Free Access
Issue
Ann. For. Sci.
Volume 58, Number 4, May-June 2001
Page(s) 439 - 447
DOI https://doi.org/10.1051/forest:2001137

References

1
Barbero M., Bonin G., Loisel R., Miglioretti F., Quezel P., Index of exogenous factors on the regeneration of Pinus halepensis after fires, Ecologia Mediterranea Tome XIII (4), 1987.
2
Beaufait W.R., Some effects of high temperatures on the cones and seeds of jack pine, For. Sci. 6 (1960) 194-199.
3
Bell D.T., Interaction of fire, temperature and light in the germination response of 16 species from the Eucalyptus marginata forest of South-Western Western Australia, Aust. J. Bot. 42 (1994) 501-509.
4
Bell D.T., Plummer J.A., Taylor S.K., Seed germination ecology in South-Western Western Australia, Bot. Rev. 59 (1993) 24-73.
5
Burrows D.M., Burrows W.H., Seed production and litter fall in some eucalypti communities in Central Queensland, Aust. J. Bot. 40 (1992) 389-403.
6
Calvo L., Herrero B., Bravo F., The influence of fire on the seed bank in the soil of a Quercus faginea forest (NW Spain), Ann. For. Sci. 56 (1999) 249-258.
7
Catalán G., Semillas de árboles y arbustos forestales, ICONA Monografía 17.
8
Cayford J.H. (1966) Some aspects of Jack Pine regeneration on prescribed burned areas, Bimonthly Res. Notes 22 (1977) 7.
9
Chandler C., Cheney P., Thomas P., Trabaud L., Willians D., Fire in Forestry, Vol. I, Wiley Interscience Public, New York, 1983.
10
Chrosciewicz Z., Jack pine regeneration following postcut burning under seed trees in Central Saskatchewan, The Forestry Chronicle (1988) 315-319.
11
Côme D., Les obstacles à la germination, Masson, Paris, 1970.
12
Dale J.A., Hawkins P.J., Phenological studies of spotted gum in southern inland Queensland, Old Department of Forestry, Technical Paper No. 35, 1983.
13
Davies S.J., Myerscough P.J., Post-fire demography of the wet-mallee Eucalyptus luehmanniana F. Muell. (Myrtaceae), Aust. J. Bot. 39 (1991) 459-466.
14
Eron Z., Ecological factors restricting the regeneration of Pinus brutia in Turkey, Ecologia Mediterranea XIII (1987) 57-67.
15
Escudero A., Barrero S., Pita J.M., Effects of high temperatures and ash on seed germination of two Iberian pines (Pinus nigra spp salzmannii, P. sylvestris var. iberica), Ann. Sci. For. 54 (1997) 553-562.
16
Escudero A., Sanz M.V., Pita J.M., Pérez-García F., Probability of germination after heat treatment of native Spanish pines, Ann. For. Sci. 56 (1999) 511-520.
17
Fenner M., A comparison of the abilities of colonisers and closed turf species to establish from seed in artificial swards, J. Ecol. 72 (1978) 369-387.
18
Fenner M., Relationships between seed weight, ash content and seedling growth in twenty-four species of Compositae, New Phytol. 95 (1983) 697-706.
19
Gill A.M., Adaptive responses of Australian vascular plant species to fires, in: Gill A.M., Groves R.H., Noble I.R. (Eds.), Fire and the Australian biota, Australian Academy of Science, Camberra, 1981.
20
Gill A.M., Brooker I.H., Moore P.H.R., Seed weights and numbers as a function of fruit size and subgenus in some Eucalyptus species from South-Western Australia, Aust. J. Bot. 40 (1992) 103-111.
21
González-Rabanal F., Casal M., Effect of high temperatures and ash on germination of ten species from gorse shrubland, Vegetatio 116 (1995) 123-131.
22
González-Rabanal F., Casal M., Trabaud L., Effects of high temperatures, ash and seed position in the inflorescence on the germination of three Spanish grasses, J. Veget. Sci. 5 (1994) 289-284.
23
Gross K.L., Effects of size and growth form on seedling establishment of six monocarpic perennial plants, J. Ecol. 72 (1984) 369-387.
24
Harper J.L., Population biology of plants, Academic Press, London, 1977.
25
Houle G., Filion L., Interannual variations in the seed production of Pinus banksiana at the limit of the species distribution in Northern Québec, Canada, Am. J. Bot. 80 (1993) 1242-1250.
