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A systematic global stocktake of evidence on human adaptation to climate change 科技报告
来源:Climate Analytics. 出版年: 2021
作者:  Lea Berrang-Ford;  A. R. Siders;  Alexandra Lesnikowski;  Alexandra Paige Fischer;  Max W. Callaghan;  Neal R. Haddaway;  Katharine J. Mach;  Malcolm Araos;  Mohammad Aminur Rahman Shah;  Mia Wannewitz;  Deepal Doshi;  Timo Leiter;  Custodio Matavel;  Justice Issah Musah-Surugu;  Gabrielle Wong-Parodi;  Philip Antwi-Agyei;  Idowu Ajibade;  Neha Chauhan;  William Kakenmaster;  Caitlin Grady;  Vasiliki I. Chalastani;  Kripa Jagannathan;  Eranga K. Galappaththi;  Asha Sitati;  Giulia Scarpa;  Edmond Totin;  Katy Davis;  Nikita Charles Hamilton;  Christine J. Kirchhoff;  Praveen Kumar;  Brian Pentz;  Nicholas P. Simpson;  Emily Theokritoff;  Delphine Deryng;  Diana Reckien;  Carol Zavaleta-Cortijo;  Nicola Ulibarri;  Alcade C. Segnon;  Vhalinavho Khavhagali;  Yuanyuan Shang;  Luckson Zvobgo;  Zinta Zommers;  Jiren Xu;  Portia Adade Williams;  Ivan Villaverde Canosa;  Nicole van Maanen;  Bianca van Bavel;  Maarten van Aalst;  Lynée L. Turek-Hankins;  Hasti Trivedi;  Christopher H. Trisos;  Adelle Thomas;  Shinny Thakur;  Sienna Templeman;  Lindsay C. Stringer;  Garry Sotnik;  Kathryn Dana Sjostrom;  Chandni Singh;  Mariella Z. Siña;  Roopam Shukla;  Jordi Sardans;  Eunice A. Salubi;  Lolita Shaila Safaee Chalkasra;  Raquel Ruiz-Díaz;  Carys Richards;  Pratik Pokharel;  Jan Petzold;  Josep Penuelas;  Julia Pelaez Avila;  Julia B. Pazmino Murillo;  Souha Ouni;  Jennifer Niemann;  Miriam Nielsen;  Mark New;  Patricia Nayna Schwerdtle;  Gabriela Nagle Alverio;  Cristina A. Mullin;  Joshua Mullenite;  Anuszka Mosurska;  Mike D. Morecroft;  Jan C. Minx;  Gina Maskell;  Abraham Marshall Nunbogu;  Alexandre K. Magnan;  Shuaib Lwasa;  Megan Lukas-Sithole;  Tabea Lissner;  Oliver Lilford;  Steven F. Koller;  Matthew Jurjonas;  Elphin Tom Joe;  Lam T. M. Huynh;  Avery Hill;  Rebecca R. Hernandez;  Greeshma Hegde;  Tom Hawxwell;  Sherilee Harper;  Alexandra Harden;  Marjolijn Haasnoot;  Elisabeth A. Gilmore;  Leah Gichuki;  Alyssa Gatt;  Matthias Garschagen;  James D. Ford;  Andrew Forbes;  Aidan D. Farrell;  Carolyn A. F. Enquist;  Susan Elliott;  Emily Duncan;  Erin Coughlan de Perez;  Shaugn Coggins;  Tara Chen;  Donovan Campbell;  Katherine E. Browne;  Kathryn J. Bowen;  Robbert Biesbroek;  Indra D. Bhatt;  Rachel Bezner Kerr;  Stephanie L. Barr;  Emily Baker;  Stephanie E. Austin;  Ingrid Arotoma-Rojas;  Christa Anderson;  Warda Ajaz;  Tanvi Agrawal;  Thelma Zulfawu Abu
收藏  |  浏览/下载:25/0  |  提交时间:2022/01/29
Systems biological assessment of immunity to mild versus severe COVID-19 infection in humans 期刊论文
Science, 2020
作者:  Prabhu S. Arunachalam;  Florian Wimmers;  Chris Ka Pun Mok;  Ranawaka A. P. M. Perera;  Madeleine Scott;  Thomas Hagan;  Natalia Sigal;  Yupeng Feng;  Laurel Bristow;  Owen Tak-Yin Tsang;  Dhananjay Wagh;  John Coller;  Kathryn L. Pellegrini;  Dmitri Kazmin;  Ghina Alaaeddine;  Wai Shing Leung;  Jacky Man Chun Chan;  Thomas Shiu Hong Chik;  Chris Yau Chung Choi;  Christopher Huerta;  Michele Paine McCullough;  Huibin Lv;  Evan Anderson;  Srilatha Edupuganti;  Amit A. Upadhyay;  Steve E. Bosinger;  Holden Terry Maecker;  Purvesh Khatri;  Nadine Rouphael;  Malik Peiris;  Bali Pulendran
收藏  |  浏览/下载:13/0  |  提交时间:2020/09/08
Pharmacologic fibroblast reprogramming into photoreceptors restores vision 期刊论文
NATURE, 2020, 581 (7806) : 83-+
作者:  Jiang, Mingkai;  Medlyn, Belinda E.;  Drake, John E.;  Duursma, Remko A.;  Anderson, Ian C.;  Barton, Craig V. M.;  Boer, Matthias M.;  Carrillo, Yolima;  Castaneda-Gomez, Laura;  Collins, Luke;  Crous, Kristine Y.;  De Kauwe, Martin G.;  dos Santos, Bruna M.;  Emmerson, Kathryn M.;  Facey, Sarah L.;  Gherlenda, Andrew N.;  Gimeno, Teresa E.;  Hasegawa, Shun;  Johnson, Scott N.;  Kannaste, Astrid;  Macdonald, Catriona A.;  Mahmud, Kashif;  Moore, Ben D.;  Nazaries, Loic;  Neilson, Elizabeth H. J.;  Nielsen, Uffe N.;  Niinemets, Ulo;  Noh, Nam Jin;  Ochoa-Hueso, Raul;  Pathare, Varsha S.;  Pendall, Elise;  Pihlblad, Johanna;  Pineiro, Juan;  Powell, Jeff R.;  Power, Sally A.;  Reich, Peter B.;  Renchon, Alexandre A.;  Riegler, Markus;  Rinnan, Riikka;  Rymer, Paul D.;  Salomon, Roberto L.;  Singh, Brajesh K.;  Smith, Benjamin;  Tjoelker, Mark G.;  Walker, Jennifer K. M.;  Wujeska-Klause, Agnieszka;  Yang, Jinyan;  Zaehle, Soenke;  Ellsworth, David S.
收藏  |  浏览/下载:47/0  |  提交时间:2020/07/03

