson;  C. Nevison;  W. Winiwarter;  H. Shi;  S. Pan;  J. Chang;  P. Ciais;  S. R. S. Dangal;  A. Ito;  R. B. Jackson;  F. Joos;  R. Lauerwald;  S. Lienert;  T. Maavara;  D. B. Millet;  P. A. Raymond;  P. Regnier;  F. N. Tubiello;  N. Vuichard;  K. C. Wells;  C. Wilson;  J. Yang;  Y. Yao;  S. Zaehle;  F. Zhou
收藏  |  浏览/下载:14/0  |  提交时间:2021/11/23
Terrestrial biodiversity threatened by increasing global aridity velocity under high-level warming 期刊论文
Proceedings of the National Academy of Sciences, 2021
作者:  Hao Shi;  Hanqin Tian;  Stefan Lange;  Jia Yang;  Shufen Pan;  Bojie Fu;  Christopher P. O. Reyer
收藏  |  浏览/下载:12/0  |  提交时间:2021/09/14
Rare variant MX1 alleles increase human susceptibility to zoonotic H7N9 influenza virus 期刊论文
Science, 2021
作者:  Yongkun Chen;  Laura Graf;  Tao Chen;  Qijun Liao;  Tian Bai;  Philipp P. Petric;  Wenfei Zhu;  Lei Yang;  Jie Dong;  Jian Lu;  Ying Chen;  Juan Shen;  Otto Haller;  Peter Staeheli;  Georg Kochs;  Dayan Wang;  Martin Schwemmle;  Yuelong Shu
收藏  |  浏览/下载:16/0  |  提交时间:2021/08/25
Peta–electron volt gamma-ray emission from the Crab Nebula 期刊论文
Science, 2021
作者:  The LHAASO Collaboration*†;  Zhen Cao;  F. Aharonian;  Q. An;  Axikegu;  L. X. Bai;  Y. X. Bai;  Y. W. Bao;  D. Bastieri;  X. J. Bi;  Y. J. Bi;  H. Cai;  J. T. Cai;  Zhe Cao;  J. Chang;  J. F. Chang;  B. M. Chen;  E. S. Chen;  J. Chen;  Liang Chen;  Liang Chen;  Long Chen;  M. J. Chen;  M. L. Chen;  Q. H. Chen;  S. H. Chen;  S. Z. Chen;  T. L. Chen;  X. L. Chen;  Y. Chen;  N. Cheng;  Y. D. Cheng;  S. W. Cui;  X. H. Cui;  Y. D. Cui;  B. D’Ettorre Piazzoli;  B. Z. Dai;  H. L. Dai;  Z. G. Dai;  Danzengluobu;  D. della Volpe;  X. J. Dong;  K. K. Duan;  J. H. Fan;  Y. Z. Fan;  Z. X. Fan;  J. Fang;  K. Fang;  C. F. Feng;  L. Feng;  S. H. Feng;  Y. L. Feng;  B. Gao;  C. D. Gao;  L. Q. Gao;  Q. Gao;  W. Gao;  M. M. Ge;  L. S. Geng;  G. H. Gong;  Q. B. Gou;  M. H. Gu;  F. L. Guo;  J. G. Guo;  X. L. Guo;  Y. Q. Guo;  Y. Y. Guo;  Y. A. Han;  H. H. He;  H. N. He;  J. C. He;  S. L. He;  X. B. He;  Y. He;  M. Heller;  Y. K. Hor;  C. Hou;  X. Hou;  H. B. Hu;  S. Hu;  S. C. Hu;  X. J. Hu;  D. H. Huang;  Q. L. Huang;  W. H. Huang;  X. T. Huang;  X. Y. Huang;  Z. C. Huang;  F. Ji;  X. L. Ji;  H. Y. Jia;  K. Jiang;  Z. J. Jiang;  C. Jin;  T. Ke;  D. Kuleshov;  K. Levochkin;  B. B. Li;  Cheng Li;  Cong Li;  F. Li;  H. B. Li;  H. C. Li;  H. Y. Li;  Jian Li;  Jie Li;  K. Li;  W. L. Li;  X. R. Li;  Xin Li;  Xin Li;  Y. Li;  Y. Z. Li;  Zhe Li;  Zhuo Li;  E. W. Liang;  Y. F. Liang;  S. J. Lin;  B. Liu;  C. Liu;  D. Liu;  H. Liu;  H. D. Liu;  J. Liu;  J. L. Liu;  J. S. Liu;  J. Y. Liu;  M. Y. Liu;  R. Y. Liu;  S. M. Liu;  W. Liu;  Y. Liu;  Y. N. Liu;  Z. X. Liu;  W. J. Long;  R. Lu;  H. K. Lv;  B. Q. Ma;  L. L. Ma;  X. H. Ma;  J. R. Mao;  A. Masood;  Z. Min;  W. Mitthumsiri;  T. Montaruli;  Y. C. Nan;  B. Y. Pang;  P. Pattarakijwanich;  Z. Y. Pei;  M. Y. Qi;  Y. Q. Qi;  B. Q. Qiao;  