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Raindrop size distribution and microphysical characteristics of a great rainstorm in 2016 in Beijing, China 期刊论文
ATMOSPHERIC RESEARCH, 2020, 239
作者:  Luo, Li;  Xiao, Hui;  Yang, Huiling;  Chen, Haonan;  Guo, Jia;  Sun, Yue;  Feng, Liang
收藏  |  浏览/下载:12/0  |  提交时间:2020/08/18
Great rainstorm  Northern China  Raindrop size distribution  Precipitation microphysics  Z-R relation  
Marine organic matter in the remote environment of the Cape Verde islands - an introduction and overview to the MarParCloud campaign 期刊论文
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2020, 20 (11) : 6921-6951
作者:  van Pinxteren, Manuela;  Fomba, Khanneh Wadinga;  Triesch, Nadja;  Stolle, Christian;  Wurl, Oliver;  Bahlmann, Enno;  Gong, Xianda;  Voigtlaender, Jens;  Wex, Heike;  Robinson, Tiera-Brandy;  Barthel, Stefan;  Zeppenfeld, Sebastian;  Hoffmann, Erik Hans;  Roveretto, Marie;  Li, Chunlin;  Grosselin, Benoit;  Daele, Veronique;  Senf, Fabian;  van Pinxteren, Dominik;  Manzi, Malena;  Zabalegui, Nicolas;  Frka, Sanja;  Gasparovic, Blazenka;  Pereira, Ryan;  Li, Tao;  Wen, Liang;  Li, Jiarong;  Zhu, Chao;  Chen, Hui;  Chen, Jianmin;  Fiedler, Bjoern;  Von Tuempling, Wolf;  Read, Katie Alana;  Punjabi, Shalini;  Lewis, Alastair Charles;  Hopkins, James Roland;  Carpenter, Lucy Jane;  Peeken, Ilka;  Rixen, Tim;  Schulz-Bull, Detlef;  Monge, Maria Eugenia;  Mellouki, Abdelwahid;  George, Christian;  Stratmann, Frank;  Herrmann, Hartmut
收藏  |  浏览/下载:23/0  |  提交时间:2020/08/18
Association between ambient temperature and hypertensive disorders in pregnancy in China 期刊论文
NATURE COMMUNICATIONS, 2020, 11 (1)
作者:  Xiong, Tao;  Chen, Peiran;  Mu, Yi;  Li, Xiaohong;  Di, Baofeng;  Li, Jierui;  Qu, Yi;  Tang, Jun;  Liang, Juan;  Mu, Dezhi
收藏  |  浏览/下载:8/0  |  提交时间:2020/06/16
An encrusting kleptoparasite-host interaction from the early Cambrian 期刊论文
NATURE COMMUNICATIONS, 2020, 11 (1)
作者:  Zhang, Zhifei;  Strotz, Luke C.;  Topper, Timothy P.;  Chen, Feiyang;  Chen, Yanlong;  Liang, Yue;  Zhang, Zhiliang;  Skovsted, Christian B.;  Brock, Glenn A.
收藏  |  浏览/下载:9/0  |  提交时间:2020/06/09
Controls on surface water carbonate chemistry along North American ocean margins 期刊论文
NATURE COMMUNICATIONS, 2020, 11 (1)
作者:  Cai, Wei-Jun;  Xu, Yuan-Yuan;  Feely, Richard A.;  Wanninkhof, Rik;  Jonsson, Bror;  Alin, Simone R.;  Barbero, Leticia;  Cross, Jessica N.;  Azetsu-Scott, Kumiko;  Fassbender, Andrea J.;  Carter, Brendan R.;  Jiang, Li-Qing;  Pepin, Pierre;  Chen, Baoshan;  Hussain, Najid;  Reimer, Janet J.;  Xue, Liang;  Salisbury, Joseph E.;  Martin Hernandez-Ayon, Jose;  Langdon, Chris;  Li, Qian;  Sutton, Adrienne J.;  Chen, Chen-Tung A.;  Gledhill, Dwight K.
收藏  |  浏览/下载:14/0  |  提交时间:2020/06/09
Late-spring frost risk between 1959 and 2017 decreased in North America but increased in Europe and Asia 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2020, 117 (22) : 12192-12200
作者:  Zohner, Constantin M.;  Mo, Lidong;  Renner, Susanne S.;  Svenning, Jens-Christian;  Vitasse, Yann;  Benito, Blas M.;  Ordonez, Alejandro;  Baumgarten, Frederik;  Bastin, Jean-Francois;  Sebald, Veronica;  Reich, Peter B.;  Liang, Jingjing;  Nabuurs, Gert-Jan;  de-Miguel, Sergio;  Alberti, Giorgio;  Anton-Fernandez, Clara;  Balazy, Radomir;  Braendli, Urs-Beat;  Chen, Han Y. H.;  Chisholm, Chelsea;  Cienciala, Emil;  Dayanandan, Selvadurai;  Fayle, Tom M.;  Frizzera, Lorenzo;  Gianelle, Damiano;  Jagodzinski, Andrzej M.;  Jaroszewicz, Bogdan;  Jucker, Tommaso;  Kepfer-Rojas, Sebastian;  Khan, Mohammed Latif;  Kim, Hyun Seok;  Korjus, Henn;  Johannsen, Vivian Kvist;  Laarmann, Diana;  Lang, Mait;  Zawila-Niedzwiecki, Tomasz;  Niklaus, Pascal A.;  Paquette, Alain;  Pretzsch, Hans;  Saikia, Purabi;  Schall, Peter;  Seben, Vladimir;  Svoboda, Miroslav;  Tikhonova, Elena;  Viana, Helder;  Zhang, Chunyu;  Zhao, Xiuhai;  Crowther, Thomas W.
收藏  |  浏览/下载:19/0  |  提交时间:2020/05/13
climate change  phenology  spring leaf-out  late frost  freezing damage  
Impaired cell fate through gain-of-function mutations in a chromatin reader 期刊论文
NATURE, 2020, 577 (7788) : 121-+
作者:  Wan, Liling;  Chong, Shasha;  Xuan, Fan;  Liang, Angela;  Cui, Xiaodong;  Gates, Leah;  Carroll, Thomas S.;  Li, Yuanyuan;  Feng, Lijuan;  Chen, Guochao;  Wang, Shu-Ping;  Ortiz, Michael V.;  Daley, Sara K.;  Wang, Xiaolu;  Xuan, Hongwen;  Kentsis, Alex;  Muir, Tom W.;  Roeder, Robert G.;  Li, Haitao;  Li, Wei;  Tjian, Robert;  Wen, Hong;  Allis, C. David
收藏  |  浏览/下载:10/0  |  提交时间:2020/07/03

