Zobrazeno 1 - 10
of 114
pro vyhledávání: '"Peter D. Heintzman"'
Autor:
Sandra Garcés-Pastor, Eric Coissac, Sébastien Lavergne, Christoph Schwörer, Jean-Paul Theurillat, Peter D. Heintzman, Owen S. Wangensteen, Willy Tinner, Fabian Rey, Martina Heer, Astrid Rutzer, Kevin Walsh, Youri Lammers, Antony G. Brown, Tomasz Goslar, Dilli P. Rijal, Dirk N. Karger, Loïc Pellissier, The PhyloAlps Consortium, Oliver Heiri, Inger Greve Alsos
Publikováno v:
Nature Communications, Vol 13, Iss 1, Pp 1-16 (2022)
Here, the authors use sedimentary DNA, pollen, fungal spores, chironomids, and microcharcoal from an alpine lake core to reconstruct vegetation across 12,000 years. They find that vegetation responded to climate in the early Holocene, followed by a s
Externí odkaz:
https://doaj.org/article/daec51599bd3458dad919c82af64a161
Autor:
Tom van der Valk, Marianne Dehasque, J. Camilo Chacón-Duque, Nikolay Oskolkov, Sergey Vartanyan, Peter D. Heintzman, Patrícia Pečnerová, David Díez-del-Molino, Love Dalén
Publikováno v:
iScience, Vol 25, Iss 8, Pp 104826- (2022)
Summary: Woolly mammoths had a set of adaptations that enabled them to thrive in the Arctic environment. Many mammoth-specific single nucleotide polymorphisms (SNPs) responsible for unique mammoth traits have been previously identified from ancient g
Externí odkaz:
https://doaj.org/article/d85bad0d77354ef2a4be1790a224d17d
Publikováno v:
Communications Biology, Vol 4, Iss 1, Pp 1-11 (2021)
Lammers et al. use sedimentary ancient DNA to reconstruct palaeogenomes of Nannochloropsis. This study demonstrates the value of sedaDNA for palaeogenomic reconstructions and population genomic analysis.
Externí odkaz:
https://doaj.org/article/cd888f5df55c4443bf884f2c30a01063
Autor:
James A. Fellows Yates, Aida Andrades Valtueña, Åshild J. Vågene, Becky Cribdon, Irina M. Velsko, Maxime Borry, Miriam J. Bravo-Lopez, Antonio Fernandez-Guerra, Eleanor J. Green, Shreya L. Ramachandran, Peter D. Heintzman, Maria A. Spyrou, Alexander Hübner, Abigail S. Gancz, Jessica Hider, Aurora F. Allshouse, Valentina Zaro, Christina Warinner
Publikováno v:
Scientific Data, Vol 8, Iss 1, Pp 1-8 (2021)
Measurement(s) genome • Metagenome • Metadata • Ancient DNA Technology Type(s) digital curation Factor Type(s) geographic location • sample age Machine-accessible metadata file describing the reported data: https://doi.org/10.6084/m9.figshare
Externí odkaz:
https://doaj.org/article/df8cfd115e7446e0af226b34d5094221
Autor:
Lucas D. Elliott, Dilli P. Rijal, Antony G. Brown, Jostein Bakke, Lasse Topstad, Peter D. Heintzman, Inger G. Alsos
Publikováno v:
Quaternary, Vol 6, Iss 1, p 7 (2023)
Disentangling the effects of glaciers and climate on vegetation is complicated by the confounding role that climate plays in both systems. We reconstructed changes in vegetation occurring over the Holocene at Jøkelvatnet, a lake located directly dow
Externí odkaz:
https://doaj.org/article/6a88f56dbba94365a6c3186a06de4240
Autor:
Kathrin Theissinger, Carlos Fernandes, Giulio Formenti, Iliana Bista, Paul R. Berg, Christoph Bleidorn, Aureliano Bombarely, Angelica Crottini, Guido R. Gallo, José A. Godoy, Sissel Jentoft, Joanna Malukiewicz, Alice Mouton, Rebekah A. Oomen, Sadye Paez, Per J. Palsbøll, Christophe Pampoulie, María J. Ruiz-López, Simona Secomandi, Hannes Svardal, Constantina Theofanopoulou, Jan de Vries, Ann-Marie Waldvogel, Guojie Zhang, Erich D. Jarvis, Miklós Bálint, Claudio Ciofi, Robert M. Waterhouse, Camila J. Mazzoni, Jacob Höglund, Sargis A. Aghayan, Tyler S. Alioto, Isabel Almudi, Nadir Alvarez, Paulo