J. J. Qin;  D. Ruffolo;  V. Rulev;  A. Saiz;  L. Shao;  O. Shchegolev;  X. D. Sheng;  J. Y. Shi;  H. C. Song;  Yu. V. Stenkin;  V. Stepanov;  Y. Su;  Q. N. Sun;  X. N. Sun;  Z. B. Sun;  P. H. T. Tam;  Z. B. Tang;  W. W. Tian;  B. D. Wang;  C. Wang;  H. Wang;  H. G. Wang;  J. C. Wang;  J. S. Wang;  L. P. Wang;  L. Y. Wang;  R. N. Wang;  Wei Wang;  Wei Wang;  X. G. Wang;  X. J. Wang;  X. Y. Wang;  Y. Wang;  Y. D. Wang;  Y. J. Wang;  Y. P. Wang;  Z. H. Wang;  Z. X. Wang;  Zhen Wang;  Zheng Wang;  D. M. Wei;  J. J. Wei;  Y. J. Wei;  T. Wen;  C. Y. Wu;  H. R. Wu;  S. Wu;  W. X. Wu;  X. F. Wu;  S. Q. Xi;  J. Xia;  J. J. Xia;  G. M. Xiang;  D. X. Xiao;  G. Xiao;  H. B. Xiao;  G. G. Xin;  Y. L. Xin;  Y. Xing;  D. L. Xu;  R. X. Xu;  L. Xue;  D. H. Yan;  J. Z. Yan;  C. W. Yang;  F. F. Yang;  J. Y. Yang;  L. L. Yang;  M. J. Yang;  R. Z. Yang;  S. B. Yang;  Y. H. Yao;  Z. G. Yao;  Y. M. Ye;  L. Q. Yin;  N. Yin;  X. H. You;  Z. Y. You;  Y. H. Yu;  Q. Yuan;  H. D. Zeng;  T. X. Zeng;  W. Zeng;  Z. K. Zeng;  M. Zha;  X. X. Zhai;  B. B. Zhang;  H. M. Zhang;  H. Y. Zhang;  J. L. Zhang;  J. W. Zhang;  L. X. Zhang;  Li Zhang;  Lu Zhang;  P. F. Zhang;  P. P. Zhang;  R. Zhang;  S. R. Zhang;  S. S. Zhang;  X. Zhang;  X. P. Zhang;  Y. F. Zhang;  Y. L. Zhang;  Yi Zhang;  Yong Zhang;  B. Zhao;  J. Zhao;  L. Zhao;  L. Z. Zhao;  S. P. Zhao;  F. Zheng;  Y. Zheng;  B. Zhou;  H. Zhou;  J. N. Zhou;  P. Zhou;  R. Zhou;  X. X. Zhou;  C. G. Zhu;  F. R. Zhu;  H. Zhu;  K. J. Zhu;  X. Zuo
收藏  |  浏览/下载:14/0  |  提交时间:2021/07/27
Microbial metabolic response to winter warming stabilizes soil carbon 期刊论文
Global Change Biology, 2021
作者:  Jing Tian;  Ning Zong;  Iain P. Hartley;  Nianpeng He;  Jinjing Zhang;  David Powlson;  Jizhong Zhou;  Yakov Kuzyakov;  Fusuo Zhang;  Guirui Yu;  Jennifer A. J. Dungait
收藏  |  浏览/下载:5/0  |  提交时间:2021/02/17
A ubiquitous tire rubber–derived chemical induces acute mortality in coho salmon 期刊论文
Science, 2021
作者:  Zhenyu Tian;  Haoqi Zhao;  Katherine T. Peter;  Melissa Gonzalez;  Jill Wetzel;  Christopher Wu;  Ximin Hu;  Jasmine Prat;  Emma Mudrock;  Rachel Hettinger;  Allan E. Cortina;  Rajshree Ghosh Biswas;  Flávio Vinicius Crizóstomo Kock;  Ronald Soong;  Amy Jenne;  Bowen Du;  Fan Hou;  Huan He;  Rachel Lundeen;  Alicia Gilbreath;  Rebecca Sutton;  Nathaniel L. Scholz;  Jay W. Davis;  Michael C. Dodd;  Andre Simpson;  Jenifer K. McIntyre;  Edward P. Kolodziej
收藏  |  浏览/下载:11/0  |  提交时间:2021/01/15
Can N2O emissions offset the benefits from soil organic carbon storage? 期刊论文
Global Change Biology, 2020
作者:  Bertrand Guenet;  Benoit Gabrielle;  Claire Chenu;  Dominique Arrouays;  ;  ;  me Balesdent;  Martial Bernoux;  Elisa Bruni;  Jean‐;  Pierre Caliman;  ;  mi Cardinael;  Songchao Chen;  Philippe Ciais;  Dominique Desbois;  Julien Fouche;  Stefan Frank;  Catherine Henault;  Emanuele Lugato;  Victoria Naipal;  Thomas Nesme;  Michael Obersteiner;  Sylvain Pellerin;  David S. Powlson;  Daniel P. Rasse;  Fré;  ;  ric Rees;  Jean‐;  Franç;  ois Soussana;  Yang Su;  Hanqin Tian;  Hugo Valin;  Feng Zhou