Modifications of histone proteins have essential roles in normal development and human disease. Recognition of modified histones by '  reader'  proteins is a key mechanism that mediates the function of histone modifications, but how the dysregulation of these readers might contribute to disease remains poorly understood. We previously identified the ENL protein as a reader of histone acetylation via its YEATS domain, linking it to the expression of cancer-driving genes in acute leukaemia1. Recurrent hotspot mutations have been found in the ENL YEATS domain in Wilms tumour2,3, the most common type of paediatric kidney cancer. Here we show, using human and mouse cells, that these mutations impair cell-fate regulation by conferring gain-of-function in chromatin recruitment and transcriptional control. ENL mutants induce gene-expression changes that favour a premalignant cell fate, and, in an assay for nephrogenesis using murine cells, result in undifferentiated structures resembling those observed in human Wilms tumour. Mechanistically, although bound to largely similar genomic loci as the wild-type protein, ENL mutants exhibit increased occupancy at a subset of targets, leading to a marked increase in the recruitment and activity of transcription elongation machinery that enforces active transcription from target loci. Furthermore, ectopically expressed ENL mutants exhibit greater self-association and form discrete and dynamic nuclear puncta that are characteristic of biomolecular hubs consisting of local high concentrations of regulatory factors. Such mutation-driven ENL self-association is functionally linked to enhanced chromatin occupancy and gene activation. Collectively, our findings show that hotspot mutations in a chromatinreader domain drive self-reinforced recruitment, derailing normal cell-fate control during development and leading to an oncogenic outcome.