C. Alves, Isabel R. Amorim do Rosario, Agostinho Antunes, Paula Arribas, Petr Baldrian, Giorgio Bertorelle, Astrid Böhne, Andrea Bonisoli-Alquati, Ljudevit L. Boštjančić, Bastien Boussau, Catherine M. Breton, Elena Buzan, Paula F. Campos, Carlos Carreras, L. FIlipe C. Castro, Luis J. Chueca, Fedor Čiampor, Elena Conti, Robert Cook-Deegan, Daniel Croll, Mónica V. Cunha, Frédéric Delsuc, Alice B. Dennis, Dimitar Dimitrov, Rui Faria, Adrien Favre, Olivier D. Fedrigo, Rosa Fernández, Gentile Francesco Ficetola, Jean-François Flot, Toni Gabaldón, Dolores R. Agius, Alice M. Giani, M. Thomas P. Gilbert, Tine Grebenc, Katerina Guschanski, Romain Guyot, Bernhard Hausdorf, Oliver Hawlitschek, Peter D. Heintzman, Berthold Heinze, Michael Hiller, Martin Husemann, Alessio Iannucci, Iker Irisarri, Kjetill S. Jakobsen, Peter Klinga, Agnieszka Kloch, Claudius F. Kratochwil, Henrik Kusche, Kara K.S. Layton, Jennifer A. Leonard, Emmanuelle Lerat, Gianni Liti, Tereza Manousaki, Tomas Marques-Bonet, Pável Matos-Maraví, Michael Matschiner, Florian Maumus, Ann M. Mc Cartney, Shai Meiri, José Melo-Ferreira, Ximo Mengual, Michael T. Monaghan, Matteo Montagna, Robert W. Mysłajek, Marco T. Neiber, Violaine Nicolas, Marta Novo, Petar Ozretić, Ferran Palero, Lucian Pârvulescu, Marta Pascual, Octávio S. Paulo, Martina Pavlek, Cinta Pegueroles, Loïc Pellissier, Graziano Pesole, Craig R. Primmer, Ana Riesgo, Lukas Rüber, Diego Rubolini, Daniele Salvi, Ole Seehausen, Matthias Seidel, Bruno Studer, Spyros Theodoridis, Marco Thines, Lara Urban, Anti Vasemägi, Adriana Vella, Noel Vella, Sonja C. Vernes, Cristiano Vernesi, David R. Vieites, Christopher W. Wheat, Gert Wörheide, Yannick Wurm, Gabrielle Zammit
Publikováno v:
The European Reference Genome Atlas Consortium 2023, ' How genomics can help biodiversity conservation ', Trends in Genetics, vol. 39, no. 7 . https://doi.org/10.1016/j.tig.2023.01.005
Trends in genetics
Trends in genetics, str., Vol. , iss. , 2023
COBISS-ID: 520937241
Theissinger, Kathrin; Fernandes, Carlos; Formenti, Giulio; Bista, Iliana; Berg, Paul R.; Bleidorn, Christoph; Bombarely, Aureliano; Crottini, Angelica; Gallo, Guido R.; Godoy, José A.; Jentoft, Sissel; Malukiewicz, Joanna; Mouton, Alice; Oomen, Rebekah A.; Paez, Sadye; Palsbøll, Per J.; Pampoulie, Christophe; Ruiz-López, María J.; Secomandi, Simona; Svardal, Hannes; ... (2023). How genomics can help biodiversity conservation. Trends in genetics, 39(7), pp. 545-559. Elsevier Current Trends 10.1016/j.tig.2023.01.005
European Reference Genome Atlas (ERGA) Consortium 2023, ' How genomics can help biodiversity conservation ', Trends in Genetics . https://doi.org/10.1016/j.tig.2023.01.005
Trends in Genetics, 39 (7)
Trends in Genetics
Trends in genetics, 2023.
Trends in genetics
Trends in genetics, str.
COBISS-ID: 520937241
Theissinger, Kathrin; Fernandes, Carlos; Formenti, Giulio; Bista, Iliana; Berg, Paul R.; Bleidorn, Christoph; Bombarely, Aureliano; Crottini, Angelica; Gallo, Guido R.; Godoy, José A.; Jentoft, Sissel; Malukiewicz, Joanna; Mouton, Alice; Oomen, Rebekah A.; Paez, Sadye; Palsbøll, Per J.; Pampoulie, Christophe; Ruiz-López, María J.; Secomandi, Simona; Svardal, Hannes; ... (2023). How genomics can help biodiversity conservation. Trends in genetics, 39(7), pp. 545-559. Elsevier Current Trends 10.1016/j.tig.2023.01.005
European Reference Genome Atlas (ERGA) Consortium 2023, ' How genomics can help biodiversity conservation ', Trends in Genetics . https://doi.org/10.1016/j.tig.2023.01.005
Trends in Genetics, 39 (7)
Trends in Genetics
Trends in genetics, 2023.
