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Microbial traits determine soil C emission in response to fresh carbon inputs in forests across biomes 期刊论文
Global Change Biology, 2021
作者:  Chengjie Ren;  Jieying Wang;  Felipe Bastida;  Manuel Delgado-Baquerizo;  Yuanhe Yang;  Jun Wang;  Zekun Zhong;  Zhenghu Zhou;  Shuohong Zhang;  Yaoxin Guo;  Sha Zhou;  Gehong Wei;  Xinhui Han;  Gaihe Yang;  Fazhu Zhao
收藏  |  浏览/下载:14/0  |  提交时间:2021/12/15
Mobilization of soil phosphate after 8 years of warming is linked to plant phosphorus-acquisition strategies in an alpine meadow on the Qinghai-Tibetan Plateau 期刊论文
Global Change Biology, 2021
作者:  Jun Zhou;  Xiao-Long Li;  Fei Peng;  Chengyang Li;  Chimin Lai;  Quangang You;  Xian Xue;  Yanhong Wu;  Hongyang Sun;  Yang Chen;  Hongtao Zhong;  Hans Lambers
收藏  |  浏览/下载:13/0  |  提交时间:2021/10/22
Hierarchical crack buffering triples ductility in eutectic herringbone high-entropy alloys 期刊论文
Science, 2021
作者:  Peijian Shi;  Runguang Li;  Yi Li;  Yuebo Wen;  Yunbo Zhong;  Weili Ren;  Zhe Shen;  Tianxiang Zheng;  Jianchao Peng;  Xue Liang;  Pengfei Hu;  Na Min;  Yong Zhang;  Yang Ren;  Peter K. Liaw;  Dierk Raabe;  Yan-Dong Wang
收藏  |  浏览/下载:25/0  |  提交时间:2021/08/25
lncRNA SLERT controls phase separation of FC/DFCs to facilitate Pol I transcription 期刊论文
Science, 2021
作者:  Man Wu;  Guang Xu;  Chong Han;  Peng-Fei Luan;  Yu-Hang Xing;  Fang Nan;  Liang-Zhong Yang;  Youkui Huang;  Zheng-Hu Yang;  Lin Shan;  Li Yang;  Jiaquan Liu;  Ling-Ling Chen
收藏  |  浏览/下载:17/0  |  提交时间:2021/08/10
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:31/0  |  提交时间:2020/12/22
SOSTDC1-producing follicular helper T cells promote regulatory follicular T cell differentiation 期刊论文
Science, 2020
作者:  Xin Wu;  Yun Wang;  Rui Huang;  Qujing Gai;  Haofei Liu;  Meimei Shi;  Xiang Zhang;  Yonglin Zuo;  Longjuan Chen;  Qiwen Zhao;  Yu Shi;  Fengchao Wang;  Xiaowei Yan;  Huiping Lu;  Senlin Xu;  Xiaohong Yao;  Lin Chen;  Xia Zhang;  Qiang Tian;  Ziyan Yang;  Bo Zhong;  Chen Dong;  Yan Wang;  Xiu-Wu Bian;  Xindong Liu
收藏  |  浏览/下载:19/0  |  提交时间:2020/08/25
Susceptibility of ferrets, cats, dogs, and other domesticated animals to SARS–coronavirus 2 期刊论文
Science, 2020
作者:  Jianzhong Shi;  Zhiyuan Wen;  Gongxun Zhong;  Huanliang Yang;  Chong Wang;  Baoying Huang;  Renqiang Liu;  Xijun He;  Lei Shuai;  Ziruo Sun;  Yubo Zhao;  Peipei Liu;  Libin Liang;  Pengfei Cui;  Jinliang Wang;  Xianfeng Zhang;  Yuntao Guan;  Wenjie Tan;  Guizhen Wu;  Hualan Chen;  Zhigao Bu
收藏  |  浏览/下载:10/0  |  提交时间:2020/06/01
Neuronal programming by microbiota regulates intestinal physiology 期刊论文
NATURE, 2020, 578 (7794) : 284-+
作者:  Li, Yilong;  Roberts, Nicola D.;  Wala, Jeremiah A.;  Shapira, Ofer;  Schumacher, Steven E.;  Kumar, Kiran;  Khurana, Ekta;  Waszak, Sebastian;  Korbel, Jan O.;  Haber, James E.;  Imielinski, Marcin;  Weischenfeldt, Joachim;  Beroukhim, Rameen;  Campbell, Peter J.;  Akdemir, Kadir C.;  Alvarez, Eva G.;  Baez-Ortega, Adrian;  Boutros, Paul C.;  Bowtell, David D. L.;  Brors, Benedikt;  Burns, Kathleen H.;  Chan, Kin;  Chen, Ken;  Cortes-Ciriano, Isidro;  Dueso-Barroso, Ana;  Dunford, Andrew J.;  Edwards, Paul A.;  Estivill, Xavier;  Etemadmoghadam, Dariush;  Feuerbach, Lars;  Fink, J. Lynn;  Frenkel-Morgenstern, Milana;  Garsed, Dale W.;  Gerstein, Mark;  Gordenin, Dmitry A.;  Haan, David;  Hess, Julian M.;  Hutter, Barbara;  Jones, David T. W.;  Ju, Young Seok;  Kazanov, Marat D.;  Klimczak, Leszek J.;  Koh, Youngil;  Lee, Eunjung Alice;  Lee, Jake June-Koo;  Lynch, Andy G.;  Macintyre, Geoff;  Markowetz, Florian;  Martincorena, Inigo;  Martinez-Fundichely, Alexander;  Meyerson, Matthew;  Miyano, Satoru;  Nakagawa, Hidewaki;  Navarro, Fabio C. P.;  Ossowski, Stephan;  Park, Peter J.;  Pearson, John, V;  Puiggros, Montserrat;  Rippe, Karsten;  Roberts, Steven A.;  Rodriguez-Martin, Bernardo;  Scully, Ralph;  Shackleton, Mark;  Sidiropoulos, Nikos;  Sieverling, Lina;  Stewart, Chip;  Torrents, David;  Tubio, Jose M. C.;  Villasante, Izar;  Waddell, Nicola;  Yang, Lixing;  Yao, Xiaotong;  Yoon, Sung-Soo;  Zamora, Jorge;  Zhang, Cheng-Zhong
收藏  |  浏览/下载:39/0  |  提交时间:2020/07/03