  
Injured adult neurons regress to an embryonic transcriptional growth state 期刊论文
NATURE, 2020, 581 (7806) : 77-+
作者:  Wang, Ruicong;  Li, Hongda;  Wu, Jianfeng;  Cai, Zhi-Yu;  Li, Baizhou;  Ni, Hengxiao;  Qiu, Xingfeng;  Chen, Hui;  Liu, Wei;  Yang, Zhang-Hua;  Liu, Min;  Hu, Jin;  Liang, Yaoji;  Lan, Ping;  Han, Jiahuai;  Mo, Wei
收藏  |  浏览/下载:23/0  |  提交时间:2020/07/03

Grafts of spinal-cord-derived neural progenitor cells (NPCs) enable the robust regeneration of corticospinal axons and restore forelimb function after spinal cord injury(1)  however, the molecular mechanisms that underlie this regeneration are unknown. Here we perform translational profiling specifically of corticospinal tract (CST) motor neurons in mice, to identify their '  regenerative transcriptome'  after spinal cord injury and NPC grafting. Notably, both injury alone and injury combined with NPC grafts elicit virtually identical early transcriptomic responses in host CST neurons. However, in mice with injury alone this regenerative transcriptome is downregulated after two weeks, whereas in NPC-grafted mice this transcriptome is sustained. The regenerative transcriptome represents a reversion to an embryonic transcriptional state of the CST neuron. The huntingtin gene (Htt) is a central hub in the regeneration transcriptome  deletion of Htt significantly attenuates regeneration, which shows that Htt has a key role in neural plasticity after injury.


In mouse models of central nervous system injury, Htt is shown to be a key component of the regulatory program associated with reversion of the neuronal transcriptome to a less-mature state.


  
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
The gut-brain axis mediates sugar preference 期刊论文
NATURE, 2020, 580 (7804) : 511-+
作者:  Wang, Ruicong;  Li, Hongda;  Wu, Jianfeng;  Cai, Zhi-Yu;  Li, Baizhou;  Ni, Hengxiao;  Qiu, Xingfeng;  Chen, Hui;  Liu, Wei;  Yang, Zhang-Hua;  Liu, Min;  Hu, Jin;  Liang, Yaoji;  Lan, Ping;  Han, Jiahuai;  Mo, Wei
收藏  |  浏览/下载:17/0  |  提交时间:2020/07/03

The taste of sugar is one of the most basic sensory percepts for humans and other animals. Animals can develop a strong preference for sugar even if they lack sweet taste receptors, indicating a mechanism independent of taste(1-3). Here we examined the neural basis for sugar preference and demonstrate that a population of neurons in the vagal ganglia and brainstem are activated via the gut-brain axis to create preference for sugar. These neurons are stimulated in response to sugar but not artificial sweeteners, and are activated by direct delivery of sugar to the gut. Using functional imaging we monitored activity of the gut-brain axis, and identified the vagal neurons activated by intestinal delivery of glucose. Next, we engineered mice in which synaptic activity in this gut-to-brain circuit was genetically silenced, and prevented the development of behavioural preference for sugar. Moreover, we show that co-opting this circuit by chemogenetic activation can create preferences to otherwise less-preferred stimuli. Together, these findings reveal a gut-to-brain post-ingestive sugar-sensing pathway critical for the development of sugar preference. In addition, they explain the neural basis for differences in the behavioural effects of sweeteners versus sugar, and uncover an essential circuit underlying the highly appetitive effects of sugar.


Experiments in mice show that a population of neurons in the vagal ganglia respond to the presence of glucose in the gut and connect to neurons in the brainstem, revealing the circuit that underlies the neural basis for the behavioural preference for sugar.