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Testing Aleppo pine seed sources response to climate change by using trial sites reflecting future conditions

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Testing Aleppo pine seed sources response to climate change by using trial sites reflecting future conditions

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Taïbi, K.; Campo García, ADD.; Mulet Salort, JM.; Flors, J.; Aguado, A. (2014). Testing Aleppo pine seed sources response to climate change by using trial sites reflecting future conditions. New Forests. 45(5):603-624. https://doi.org/10.1007/s11056-014-9423-y

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Título: Testing Aleppo pine seed sources response to climate change by using trial sites reflecting future conditions
Autor: Taïbi, Khaled Campo García, Antonio Dámaso del Mulet Salort, José Miguel Flors, J. Aguado, A.
Entidad UPV: Universitat Politècnica de València. Departamento de Ingeniería Hidráulica y Medio Ambiente - Departament d'Enginyeria Hidràulica i Medi Ambient
Universitat Politècnica de València. Departamento de Biotecnología - Departament de Biotecnologia
Universitat Politècnica de València. Instituto Universitario de Ingeniería del Agua y del Medio Ambiente - Institut Universitari d'Enginyeria de l'Aigua i Medi Ambient
Universitat Politècnica de València. Instituto Universitario Mixto de Biología Molecular y Celular de Plantas - Institut Universitari Mixt de Biologia Molecular i Cel·lular de Plantes
Fecha difusión:
Resumen:
Large-scale biogeographical shifts in forest tree distributions are predicted in response to the altered precipitation and temperature regimes associated with climate change. Adaptive forest management to climate change ...[+]
Palabras clave: Pinus halepensis , Plantation performance , Core and marginal habitats , Growth , Survival , Assisted population migration
Derechos de uso: Reserva de todos los derechos
Fuente:
New Forests. (issn: 0169-4286 ) (eissn: 1573-5095 )
DOI: 10.1007/s11056-014-9423-y
Editorial:
Springer Verlag (Germany)
Versión del editor: http://dx.doi.org/10.1007/s11056-014-9423-y
Código del Proyecto:
info:eu-repo/grantAgreement/UPV//PAID-05-11/
Agradecimientos:
This study is a part of two research projects: "Application of molecular biology techniques in forest restoration in Mediterranean environments, PAID-05-11" funded by the Universitat Politecnica de Valencia (UPV), program ...[+]
Tipo: Artículo

References

Agúndez ID, Degen B, von Wuehlisch G, Alia R (1997) Genetic variation of Aleppo pine (Pinus halepensis mill.). For Gen 4(4):201–209

Aitken SN, Yeaman S, Holliday JA, Wang T, Curtis-McLane S (2008) Adaptation, migration or extirpation: climate change outcomes for tree populations. Evol App 1:95–111. doi: 10.1111/j.1752-4571.2007.00013.x

Alía R, Garcia del Barrio JM, Iglesias S, Mancha JA, de Miguel J, Nicolas JL, Perez F, Sanchez de Ron D (2009) Regiones de procedencia de especies forestales en España. Organismo Autonomo Parques Nacionales, Madrid [+]
Agúndez ID, Degen B, von Wuehlisch G, Alia R (1997) Genetic variation of Aleppo pine (Pinus halepensis mill.). For Gen 4(4):201–209

Aitken SN, Yeaman S, Holliday JA, Wang T, Curtis-McLane S (2008) Adaptation, migration or extirpation: climate change outcomes for tree populations. Evol App 1:95–111. doi: 10.1111/j.1752-4571.2007.00013.x

Alía R, Garcia del Barrio JM, Iglesias S, Mancha JA, de Miguel J, Nicolas JL, Perez F, Sanchez de Ron D (2009) Regiones de procedencia de especies forestales en España. Organismo Autonomo Parques Nacionales, Madrid

Atzmon N, Moshe Y, Schiller G (2004) Ecophysiological response to severe drought in Pinus halepensis Mill. trees of two provenances. Plant Ecol 171:15–22

Bariteau M (1992) Variabilité géographique et adaptation aux contraintes du milieu méditerranéen des pins de la section halepensis : résultats (provisoires) d’un essai en plantations comparatives en France. Ann Sci For 49:261–276

Benito-Garzón M, Alía R, Robson TM, Zavala MA (2011) Intra-specific variability and plasticity influence potential tree species distributions under climate change. Glob Ecol Biogeogr 20:766–778

Climent J, Prada MA, Calama R, Chambel MR, Sánchez de Ron D, Alía R (2008) To grow or to seed: ecotypic variation in reproductive allocation and cone production by young female Aleppo pine (Pinus halepensis, Pinaceae). Am J Bot 95(7):833–842