Photoreceptor loss is the final common endpoint in most retinopathies that lead to irreversible blindness, and there are no effective treatments to restore vision(1,2). Chemical reprogramming of fibroblasts offers an opportunity to reverse vision loss  however, the generation of sensory neuronal subtypes such as photoreceptors remains a challenge. Here we report that the administration of a set of five small molecules can chemically induce the transformation of fibroblasts into rod photoreceptor-like cells. The transplantation of these chemically induced photoreceptor-like cells (CiPCs) into the subretinal space of rod degeneration mice (homozygous for rd1, also known as Pde6b) leads to partial restoration of the pupil reflex and visual function. We show that mitonuclear communication is a key determining factor for the reprogramming of fibroblasts into CiPCs. Specifically, treatment with these five compounds leads to the translocation of AXIN2 to the mitochondria, which results in the production of reactive oxygen species, the activation of NF-kappa B and the upregulation of Ascl1. We anticipate that CiPCs could have therapeutic potential for restoring vision.


A set of five small molecules can induce the transformation of fibroblasts into rod photoreceptor-like cells, which can partially restore pupil reflex and visual function when transplanted into a rod degeneration mouse model.


  
Two conserved epigenetic regulators prevent healthy ageing 期刊论文
NATURE, 2020
作者:  Yoshida, Kenichi;  Gowers, Kate H. C.;  Lee-Six, Henry;  Chandrasekharan, Deepak P.;  Coorens, Tim;  Maughan, Elizabeth F.;  Beal, Kathryn;  Menzies, Andrew;  Millar, Fraser R.;  Anderson, Elizabeth;  Clarke, Sarah E.;  Pennycuick, Adam;  Thakrar, Ricky M.;  Butler, Colin R.;  Kakiuchi, Nobuyuki;  Hirano, Tomonori;  Hynds, Robert E.;  Stratton, Michael R.;  Martincorena, Inigo;  Janes, Sam M.;  Campbell, Peter J.
收藏  |  浏览/下载:35/0  |  提交时间:2020/07/03

