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| DOI | 10.1016/J.FECS.2023.100098 | ||||
| Año | 2023 | ||||
| Tipo | artículo de investigación |
Citas Totales
Autores Afiliación Chile
Instituciones Chile
% Participación
Internacional
Autores
Afiliación Extranjera
Instituciones
Extranjeras
Laurel forests are quite relevant for biodiversity conservation and are among the island ecosystems most severely damaged by human activities. In the past, Canary laurel forests have been greatly altered by logging, livestock and agriculture. The remains of laurel forests are currently protected in the Canary Islands (Spain). However, we miss basic information needed for their restoration and adaptive management, such as tree longevity, growth potential and responsiveness to natural and anthropogenic disturbances. Using dendrochronological methods, we studied how forest dynamic is related to land-use change and windstorms in two well-preserved laurel forests on Tenerife Island. Wood cores were collected from over 80 trees per stand at three stands per forest. We used ring-width series to estimate tree ages and calculate annual basal area increments (BAI), cumulative diameter increases, and changes indicative of released and suppressed growth. Twelve tree species were found in all stands, with Laurus novocanariensis, Ilex canariensis and Morella faya being the most common species. Although some individuals were over 100 years old, 61.8%–88.9% of the trees per stand established between 1940 and 1970, coinciding with a post-war period of land abandonment, rural exodus and the onset of a tourism economy. Some trees have shown growth rates larger than 1 cm diameter per year and most species have had increasing BAI trends over the past decades. Strong growth releases occurred after windstorms at both sites, but the effects of windstorms were site-dependent, with the 1958 storm affecting mainly the eastern tip of the island (Anaga massif) and the 1991 storm the western tip (Teno massif). Given the great ability of laurel forest trees to establish after land use cessation and to increase growth after local disturbances such as windstorms, passive restoration may be sufficient to regenerate this habitat in currently degraded areas.
| Ord. | Autor | Género | Institución - País |
|---|---|---|---|
| 1 | Rozas, Vicente | Hombre |
Universidad de Valladolid - España
UNIV VALLADOLID - España |
| 2 | Garcia-Lopez, Maria A. | Mujer |
Universidad de Valladolid - España
UNIV VALLADOLID - España |
| 3 | Olano, Jose M. | Hombre |
Universidad de Valladolid - España
UNIV VALLADOLID - España |
| 4 | Sanguesa-Barreda, Gabriel | Hombre |
Universidad de Valladolid - España
UNIV VALLADOLID - España |
| 5 | Garcia-Hidalgo, Miguel | Hombre |
Universidad de Valladolid - España
UNIV VALLADOLID - España |
| 6 | Gomez-Gonzalez, Susana | Mujer |
Universidad de Cádiz - España
Centro de Ciencia del Clima y la Resiliencia (CR)2 - Chile UNIV CADIZ - España Centro de Ciencia del Clima y la Resiliencia - Chile |
| 7 | Lopez-Rubio, Roberto | Hombre |
Universidad Rey Juan Carlos - España
Univ Rey Juan Carlos - España |
| 8 | Fernandez-Palacios, Jose Maria | Hombre |
Universidad de La Laguna - España
UNIV LA LAGUNA - España |
| 9 | García-González, Ignacio | Hombre |
Universidad de Santiago de Compostela - España
Univ Santiago de Compostela - España |
| 10 | Lozano-López, Laura | Mujer |
Universidad Rey Juan Carlos - España
Univ Rey Juan Carlos - España |
| 11 | García-González, Paula | Mujer |
Universidad Rey Juan Carlos - España
Univ Rey Juan Carlos - España |
| 12 | GARCIA-CERVIGON, ANA ISABEL | Mujer |
Universidad Rey Juan Carlos - España
Univ Rey Juan Carlos - España |
| Fuente |
|---|
| European Commission |
| European Regional Development Fund |
| Ministerio de Ciencia e Innovación |
| Universidad de Valladolid |
| European Social Fund |
| Spanish MICINN |
| Comunidad de Madrid |
| Junta de Castilla y Leon |
| Consejeria de Educacion, Junta de Castilla y Leon |
| MCIN/AEI |
| European Union (ERDF "Europe drives our growth") |
| Comunidad de Madrid project REMEDINAL TE-CM |
| PROWARM |
| "ESF Investing in your future" |
| CR2 project FONDAP-ANID |
| Junta de Castilla y Le?on |
| FPI Predoctoral Contract |
| MCIN/AEI/10.13039/501100011033 - projects LAUREL and PROWARM |
| Postdoctoral grant |
| Universidad de Valladolid Predoctoral Contract |
| Consejeria de Educacion of the Junta de Castilla y Leon in projects |
| Agradecimiento |
|---|
| This work was funded by MCIN / AEI /10.13039/501100011033 in projects LAUREL (PID2019-109906RA-I00) and PROWARM ( PID2020-118444GA-100 ), the Consejería de Educación of the Junta de Castilla y León in projects VA113G19 and IR2020-1-UVA08, and the project “CLU-2019-01-iuFOR Institute Unit of Excellence” of the University of Valladolid , funded by the Junta de Castilla y León and co-funded by the European Union ( ERDF “Europe drives our growth”). M.A.G.-L. was supported by Universidad de Valladolid Predoctoral Contract ( 113-2019PREUVA22 ). G.S.-B. was supported by a Postdoctoral grant (IJC2019-040571-I) funded by MCIN/ AEI /10.13039/501100011033/. M.G.-H. was supported by an FPI Predoctoral Contract (PRE2018-084106) funded by MCIN/ AEI /10.13039/501100011033/ and by “ESF Investing in your future”. S.G.-G. is supported by PID2019-106908RA-I00/ AEI /10.13039/501100011033 from Spanish MICINN and the CR2 project FONDAP-ANID 1522A0001 (Chile). A.I.G.-C. was supported by the Comunidad de Madrid project REMEDINAL TE-CM (S2018/EMT-4338). |
| This work was funded by MCIN/AEI/10.13039/501100011033 in projects LAUREL (PID2019-109906RA-I00) and PROWARM (PID2020-118444GA-100), the Consejeria de Educacion of the Junta de Castilla y Leon in projects VA113G19 and IR2020-1-UVA08, and the project "CLU-2019-01-iuFOR Institute Unit of Excellence" of the University of Valla-dolid, funded by the Junta de Castilla y Leon and co-funded by the European Union (ERDF "Europe drives our growth"). M.A.G.-L. was supported by Universidad de Valladolid Predoctoral Contract (113-2019PREUVA22). G.S.-B. was supported by a Postdoctoral grant (IJC2019-040571-I) funded by MCIN/AEI/10.13039/501100011033/. M.G.-H. was supported by an FPI Predoctoral Contract (PRE2018-084106) funded by MCIN/AEI/10.13039/501100011033/and by "ESF Investing in your future". S.G.-G. is supported by PID2019-106908RA-I00/AEI/10.13039/501100011033 from Spanish MICINN and the CR2 project FONDAP-ANID 1522A0001 (Chile). A.I.G.-C. was supported by the Comunidad de Madrid project REMEDINAL TE-CM (S2018/EMT-4338). |