Burning seeds: germinative response to heat treatments in relation to resprouting ability
暂无分享,去创建一个
[1] Campbell O. Webb,et al. Bioinformatics Applications Note Phylocom: Software for the Analysis of Phylogenetic Community Structure and Trait Evolution , 2022 .
[2] Juli G Pausas,et al. Fire reduces morphospace occupation in plant communities. , 2008, Ecology.
[3] J. Keeley. Seed germination and life history syndromes in the California chaparral , 1991, The Botanical Review.
[4] J. Plummer,et al. Seed germination ecology in southwestern Western Australia , 2008, The Botanical Review.
[5] J. Pausas,et al. Fire drives phylogenetic clustering in Mediterranean Basin woody plant communities , 2007 .
[6] J. Moreno,et al. Heat-shock and seed germination of a group of Mediterranean plant species growing in a burned area: An approach based on plant functional types , 2007 .
[7] J. Pausas,et al. Leaf traits and resprouting ability in the Mediterranean basin , 2006 .
[8] Mercedes Rivas,et al. Do high temperatures and smoke modify the germination response of Gramineae species , 2006 .
[9] A. Rodríguez,et al. Interannual variability in fire-induced germination responses of the characteristic Ericaceae of the NW Iberian Peninsula , 2006 .
[10] I. Hensen,et al. “Fire seeders” during early post-fire succession and their quantitative importance in south-eastern Spain , 2006 .
[11] Mercedes Rivas,et al. Influence of heat and smoke treatments on the germination of six leguminous shrubby species , 2006 .
[12] O. Reyes,et al. Seed germination of Quercus robur, q. pyrenaica and q. ilex and the effects of smoke, heat, ash and charcoal , 2006 .
[13] K. Dixon,et al. Post-fire germination: The effect of smoke on seeds of selected species from the central Mediterranean basin , 2006 .
[14] Juli G. Pausas,et al. Inferring differential evolutionary processes of plant persistence traits in Northern Hemisphere Mediterranean fire‐prone ecosystems , 2006 .
[15] V. Vallejo,et al. Ecological mechanisms involved in dormancy breakage in Ulex parviflorus seeds , 2006, Plant Ecology.
[16] A. Rodríguez,et al. Efecto del fuego (temperatura y humo) sobre la germinación de ericáceas características de brezales del NW de la península ibérica , 2005 .
[17] F. Bravo,et al. Efecto del fuego en la germinación de Cistus laurifolius , 2005 .
[18] A. Traveset,et al. EARLY EMERGENCE ENHANCES PLANT FITNESS: A PHYLOGENETICALLY CONTROLLED META‐ANALYSIS , 2005 .
[19] Juli G. Pausas,et al. Plant persistence traits in fire-prone ecosystems of the Mediterranean basin: a phylogenetic approach , 2005 .
[20] R. Crosti,et al. Vegetative and seedling regeneration after fire in planted Sardinian pinewood compared with that in other areas of Mediterranean‐type climate , 2004 .
[21] A. Shmida,et al. Canopy seed bank structure in relation to: fire, tree size and density , 2004, Plant Ecology.
[22] Juli G. Pausas,et al. Species richness and cover along a 60-year chronosequence in old-fields of southeastern Spain , 2004, Plant Ecology.
[23] Jon E. Keeley,et al. PLANT FUNCTIONAL TRAITS IN RELATION TO FIRE IN CROWN-FIRE ECOSYSTEMS , 2004 .
[24] J. Knuteson,et al. Concentration-time exposure index for modeling soil fumigation under various management scenarios. , 2004, Journal of environmental quality.
[25] J. Pardos,et al. Life histories of Mediterranean pines , 2004, Plant Ecology.
[26] Korbinian Strimmer,et al. APE: Analyses of Phylogenetics and Evolution in R language , 2004, Bioinform..
[27] J. Moreno,et al. Variability in seed germination at the interpopulation, intrapopulation and intraindividual levels of the shrub Erica australis in response to fire-related cues , 2003, Plant Ecology.
[28] L. Valbuena,et al. The effects of thermal scarification and seed storage on germination of four heathland species , 2002, Plant Ecology.
[29] J. Retana,et al. Role of heat tolerance and cone protection of seeds in the response of three pine species to wildfires , 1999, Plant Ecology.
[30] N. Enright,et al. Demography of a non-sprouting and resprouting Hakea species (Proteaceae) in fire-prone Eucalyptus woodlands of southeastern Australia in relation to stand age, drought and disease , 1999, Plant Ecology.
[31] The influence of heat and mechanical scarification on the germination capacity of Quercus pyrenaica seeds , 1998, New Forests.
[32] Pablo Ferrandis,et al. Influence of heat on seed germination of seven Mediterranean Leguminosae species , 1998, Plant Ecology.