收藏  |  浏览/下载:15/0  |  提交时间:2020/10/12
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
Pronounced and unavoidable impacts of low-end global warming on northern high-latitude land ecosystems 期刊论文
ENVIRONMENTAL RESEARCH LETTERS, 2020, 15 (4)
作者:  Ito, Akihiko;  Reyer, Christopher P. O.;  Gaedeke, Anne;  Ciais, Philippe;  Chang, Jinfeng;  Chen, Min;  Francois, Louis;  Forrest, Matthew;  Hickler, Thomas;  Ostberg, Sebastian;  Shi, Hao;  Thiery, Wim;  Tian, Hanqin
收藏  |  浏览/下载:14/0  |  提交时间:2020/07/02
biome sector  ISIMIP2b  northern high latitudes  Paris agreement  climatic impacts  
Global conservation of species' niches 期刊论文
NATURE, 2020, 580 (7802) : 232-+
作者:  Guo, Xiaoyan;  Aviles, Giovanni;  Liu, Yi;  Tian, Ruilin;  Unger, Bret A.;  Lin, Yu-Hsiu T.;  Wiita, Arun P.;  Xu, Ke;  Correia, M. Almira;  Kampmann, Martin
收藏  |  浏览/下载:27/0  |  提交时间:2020/07/03

Environmental change is rapidly accelerating, and many species will need to adapt to survive(1). Ensuring that protected areas cover populations across a broad range of environmental conditions could safeguard the processes that lead to such adaptations(1-3). However, international conservation policies have largely neglected these considerations when setting targets for the expansion of protected areas(4). Here we show that-of 19,937 vertebrate species globally(5-8)-the representation of environmental conditions across their habitats in protected areas (hereafter, niche representation) is inadequate for 4,836 (93.1%) amphibian, 8,653 (89.5%) bird and 4,608 (90.9%) terrestrial mammal species. Expanding existing protected areas to cover these gaps would encompass 33.8% of the total land surface-exceeding the current target of 17% that has been adopted by governments. Priority locations for expanding the system of protected areas to improve niche representation occur in global biodiversity hotspots(9), including Colombia, Papua New Guinea, South Africa and southwest China, as well as across most of the major land masses of the Earth. Conversely, we also show that planning for the expansion of protected areas without explicitly considering environmental conditions would marginally reduce the land area required to 30.7%, but that this would lead to inadequate niche representation for 7,798 (39.1%) species. As the governments of the world prepare to renegotiate global conservation targets, policymakers have the opportunity to help to maintain the adaptive potential of species by considering niche representation within protected areas(1,2).


Protected areas would need to expand to 33.8% of the total land surface to adequately represent environmental conditions across the habitats of amphibians, birds and terrestrial mammals, far exceeding the current 17% target.