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Название: Positive feedbacks and alternative stable states in forest leaf types
Авторы: Zou, Y.
Zohner, C. M.
Averill, C.
Ma, H.
Merder, J.
Berdugo, M.
Bialic-Murphy, L.
Mo, L.
Brun, P.
Zimmermann, N. E.
Liang, J.
Hillers, A.
Honorio-Coronado, E. N.
Hui, C.
Ibanez, T.
Iêda, A.
Imai, N.
Jagodziński, A. M.
Jaroszewicz, B.
Johannsen, V.
Joly, C. A.
de Miguel, S.
Jucker, T.
Jung, I.
Karminov, V.
Kartawinata, K.
Kearsley, E.
Kenfack, D.
Kennard, D.
Kepfer-Rojas, S.
Keppel, G.
Khan, M. L.
Nabuurs, G. -J.
Killeen, T.
Kim, H. S.
Kitayama, K.
Koehl, M.
Korjus, H.
Kraxner, F.
Laarmann, D.
Lang, M.
Lewis, S.
Lu, H.
Reich, P. B.
Lukina, N.
Maitner, B.
Malhi, Y.
Marcon, E.
Marimon, B. S.
Marimon-Júnior, B. H.
Marshall, A. R.
Martin, E.
Kucher, D.
Meave, J. A.
Niinements, U.
Melo-Cruz, O.
Mendoza, C.
Merow, C.
Mendoza, A. M.
Moreno, V.
Mukul, S. A.
Mundhenk, P.
Nava-Miranda, M. G.
Neill, D.
Neldner, V.
Dahlgren, J.
Nevenić, R.
Ngugi, M.
Niklaus, P. A.
Oleksyn, J.
Ontikov, P.
Ortiz-Malavasi, E.
Pan, Y.
Paquette, A.
Parada-Gutierrez, A.
Parfenova, E.
Kändler, G.
Park, M.
Parren, M.
Parthasarathy, N.
Peri, P. L.
Pfautsch, S.
Phillips, O. L.
Picard, N.
Piedade, M. T.
Piotto, D.
Pitman, N. C. A.
Ratcliffe, S.
Polo, I.
Poorter, L.
Poulsen, A. D.
Poulsen, J. R.
Pretzsch, H.
Ramirez Arevalo, F. R.
Restrepo-Correa, Z.
Rodeghiero, M.
Rolim, S.
Roopsind, A.
Ruiz-Benito, P.
Rovero, F.
Rutishauser, E.
Saikia, P.
Salas-Eljatib, C.
Saner, P.
Schall, P.
Schelhaas, M. -J.
Schepaschenko, D.
Scherer-Lorenzen, M.
Schmid, B.
de Zavala, M. A.
Schöngart, J.
Searle, E. B.
Šebeň, V.
Serra-Díaz, J. M.
Sheil, D.
Shvidenko, A.
Silva-Espejo, J.
Silveira, M.
Singh, J.
Sist, P.
Crowther, T. W.
Slik, F.
Sonké, B.
Souza, A. F.
Miścicki, S.
Stereńczak, K.
Svenning, J. -C.
Svoboda, M.
Swanepoel, B.
Targhetta, N.
Tchebakova, N.
Abegg, M.
ter Steege, H.
Thomas, R.
Tikhonova, E.
Umunay, P.
Usoltsev, V.
Valencia, R.
Valladares, F.
van der Plas, F.
van do, T.
van Nuland, M. E.
Adou Yao, Y. C.
Vasquez, R. M.
Verbeeck, H.
Viana, H.
Vibrans, A. C.
Vieira, S.
von Gadow, K.
Hua-Feng, H. -F.
Watson, J. V.
Werner, G. D. A.
Westerlund, B.
Alberti, G.
Wiser, S. K.
Wittmann, F.
Woell, H.
Wortel, V.
Zagt, R.
Zawiła-Niedźwiecki, T.
Zhang, C.
Zhao, X.
Zhou, M.
Zhu, Z. -X.
Almeyda Zambrano, A. M.
Zo-Bi, I. C.
Alvarado, B. V.
Alvarez-Davila, E.
Álvarez-Loayza, P.
Alves, L. F.
Ammer, C.
Antón-Fernández, C.
Araujo-Murakami, A.
Arroyo, L.
Avitabile, V.
Aymard, G. A.
Baker, T.
Balazy, R.
Bánki, O.
Barroso, J.
Bastian, M. L.
Bastin, J. -F.
Birigazzi, L.
Birnbaum, P.
Bitariho, R.
