High resolution ancient sedimentary DNA shows that alpine plant diversity is associated with human land use and climate change
- DOI
- 10.1038/s41467-022-34010-4
- Published
- 2022-11-04
- Container
- Nature Communications
- Publisher
- Springer Science and Business Media LLC
- Open access
- unknown
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BibTeX
@article{allodium:10.1038/s41467-022-34010-4,
title = {High resolution ancient sedimentary DNA shows that alpine plant diversity is associated with human land use and climate change},
author = {Sandra Garcés-Pastor and Eric Coissac and Sébastien Lavergne and Christoph Schwörer and Jean-Paul Theurillat and Peter D. Heintzman and Owen S. Wangensteen and Willy Tinner and Fabian Rey and Martina Heer and Astrid Rutzer and Kevin Walsh and Youri Lammers and Antony G. Brown and Tomasz Goslar and Dilli P. Rijal and Dirk N. Karger and Loïc Pellissier and Unknown and Charles Pouchon and Cristina Roquet and Wilfried Thuiller and Niklaus E. Zimmermann and Adriana Alberti and Patrick Wincker and Martí Boleda and Frédéric Boyer and Anthony Hombiat and Christophe Perrier and Rolland Douzet and Jean-Gabriel Valay and Serge Aubert and France Denoeud and Bruno Bzeznick and Ludovic Gielly and Pierre Taberlet and Delphine Rioux and Céline Orvain and Maxime Rome and Rafael O. Wüest and Sonia Latzin and John Spillmann and Linda Feichtinger and Jérémie Van Es and Luc Garraud and Jean-Charles Villaret and Sylvain Abdulhak and Véronique Bonnet and Stéphanie Huc and Noémie Fort and Thomas Legland and Thomas Sanz and Gilles Pache and Alexis Mikolajczak and Virgile Noble and Henri Michaud and Benoît Offerhaus and Cédric Dentant and Pierre Salomez and Richard Bonet and Thierry Delahaye and Marie-France Leccia and Monique Perfus and Stefan Eggenberg and Adrian Möhl and Bogdan-Iuliu Hurdu and Paul-Marian Szatmari and Mihai Pușcaș and Jan Smyčka and Patrik Mráz and Kristýna Šemberová and Michał Ronikier and Marek Slovák and Oliver Heiri and Inger Greve Alsos},
year = {2022},
journal = {Nature Communications},
doi = {10.1038/s41467-022-34010-4},
url = {https://doi.org/10.1038/s41467-022-34010-4}
}RIS
TY - JOUR TI - High resolution ancient sedimentary DNA shows that alpine plant diversity is associated with human land use and climate change AU - Sandra Garcés-Pastor AU - Eric Coissac AU - Sébastien Lavergne AU - Christoph Schwörer AU - Jean-Paul Theurillat AU - Peter D. Heintzman AU - Owen S. Wangensteen AU - Willy Tinner AU - Fabian Rey AU - Martina Heer AU - Astrid Rutzer AU - Kevin Walsh AU - Youri Lammers AU - Antony G. Brown AU - Tomasz Goslar AU - Dilli P. Rijal AU - Dirk N. Karger AU - Loïc Pellissier AU - Unknown AU - Charles Pouchon AU - Cristina Roquet AU - Wilfried Thuiller AU - Niklaus E. Zimmermann AU - Adriana Alberti AU - Patrick Wincker AU - Martí Boleda AU - Frédéric Boyer AU - Anthony Hombiat AU - Christophe Perrier AU - Rolland Douzet AU - Jean-Gabriel Valay AU - Serge Aubert AU - France Denoeud AU - Bruno Bzeznick AU - Ludovic Gielly AU - Pierre Taberlet AU - Delphine Rioux AU - Céline Orvain AU - Maxime Rome AU - Rafael O. Wüest AU - Sonia Latzin AU - John Spillmann AU - Linda Feichtinger AU - Jérémie Van Es AU - Luc Garraud AU - Jean-Charles Villaret AU - Sylvain Abdulhak AU - Véronique Bonnet AU - Stéphanie Huc AU - Noémie Fort AU - Thomas Legland AU - Thomas Sanz AU - Gilles Pache AU - Alexis Mikolajczak AU - Virgile Noble AU - Henri Michaud AU - Benoît Offerhaus AU - Cédric Dentant AU - Pierre Salomez AU - Richard Bonet AU - Thierry Delahaye AU - Marie-France Leccia AU - Monique Perfus AU - Stefan Eggenberg AU - Adrian Möhl AU - Bogdan-Iuliu Hurdu AU - Paul-Marian Szatmari AU - Mihai Pușcaș AU - Jan Smyčka AU - Patrik Mráz AU - Kristýna Šemberová AU - Michał Ronikier AU - Marek Slovák AU - Oliver Heiri AU - Inger Greve Alsos PY - 2022 JO - Nature Communications DO - 10.1038/s41467-022-34010-4 UR - https://doi.org/10.1038/s41467-022-34010-4 ER -
APA
Garcés-Pastor, S., Coissac, E., Lavergne, S., Schwörer, C., Theurillat, J., Heintzman, P. D., Wangensteen, O. S., Tinner, W., Rey, F., Heer, M., Rutzer, A., Walsh, K., Lammers, Y., Brown, A. G., Goslar, T., Rijal, D. P., Karger, D. N., Pellissier, L., Unknown, Pouchon, C., Roquet, C., Thuiller, W., Zimmermann, N. E., Alberti, A., Wincker, P., Boleda, M., Boyer, F., Hombiat, A., Perrier, C., Douzet, R., Valay, J., Aubert, S., Denoeud, F., Bzeznick, B., Gielly, L., Taberlet, P., Rioux, D., Orvain, C., Rome, M., Wüest, R. O., Latzin, S., Spillmann, J., Feichtinger, L., Es, J. V., Garraud, L., Villaret, J., Abdulhak, S., Bonnet, V., Huc, S., Fort, N., Legland, T., Sanz, T., Pache, G., Mikolajczak, A., Noble, V., Michaud, H., Offerhaus, B., Dentant, C., Salomez, P., Bonet, R., Delahaye, T., Leccia, M., Perfus, M., Eggenberg, S., Möhl, A., Hurdu, B., Szatmari, P., Pușcaș, M., Smyčka, J., Mráz, P., Šemberová, K., Ronikier, M., Slovák, M., Heiri, O., & Alsos, I. G. (2022). High resolution ancient sedimentary DNA shows that alpine plant diversity is associated with human land use and climate change. Nature Communications. https://doi.org/10.1038/s41467-022-34010-4
Source records
- crossref · retrieved 2026-09-26T17:37:44.105Z