Neural control of the function of visceral organs is essential for homeostasis and health. Intestinal peristalsis is critical for digestive physiology and host defence, and is often dysregulated in gastrointestinal disorders(1). Luminal factors, such as diet and microbiota, regulate neurogenic programs of gut motility(2-5), but the underlying molecular mechanisms remain unclear. Here we show that the transcription factor aryl hydrocarbon receptor (AHR) functions as a biosensor in intestinal neural circuits, linking their functional output to the microbial environment of the gut lumen. Using nuclear RNA sequencing of mouse enteric neurons that represent distinct intestinal segments and microbiota states, we demonstrate that the intrinsic neural networks of the colon exhibit unique transcriptional profiles that are controlled by the combined effects of host genetic programs and microbial colonization. Microbiota-induced expression of AHR in neurons of the distal gastrointestinal tract enables these neurons to respond to the luminal environment and to induce expression of neuron-specific effector mechanisms. Neuron-specific deletion of Ahr, or constitutive overexpression of its negative feedback regulator CYP1A1, results in reduced peristaltic activity of the colon, similar to that observed in microbiota-depleted mice. Finally, expression of Ahr in the enteric neurons of mice treated with antibiotics partially restores intestinal motility. Together, our experiments identify AHR signalling in enteric neurons as a regulatory node that integrates the luminal environment with the physiological output of intestinal neural circuits to maintain gut homeostasis and health.


In a mouse model, aryl hydrocarbon receptor signalling in enteric neurons is revealed as a mechanism that helps to maintain gut homeostasis by integrating the luminal environment with the physiology of intestinal neural circuits.


  
Alcohol-derived DNA crosslinks are repaired by two distinct mechanisms 期刊论文
NATURE, 2020, 579 (7800) : 603-+
作者:  Xu, Wanghuai;  Zheng, Huanxi;  Liu, Yuan;  Zhou, Xiaofeng;  Zhang, Chao;  Song, Yuxin;  Deng, Xu;  Leung, Michael;  Yang, Zhengbao;  Xu, Ronald X.;  Wang, Zhong Lin;  Zeng, Xiao Cheng;  Wang, Zuankai
收藏  |  浏览/下载:21/0  |  提交时间:2020/07/03

Acetaldehyde is a highly reactive, DNA-damaging metabolite that is produced upon alcohol consumption(1). Impaired detoxification of acetaldehyde is common in the Asian population, and is associated with alcohol-related cancers(1,2). Cells are protected against acetaldehyde-induced damage by DNA crosslink repair, which when impaired causes Fanconi anaemia (FA), a disease resulting in failure to produce blood cells and a predisposition to cancer(3,4). The combined inactivation of acetaldehyde detoxification and the FA pathway induces mutation, accelerates malignancies and causes the rapid attrition of blood stem cells(5-7). However, the nature of the DNA damage induced by acetaldehyde and how this is repaired remains a key question. Here we generate acetaldehyde-induced DNA interstrand crosslinks and determine their repair mechanism in Xenopus egg extracts. We find that two replication-coupled pathways repair these lesions. The first is the FA pathway, which operates using excision-analogous to the mechanism used to repair the interstrand crosslinks caused by the chemotherapeutic agent cisplatin. However, the repair of acetaldehyde-induced crosslinks results in increased mutation frequency and an altered mutational spectrum compared with the repair of cisplatin-induced crosslinks. The second repair mechanism requires replication fork convergence, but does not involve DNA incisions-instead the acetaldehyde crosslink itself is broken. The Y-family DNA polymerase REV1 completes repair of the crosslink, culminating in a distinct mutational spectrum. These results define the repair pathways of DNA interstrand crosslinks caused by an endogenous and alcohol-derived metabolite, and identify an excision-independent mechanism.


DNA interstrand crosslinks induced by acetaldehyde are repaired by both the Fanconi anaemia pathway and by a second, excision-independent repair mechanism.


  
Biological adaptations in the Arctic cervid, the reindeer (Rangifer tarandus) 期刊论文
SCIENCE, 2019, 364 (6446) : 1154-+
作者:  Lin, Zeshan;  Chen, Lei;  Chen, Xianqing;  Zhong, Yingbin;  Yang, Yue;  Xia, Wenhao;  Liu, Chang;  Zhu, Wenbo;  Wang, Han;  Yan, Biyao;  Yang, Yifeng;  Liu, Xing;  Kvie, Kjersti Sternang;  Roed, Knut Hakon;  Wang, Kun;  Xiao, Wuhan;  Wei, Haijun;  Li, Guangyu;  Heller, Rasmus;  Gilbert, M. Thomas P.;  Qiu, Qiang;  Wang, Wen;  Li, Zhipeng
收藏  |  浏览/下载:11/0  |  提交时间:2019/11/27