The availability of public genomic resources can greatly assist biodiversity assessment, conservation, and restoration efforts by providing evidence for scientifically informed management decisions. Here we survey the main approaches and applications
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::4d017d3941ad247384ff4473b9978be5
https://doi.org/10.5167/uzh-231893
https://doi.org/10.5167/uzh-231893
Autor:
John W. Williams, Trisha L. Spanbauer, Peter D. Heintzman, Jessica Blois, Eric Capo, Simon J. Goring, Marie-Eve Monchamp, Laura Parducci, Jordan M. Von Eggers, Inger Greve Alsos, Chris Bowler, Marco J.L. Coolen, Nicola Cullen, Sarah Crump, Laura Saskia Epp, Antonio Fernandez-Guerra, Eric Grimm, Ulrike Herzschuh, Alessandro Mereghetti, Rachel Sarah Meyer, Kevin Nota, Mikkel Winther Pedersen, Vilma Pérez, Beth Shapiro, Kathleen R. Stoof-Leichsenring, Jamie Wood
Publikováno v:
Trends in Ecology & Evolution.
Autor:
Aloïs Revéret, Dilli P. Rijal, Peter D. Heintzman, Antony G. Brown, Kathleen R. Stoof-Leichsenring, Inger G. Alsos
Environmental DNA is increasingly being used to reconstruct past and present biodiversity including from freshwater ecosystems. Here, we first review and compare studies that use metagenomics, targeted capture, and various barcoding and metabarcoding
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::dc15f9eebfdf99754492d510c7ce582c
https://doi.org/10.1101/2023.03.27.533457
https://doi.org/10.1101/2023.03.27.533457
Autor:
Eric Capo, Charline Giguet-Covex, Alexandra Rouillard, Kevin Nota, Peter D. Heintzman, Aurèle Vuillemin, Daniel Ariztegui, Fabien Arnaud, Simon Belle, Stefan Bertilsson, Christian Bigler, Richard Bindler, Antony G. Brown, Charlotte L. Clarke, Sarah E. Crump, Didier Debroas, Göran Englund, Gentile Francesco Ficetola, Rebecca E. Garner, Joanna Gauthier, Irene Gregory-Eaves, Liv Heinecke, Ulrike Herzschuh, Anan Ibrahim, Veljo Kisand, Kurt H. Kjær, Youri Lammers, Joanne Littlefair, Erwan Messager, Marie-Eve Monchamp, Fredrik Olajos, William Orsi, Mikkel W. Pedersen, Dilli P. Rijal, Johan Rydberg, Trisha Spanbauer, Kathleen R. Stoof-Leichsenring, Pierre Taberlet, Liisi Talas, Camille Thomas, David A. Walsh, Yucheng Wang, Eske Willerslev, Anne van Woerkom, Heike H. Zimmermann, Marco J. L. Coolen, Laura S. Epp, Isabelle Domaizon, Inger G. Alsos, Laura Parducci
Publikováno v:
Quaternary, Vol 4, Iss 1, p 6 (2021)
The use of lake sedimentary DNA to track the long-term changes in both terrestrial and aquatic biota is a rapidly advancing field in paleoecological research. Although largely applied nowadays, knowledge gaps remain in this field and there is therefo
Externí odkaz:
https://doaj.org/article/304e806f23974cc6854bb6f02cd62121
Autor:
Peter D Heintzman, Grant D Zazula, Ross DE MacPhee, Eric Scott, James A Cahill, Brianna K McHorse, Joshua D Kapp, Mathias Stiller, Matthew J Wooller, Ludovic Orlando, John Southon, Duane G Froese, Beth Shapiro
Publikováno v:
eLife, Vol 6 (2017)
The extinct ‘New World stilt-legged’, or NWSL, equids constitute a perplexing group of Pleistocene horses endemic to North America. Their slender distal limb bones resemble those of Asiatic asses, such as the Persian onager. Previous palaeogeneti
Externí odkaz:
https://doaj.org/article/8675fb88a54a4b1aa8c8be8848ebcb06