It has long been assumed that lifespan and healthspan correlate strongly, yet the two can be clearly dissociated(1-6). Although there has been a global increase in human life expectancy, increasing longevity is rarely accompanied by an extended healthspan(4,7). Thus, understanding the origin of healthy behaviours in old people remains an important and challenging task. Here we report a conserved epigenetic mechanism underlying healthy ageing. Through genome-wide RNA-interference-based screening of genes that regulate behavioural deterioration in ageing Caenorhabditis elegans, we identify 59 genes as potential modulators of the rate of age-related behavioural deterioration. Among these modulators, we found that a neuronal epigenetic reader, BAZ-2, and a neuronal histone 3 lysine 9 methyltransferase, SET-6, accelerate behavioural deterioration in C. elegans by reducing mitochondrial function, repressing the expression of nuclear-encoded mitochondrial proteins. This mechanism is conserved in cultured mouse neurons and human cells. Examination of human databases(8,9) shows that expression of the human orthologues of these C. elegans regulators, BAZ2B and EHMT1, in the frontal cortex increases with age and correlates positively with the progression of Alzheimer'  s disease. Furthermore, ablation of Baz2b, the mouse orthologue of BAZ-2, attenuates age-dependent body-weight gain and prevents cognitive decline in ageing mice. Thus our genome-wide RNA-interference screen in C. elegans has unravelled conserved epigenetic negative regulators of ageing, suggesting possible ways to achieve healthy ageing.


Two epigenetic regulators-identified in an RNA interference screen in Caenhorhabditis elegans, and conserved in mammals-diminish mitochondrial function and accelerate the age-related deterioration of behaviour.


  
High-pressure strengthening in ultrafine-grained metals 期刊论文
NATURE, 2020
作者:  Yoshida, Kenichi;  Gowers, Kate H. C.;  Lee-Six, Henry;  Chandrasekharan, Deepak P.;  Coorens, Tim;  Maughan, Elizabeth F.;  Beal, Kathryn;  Menzies, Andrew;  Millar, Fraser R.;  Anderson, Elizabeth;  Clarke, Sarah E.;  Pennycuick, Adam;  Thakrar, Ricky M.;  Butler, Colin R.
收藏  |  浏览/下载:27/0  |  提交时间:2020/07/03

High-pressure diamond anvil cell experiments reveal that compression strengthening of nanocrystalline nickel increases as its grain sizes decrease to 3 nanometres, owing to dislocation hardening and suppression of grain boundary plasticity.


The Hall-Petch relationship, according to which the strength of a metal increases as the grain size decreases, has been reported to break down at a critical grain size of around 10 to 15 nanometres(1,2). As the grain size decreases beyond this point, the dominant mechanism of deformation switches from a dislocation-mediated process to grain boundary sliding, leading to material softening. In one previous approach, stabilization of grain boundaries through relaxation and molybdenum segregation was used to prevent this softening effect in nickel-molybdenum alloys with grain sizes below 10 nanometres(3). Here we track in situ the yield stress and deformation texturing of pure nickel samples of various average grain sizes using a diamond anvil cell coupled with radial X-ray diffraction. Our high-pressure experiments reveal continuous strengthening in samples with grain sizes from 200 nanometres down to 3 nanometres, with the strengthening enhanced (rather than reduced) at grain sizes smaller than 20 nanometres. We achieve a yield strength of approximately 4.2 gigapascals in our 3-nanometre-grain-size samples, ten times stronger than that of a commercial nickel material. A maximum flow stress of 10.2 gigapascals is obtained in nickel of grain size 3 nanometres for the pressure range studied here. We see similar patterns of compression strengthening in gold and palladium samples down to the smallest grain sizes. Simulations and transmission electron microscopy reveal that the high strength observed in nickel of grain size 3 nanometres is caused by the superposition of strengthening mechanisms: both partial and full dislocation hardening plus suppression of grain boundary plasticity. These insights contribute to the ongoing search for ultrastrong metals via materials engineering.


  
Contested beliefs about land-use are associated with divergent representations of a rural landscape as place 期刊论文
LANDSCAPE AND URBAN PLANNING, 2017, 157
作者:  Anderson, Nerida M.;  Ford, Rebecca M.;  Williams, Kathryn J. H.
收藏  |  浏览/下载:6/0  |  提交时间:2019/04/09
Land use beliefs  Plantation forestry  Social representation theory  landscape perception  Place meaning  Rural landscape  
Ocean acidification can mediate biodiversity shifts by changing biogenic habitat 期刊论文
NATURE CLIMATE CHANGE, 2017, 7 (1)
作者:  Sunday, Jennifer M.;  Fabricius, Katharina E.;  Kroeker, Kristy J.;  Anderson, Kathryn M.;  Brown, Norah E.;  Barry, James P.;  Connell, Sean D.;  Dupont, Sam;  Gaylord, Brian;  Hall-Spencer, Jason M.;  Klinger, Terrie;  Milazzo, Marco;  Munday, Philip L.;  Russell, Bayden D.;  Sanford, Eric;  Thiyagarajan, Vengatesen;  Vaughan, Megan L. H.;  Widdicombe, Stephen;  Harley, Christopher D. G.
收藏  |  浏览/下载:12/0  |  提交时间:2019/04/09