Cortina J, Vilagrosa A, Trubat R (2013) The role of nutrients for improving seedling quality in drylands. New For. doi: 10.1007/s11056-013-9379-3

Cregg BM, Zhang JW (2001) Physiology and morphology of Pinus sylvestris seedlings from diverse sources under cyclic drought stress. For Ecol Manage 154:131–139

del Campo AD, Navarro-Cerrillo RM, Hermoso J, Ibáñez AJ (2007a) Relationships between root growth potential and field performance in Aleppo pine. Ann For Sci 64:541–548

del Campo AD, Navarro-Cerrillo RM, Hermoso J, Ibáñez AJ (2007b) Relationships between site and stock quality in Pinus halepensis Mill. reforestation on semiarid landscapes in eastern Spain. Ann For Sci 64:719–731

del Campo AD, Hermoso J, Flors J, Lidón A, Navarro-Cerrillo RM (2011) Nursery location and potassium enrichment in Aleppo pine stock 2. Performance under real and hydrogel-mediated drought conditions. Forestry 84(3):235–245

Esteban GL, Martín JA, de Palacios P, Fernández FG, López R (2010) Adaptive anatomy of Pinus halepensis trees from different Mediterranean environments in Spain. Trees 24:19–30. doi: 10.1007/s00468-009-0375-3

European Forest Institute (2009) A Mediterranean Forest Research Agenda-MFRA. 2010-2020. Mediterranean Regional Office–EFIMED. www.efimed.efi.int/files/attachments/efimed/mediterranean_forest_research_agenda_2010-2020.pdf

FAO (2013) State of Mediterranean Forests 2013. www.fao.org/docrep/017/i3226e/i3226e.pdf

Ferrio JP, Voltas J (2005) Carbon and oxygen isotope ratios in wood constituents of Pinus halepensis as indicators of precipitation, temperature and vapour pressure deficit. Tellus B 57:164–173

Gandullo J, Sánchez-Palomares O (1994) Site ecology of Spanish pines, ICONA, Ministry of Agriculture, fisheries and food, Madrid (in Spanish)

Garrido A, Willaarts B, López-Gunn E, Rey D (2012) Considerations on climate variability and change in Spain. In: De Stefano L, Ramón Llamas M (eds) Water, agriculture and the environment in Spain can we square the circle? CRC Press, Boca Raton, pp 191–202

Giorgi F, Lionello P (2008) Climate change projections for the Mediterranean region. Glob Planet Change 63:90–104

Grivet D, Sebastiani F, González-Martínez SC, Vendramin GG (2009) Patterns of polymorphism resulting from long-range colonization in the Mediterranean conifer Aleppo pine. New Phytol 184:1016–1028

Hernandez EI, Vilagrosa A, Pausas JG, Bellot J (2010) Morphological traits and water use strategies in seedlings of Mediterranean coexisting species. Plant Ecol 207:233–244

IPCC (2001) The Scientific Basis. In: Houghton JT, Ding Y, Griggs DJ, Noguer M, Van Der Linden PJ, Dai X, Maskell K, Johnsson CA (eds) Climate Change 2001. Cambridge University Press, Cambridge, p 881

Kaplan EL, Meier P (1958) Nonparametric estimation from incomplete observations. J Am Stat Assoc 53:457–481

Landis TD, Dumroese RK, Haase DL (2010) The container tree nursery manual: Seedling processing, storage, and outplanting. vol. 7. USDA For. Serv., Agr. Handbook. 674, Washington, p 192

Matesanz S, Valladares F (2013) Ecological and evolutionary responses of Mediterranean plants to global change. doi: 10.1016/j.envexpbot.2013.09.004

Mayr S (2007) Limits in water relations. Trees at their upper limit. In: Wieser G, Tausz M (eds) Tree life limitation at the Alpine timberline. Springer, Berlin, pp 145–162

McDowell N, Pockman WT, Allen CD, Breshears DD, Cobb N, Kolb T, Plaut J, Sperry J, West A, Williams DG, Yepez EA (2008) Mechanisms of plant survival and mortality during drought: why do some plants survive while others succumb to drought? New Phytol 178:719–739

Metzger MJ, Bunce RGH, Leemans R, Viner D (2008) Projected environmental shifts under climate change: European trends and regional impacts. Environ Conserv 35(1):64–75

Mulet JM, Martin DE, Loewith R, Hall MN (2006) Mutual antagonism of target of rapamycin and calcineurin signaling. J Biol Chem 281(44):33000–33007

Oliet JA, Puértolas J, Planelles R, Jacobs DF (2013) Nutrient loading of forest tree seedlings to promote stress resistance and field performance: a Mediterranean perspective. New For 44:649–669. doi: 10.1007/s11056-013-9382-8