26
Judd T.S., Seed survival in small myrtaceous capsules subjected to experimental heating, Oecologia 93 (1993) 576-581.
27
Keeley J.E., Seed production, seed populations in soil, and seedling production after fire for two congeneric pairs of sprouting and non-sprouting chaparral shrubs, Ecology 58 (1977) 820-829.
28
Knapp A.K., Anderson J.E., Effect of heat on germination of seeds from serotinous Lodgepole Pine cones, Am. Midl. Nat. 104 (1980) 370-372.
29
López M., Humara J.M., Casares A., Majada J., The effect of temperature and water stress on laboratory germination of Eucalyptus globulus Labill. seeds of different sizes, Ann. For. Sci. 57 (2000) 245-250.
30
Lotan J.E., The role of cone serotiny on Lodgepole Pine Forests. Proceedings Symp Mgmt Lodgepole Pine Ecosystems, Washington State Univ. Coop. Exten. Serv. Publ., 1975, pp. 471-495.
31
Martínez-Sánchez J.J., Marín A., Herranz J.M., Ferrandis P., De las Heras J., Effects of high temperatures on germination of Pinus halepensis Mill. and pinaster Aiton subsp. pinaster seeds in Southeast Spain, Vegetatio 116 (1995) 69-72.
32
Neéman G., Meir I., Neéman R., The effect of ash on early growth of shoots and roots of Pinus, Cistus and annuals, Seed Sci. Technol. 21 (1993) 339-349.
33
O'Dowd D.J., Gill A.M., Predator stations and site alteration following fire: mass reproduction of alpine ash (Eucalyptus delegatensis) in South-Eastern Australia, Ecology 65 (1984) 1052-1066.
34
Reich P.B., Oleksyn J., Tjoelker M.G., Seed mass effects on germination and growth of diverse European Scots pine populations, Can. J. For. Res. 24 (1994) 306-320.
35
Reyes O., Casal M., Germinación de abedul y eucalipto bajo los efectos de incendio forestal, Studia Oecologica X-XI (1994) 371-377.
36
Reyes O., Casal M., Germination behaviour of three species of the genus Pinus in relation to high temperatures suffered during forest fires, Ann. Sci. For. 52 (1995) 385-392.
37
Reyes O., Casal M., Germination of Pinus pinaster, P. radiata and Eucalyptus globulus in relation to the amount of ash produced in forest fires, Ann. Sci. For. 55 (1998) 837-845.
38
Reyes O., Casal M., Trabaud L., The influence of population, fire and time of dissemination on the germination of Betula pendula seeds, Plant Ecol. 133 (1997) 201-208.
39
Schopmeyer C.S., Seeds of woody plants in the United States, Agriculture Handbook No. 450, Forest service USDA, Washington, 1974.
40
Sokal R.R., Rohlf F.J., Biometría. Principios y métodos estadísticos en la investigación biológica, H. Blume, Madrid, 1979.
41
Tárrega R., Calvo L., Trabaud L., Effect of high temperatures on seed germination of two woody Leguminosae, Vegetatio 102 (1992) 139-147.
42
Thanos C.A., Christodoulakis D., Yannistsaros A., Early regeneration of Pinus brutia forest ecosystems of Samos island (Grece), Acta Oecologica 10 (1989) 79-94.
43
Trabaud L., Casal M., Réponses des semences de Rosmarinus officinalis à différents traitements simulant une action de feu, Acta Oecol.-Oecol. Appl. 10 (1989) 355-366
44
Trabaud L., Oustric J., Influence du feu sur la germination des semences de quatre espèces ligneuses méditerranéennes à reproduction sexuée obligatoire, Seed Sci. Technol. 17 (1989) 589-599.
45
Valbuena L., Tárrega R., Luis E., Influence of heat on seed germination of Cistus laurifolius and Cistus ladanifer, International J. Wildland Fire 2 (1992) 15-20.
46
Wellington A.B., Noble I.R., Seed dynamics and factors limiting recruitment of the mallee Eucalyptus incrassata in semi-arid, South-Eastern Australia, J. Ecol. 73 (1985) 657-666.
47
West M.M., Lott J.N.A., Studies of mature seeds of eleven Pinus species differing in seed weight. I. Element concentrations in embryos and female gametophytes, Can. J. Bot. 71 (1992) 570-576.

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