[33] W. Bond,et al. Convergent seed germination in South African fynbos and Californian chaparral , 1997, Plant Ecology.
[34] L. Trabaud,et al. The influence of population, fire and time of dissemination on the germination of Betula pendula seeds , 1997, Plant Ecology.
[35] F. Pérez-García. Germination of Cistus ladanifer seeds in relation to parent material , 1997, Plant Ecology.
[36] M. Casal,et al. Effect of high temperatures and ash on germination of ten species from gorse shrubland , 1995, Vegetatio.
[37] L. Calvo,et al. Effect of high temperatures on seed germination of two woody Leguminosae , 1992, Vegetatio.
[38] J. Pausas,et al. Species richness and cover along a 60-year chronosequence in oldfields of southeastern Spain , 2004 .
[39] Juli G. Pausas,et al. Mediterranean vegetation dynamics: modelling problems and functional types , 2004, Plant Ecology.
[40] S. Rodríguez‐Echeverría,et al. Effect of Smoke, Charred Wood, and Nitrogenous Compounds on Seed Germination of Ten Species from Woodland in Central-Western Spain , 2004, Journal of Chemical Ecology.
[41] D. W. Goodall,et al. Mediterranean-type shrublands , 2004, Vegetatio.
[42] W. Oechel,et al. Fire intensity and herbivory effects on postfire resprouting of Adenostoma fasciculatum in southern California chaparral , 2004, Oecologia.
[43] J. Lundberg,et al. An update of the Angiosperm Phylogeny Group classification for the orders and families of flowering plants : APG II THE ANGIOSPERM PHYLOGENY GROUP * , 2003 .
[44] P. Reich,et al. A handbook of protocols for standardised and easy measurement of plant functional traits worldwide , 2003 .
[45] J. Moreno,et al. Resprouting of the Mediterranean‐type shrub Erica australis with modified lignotuber carbohydrate content , 2003 .
[46] Apgii. An update of the angiosperm phylogeny group classification for the orders and families of flowering plants : APGII , 2003 .
[47] F. Bravo,et al. Predicting the probability of seed germination in Pinus sylvestris L. and four competitor shrub species after fire , 2003 .
[48] J. Arroyo,et al. Reproductive ecology of Rhododendron ponticum (Ericaceae) in relict Mediterranean populations , 2002 .
[49] E. Paradis,et al. Analysis of comparative data using generalized estimating equations. , 2002, Journal of theoretical biology.
[50] Eric R. Ziegel,et al. Generalized Linear Models , 2002, Technometrics.
[51] J. Read,et al. Effects of heat and smoke on germination of soil-stored seed in a south-eastern Australian sand heathland , 2002 .
[52] A. Rodrigo,et al. Fire and species range in Mediterranean landscapes: an experimental comparison of seed and seedling performance among Centaurea taxa , 2002 .
[53] E. L. Calabuig,et al. Relationship between thermal shock and germination in five Mediterranean shrubs , 2002 .
[54] F. Pérez-García,et al. Effect of dry-heat, soaking in distilled water and gibberellic acid on the germination of Cistus clusii, C. monspeliensis and C. salvifolius seeds , 2002 .
[55] G. Ne’eman,et al. Pregermination heat shock and seedling growth of fire-following Fabaceae from four Mediterranean-climate regions , 2001 .
[56] F. Acosta,et al. Heat shock, mass-dependent germination, and seed yield as related components of fitness in Cistus ladanifer. , 2001, Environmental and experimental botany.
[57] K. Dixon,et al. Spatial and Developmental Variation in Seed Dormancy Characteristics in the Fire-responsive Species Anigozanthos manglesii(Haemodoraceae) from Western Australia , 2001 .
[58] O. Reyes,et al. El fuego como controlador de la germinación de Cytisus striatus y de C. Multiflorus y su aplicación agronómica , 2001 .
[59] P. Clarke,et al. Germination and dormancy of grassy woodland and forest species: effects of smoke, heat, darkness and cold , 2000 .
[60] A. Jäger,et al. Smoke as a germination cue , 2000 .
[61] C. Baskin,et al. Taxonomy, anatomy and evolution of physical dormancy in seeds , 2000 .
[62] J. Keeley,et al. Role of Fire in Regeneration from Seed , 2000 .
[63] G. Ne’eman,et al. Regulation of the germination of Rhus coriaria, a post‐fire pioneer, by heat, ash, pH, water potential and ethylene , 1999 .
[64] J. Keeley,et al. ROLE OF CHARRED WOOD, HEAT-SHOCK, AND LIGHT IN GERMINATION OF POSTFIRE PHRYGANA SPECIES FROM THE EASTERN MEDITERRANEAN BASIN , 1999 .
[65] P. Ferrandis,et al. Influence of heat on seed germination of nine woody Cistaceae species , 1999 .