Oliver J, Bogino S, Spiecker H, Bravo F (2012) Climate impact on growth dynamic and intra-annual density fluctuations in Aleppo pine (Pinus halepensis) trees of different crown classes. Dendro 30:35–47

Persson B (1994) Effect of provenance transfer on survival in nine experimental series with Pinus sylvestris (L.) in northern Sweden. Scand J Forest Res 9:275–287

Potter KM, Hargrove WW (2012) Determining suitable locations for seed transfer under climate change: a global quantitative method. New For 43(5–6):581–599

Puértolas J, Gil L, Pardos JA (2005) Effects of nitrogen fertilization and temperature on frost hardiness of Aleppo pine (Pinus halepensis Mill.) seedlings assessed by chlorophyll fluorescence. Forestry 78(5):501–511

Quézel P, Médail F (2003) Ecologie et biogéographie des forêts du basin méditerranéen. Elsevier (Collection Environnement), Paris, 573 p

Ræbild A, Graudal L, Khan SR (2003) Evaluation of a Prosopis cineraria provenance trial at Dagar Kotli, Pakistan. Trial no. 23 in the arid zone series Results and Documentation No. 28. Danida Forest Seed Centre, Humlebaek, Denmark

Rehfeldt GE, Tchebakova NM, Parfenova YI, Wykoff WR, Kuzmina NA, Milyutin II (2002) Intraspecific responses to climate change in Pinus sylvestris. Glob Change Biol 8:912–929

Reich PB, Oleksyn J (2008) Climate warming will reduce growth and survival of Scots pine except in the far north. Ecol Lett 11:588–597. doi: 10.1111/j.1461-0248.2008.01172.x

Sáenz-Romero C, Beaulieu J, Rehfeldt GE (2011) Altitudinal genetic variation among P. patula in growth chambers simulating global warming temperatures. Agrocien 45:399–411

Schiller G, Atzmon N (2009) Performance of Aleppo pine (Pinus halepensis) provenances grown at the edge of the Negev desert: a review. J Arid Environ 73:1051–1057

Schmidtling RC (1994) Use of provenance tests to predict response to climatic change: loblolly pine and Norway spruce. Tree Physiol 14:805–817

Soto A, Robledo-Arnuncio JJ, González-Martínez J, Smouse BE, Alía R (2010) Climatic niche and neutral genetic diversity of the six Iberian pine species: a retrospective and prospective view. Mol Ecol 19(7):1396–1409

Sultan SE, Spencer HG (2002) Metapopulation structure favors plasticity over local adaptation. Am Nat 160:271–283

Tognetti R, Michelozzi M, Giovannelli A (1997) Geographical variation in water relations, hydraulic architecture and terpene composition of Aleppo pine seedlings from Italian provenances. Tree Physiol 17:241–250

United Nations, United Nations Economic Commission for Europe & Food and Agriculture Organization of the United Nations (2011) The European Forest Sector Outlook Study II 2010-2030. 107 pp. http://www.fao.org/docrep/016/ap406e/ap406e00.pdf

Vallejo VR, Smanis A, Chirino E, Fuentes D, Valdecantos A, Vilagrosa A (2012) Perspectives in dryland restoration: approaches for climate change adaptation. New For 43:561–579

van Kleunen M, Fischer M (2007) Progress in the detection of costs of phenotypic plasticity in plants. New Phytol 176:727–730

Vennetier M, Vilà B, Liang E, Guibal F, Taahbet A, Gadbin-Henry C (2007) Impact of climate change on pines forest productivity and on the shift of a bioclimatic limit in Mediterranean area. In: Leon e V, Lovreglio R (ed) Proceedings of the international workshop MEDPINE 3: conservation, regeneration and restoration of Mediterranean pines and their ecosystems. Bari : CIHEAM, 2007. pp 189–197 (Options Méditerranéennes : Série A. Séminaires Méditerranéen s; n. 75)

Villar-Salvador P, Puértolas J, Cuesta B, Peñuelas JL, Uscola M, Heredia-Guerrero N, Rey Benayas JM (2012) Increase in size and nitrogen concentration enhances seedling survival in Mediterranean plantations. Insights from an ecophysiological conceptual model of plant survival. New For. doi 10.1007/s11056-012-9328-6

Voltas J, Chambel MR, Prada MA, Ferrio JP (2008) Climate-related variability in carbon and oxygen stable isotopes among populations of Aleppo pine grown in common-garden tests. Trees 22:759–769

Williams MI, Dumroese RK (2013) Preparing for climate change: forestry and assisted migration. J For 111(4):287–297

Zobel B, Talbert JJ (1984) Applied forest tree improvement. Wiley, New York, pp 75–116

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