Boeckx, P.
Coulleri, F.
Bouriaud, O.
Brancalion, P. H. S.
Brandl, S.
Brearley, F. Q.
Brienen, R.
Broadbent, E. N.
Bruelheide, H.
Bussotti, F.
Cazzolla Gatti, R.
César, R. G.
Cesljar, G.
Chazdon, R.
Chen, H. Y. H.
Chisholm, C.
Cho, H.
Cienciala, E.
Clark, C. J.
Clark, D. B.
Colletta, G.
Coomes, D.
Valverde, F. C.
Corral-Rivas, J. J.
Crim, P.
Cumming, J.
Dayanandan, S.
Gasper, A. L.
Decuyper, M.
Derroire, G.
DeVries, B.
Djordjevic, I.
Doležal, J.
Dourdain, A.
Obiang, N. L. E.
Enquist, B.
Eyre, T.
Fandohan, A. B.
Fayle, T. M.
Feldpausch, T. R.
Ferreira, L. V.
Finér, L.
Fischer, M.
Fletcher, C.
Fridman, J.
Frizzera, L.
Gamarra, J. G. P.
Gianelle, D.
Glick, H. B.
Harris, D.
Hector, A.
Hemp, A.
Hengeveld, G.
Herault, B.
Herbohn, J.
Herold, M.
Дата публикации: 2024
Издатель: Nature Research
Библиографическое описание: Positive feedbacks and alternative stable states in forest leaf types / Y. Zou, C. M. Zohner, C. Averill [et al.] // Nature Communications. – 2024. – Vol. 15. – Iss. 1. – № 4658. DOI: 10.1038/s41467-024-48676-5.
Zou, Y., Zohner, C. M., Averill, C., Ma, H., Merder, J., Berdugo, M., … Crowther, T. W. (2024). Positive feedbacks and alternative stable states in forest leaf types. Nature Communications, 15(1), 4658. doi:10.1038/s41467-024-48676-5
Аннотация: The emergence of alternative stable states in forest systems has significant implications for the functioning and structure of the terrestrial biosphere, yet empirical evidence remains scarce. Here, we combine global forest biodiversity observations and simulations to test for alternative stable states in the presence of evergreen and deciduous forest types. We reveal a bimodal distribution of forest leaf types across temperate regions of the Northern Hemisphere that cannot be explained by the environment alone, suggesting signatures of alternative forest states. Moreover, we empirically demonstrate the existence of positive feedbacks in tree growth, recruitment and mortality, with trees having 4–43% higher growth rates, 14–17% higher survival rates and 4–7 times higher recruitment rates when they are surrounded by trees of their own leaf type. Simulations show that the observed positive feedbacks are necessary and sufficient to generate alternative forest states, which also lead to dependency on history (hysteresis) during ecosystem transition from evergreen to deciduous forests and vice versa. We identify hotspots of bistable forest types in evergreen-deciduous ecotones, which are likely driven by soil-related positive feedbacks. These findings are integral to predicting the distribution of forest biomes, and aid to our understanding of biodiversity, carbon turnover, and terrestrial climate feedbacks. © The Author(s) 2024.
Ключевые слова: CARBON
BIODIVERSITY
DECIDUOUS FOREST
ECOTONE
EMERGENCE
FOREST ECOSYSTEM
GROWTH RATE
MORTALITY
ARTICLE
AUTOCORRELATION
BIOME
BIOSPHERE
CLIMATE
COMPARATIVE STUDY
CONTROLLED STUDY
DECIDUOUS PLANT
EVERGREEN
FOREST
HYSTERESIS
LEAVE ONE OUT CROSS VALIDATION
MONOCULTURE
NORTHERN HEMISPHERE
PERFORMANCE
PHENOLOGY
PLANT LEAF
POSITIVE FEEDBACK
RANDOM FOREST
SIMULATION
SOIL
SURVIVAL RATE
TEMPERATURE
TOPOGRAPHY
TREE GROWTH
VEGETATION
CHEMISTRY
ECOSYSTEM
GROWTH, DEVELOPMENT AND AGING
TREE
BIODIVERSITY
CLIMATE
ECOSYSTEM
FORESTS
PLANT LEAVES
SOIL
TREES
URI: https://elar.usfeu.ru/handle/123456789/14511
DOI: 10.1038/s41467-024-48676-5
SCOPUS: 2-s2.0-85195001010
РИНЦ: 67821956
EDN: NGIHSA
Располагается в коллекциях:Научные публикации, проиндексированные в SCOPUS и WoS CC

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