[66] A. T. Romero-García,et al. Dormancy and germination in Cistus clusii (Cistaceae) : Effect of biotic and abiotic factors , 1999, Revue d'Écologie (La Terre et La Vie).
[67] J. Bakker,et al. Ecological correlates of seed persistence in soil in the north‐west European flora , 1998 .
[68] S. Davis,et al. Ecophysiological Processes and Demographic Patterns in the Structuring of California Chaparral , 1998 .
[69] L. Trabaud,et al. Végétation épigée et banque de semences du sol: leur contribution à la stabilité cyclique des pinèdes mixtes de Pinus halepensis et P. pinaster , 1997 .
[70] B. W. Wilgen,et al. Fire and Plants , 1995, Population and Community Biology Series.
[71] J. Obeso,et al. Resprouting after experimental fire application and seed germination in Erica vagans , 1996 .
[72] Raimon Salvador,et al. Germinación en el laboratorio de varias especies arbustivas mediterráneas: efecto de la temperatura , 1995 .
[73] P. L. Ortiz,et al. Germination ecology of Ceratonia siliqua L. (Caesalpiniaceae), a Mediterranean tree , 1995 .
[74] L. Trabaud,et al. Effects of high temperatures, ash and seed position in the inflorescence on the germination of three Spanish grasses , 1994 .
[75] F. Lloret,et al. Resprouting of Erica multiflora after experimental fire treatments , 1993 .
[76] C. Herrera,et al. Historical Effects and Sorting Processes as Explanations for Contemporary Ecological Patterns: Character Syndromes in Mediterranean Woody Plants , 1992, The American Naturalist.
[77] M. Fenner. Seeds: The Ecology of Regeneration in Plant Communities , 1992 .
[78] C. Ballini. Ecophysiologie de la germination des graines d'Ulex parviflorus Pourr. , 1992 .
[79] E. Luis,et al. Influence of Heat on Seed Germination of Cistus laurifolius and Cistus ladanifer , 1992 .
[80] Jacques Roy,et al. Germination and Population Dynamics of Cistus Species in Relation to Fire , 1992 .
[81] B. V. Wilgen,et al. Regeneration Strategies in Fynbos Plants and Their Influence on the Stability of Community Boundaries After Fire , 1992 .
[82] W. Oechel,et al. Fire Intensity Effects on Germination of Shrubs and Herbs in Southern California Chaparral , 1991 .
[83] F. Mesléard,et al. Germination and seedling dynamics of Arbutus unedo and Erica arbórea on Corsica , 1991 .
[84] V. T. Parker,et al. Seed bank survival and dynamics in sprouting and nonsprouting Arctostaphylos species. , 1990 .
[85] B. F. Santos,et al. Influencia de la temperatura sobre la germinación de semillas de "Cytisus multiflorus" (L'Her) Sweet y "Cytisus oromediterraneus" Riv. Mar , 1990 .
[86] J. Pita,et al. Some aspects of seed germination in four species of Cistus L. , 1990 .
[87] B. Lamont,et al. Seed banks, fire season, safe sites and seedling recruitment in five co-occurring Banksia species , 1989 .
[88] L. Trabaub,et al. Réponses des semences de Rosmarinus officinalis à différents traitements simulant une action de feu , 1989 .
[89] L. Trabaud,et al. Heat Requirements for Seed Germination of Three Cistus Species in the Garrigue of Southern France , 1989 .
[90] K. Georghiou,et al. Ecophysiology of fire‐stimulated seed germination in Cistus incanus ssp. creticus (L.) Hey wood and C. salvifolius L. , 1988 .
[91] M. Westoby,et al. Seedling Recruitment Strategies in Obligate-Seeding and Resprouting Banksia Shrubs. , 1987, Ecology.
[92] L. Trabaud,et al. Recolonisation après incendie chez Thymus vulgaris (L.): résistance des graines aux températures élevées , 1987 .
[93] Andreas Y. Troumbis,et al. Comparison of reproductive biological attributes of two Cistus species , 1986 .
[94] J. Roy,et al. Light quality as the environmental trigger for the germination of the fire-promoted species Sarcopoterium spinosum L , 1985 .
[95] M. Willson,et al. Plant reproductive ecology , 1983 .
[96] L. G. Nickell. Germination and Dormancy , 1982 .
[97] C. Bulard,et al. Ecophysiologie de la germination de Cistus albidus L. et Cistus monspeliensis L , 1981 .
[98] J. Keeley,et al. Reproduction of Chaparral Shrubs After Fire: A Comparison of Sprouting and Seeding Strategies , 1978 .
[99] A. Fitter,et al. Flora Europaea Vol. 4, edited by T. G. Tutin, V. H. Heywood, N. A. Burges, D. M. Moore, D. H. Valentine, S. M. Walters, and D. A. Webb. Cambridge University Press, £25. , 1977, Oryx.