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Original Articles

Genetic diversity assessment by random amplified polymorphic DNA of oaks: 3. Quercus calliprinos Webb. in Israel and Jordan

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Pages 137-148 | Published online: 14 Mar 2013

References

  • Alon, G., Kadmon, R. 1996. Effect of successional stages on the establishment of Quercus calliprinos in an East Mediterranean maquis. Isr. J. Plant Sci.44: 335-345.
  • Avishai, M. 1967. A taxonomical revision of the oaks of the Middle East. M.Sc. thesis, Hebrew Univ., Jerusalem, 134 pp. (in Hebrew, English summary).
  • Azzena, M., Carta, B., Manchinu, M., Cadau, S. 2003. First investigation about evaluation and potential of hybrids of Quercus suber and Quercus ilex.Monti-e-Boschi54: 19-23.
  • Balaguer, L., Martinez-Ferri, E., Valladares, F., Perez-Corona, M.E., Baquedano, F.J., Castillo, F.J., Manrique, E. 2001. Population divergence in the plasticity of response of Quercus coccifera to light environment. Funct. Ecol.15: 124-135.
  • Barbero, M., Loisel, R., Quezel, P. 1992. Biogeography, ecology and history of Quercus ilex ecosystems in Mediterranean region. Vegetatio 99-100: 14-19.
  • Belahbib, N., Pemonge, M.H., Ouassou, A., Sbay, H., Kremer, A., Petit, R.J. 2001. Frequent cytoplasmic exchanges between oak species that are not closely related: Quercus suber and Q. ilex in Morocco. Molecular-Ecology10: 2003-2012
  • Bellingham, J.P., Sparrow, A.D. 2000. Resprouting as a life history strategy in woody plant communities. Oikos89: 409-416.
  • Bond, W.J., Midgley, J.J. 2003. The evolutionary ecology of sprouting in woody plants. Int. J. Plant. Sci.164: 103-114.
  • Cavalli-Sforza, L.L., Edwards, A.W.F. 1967. Phylogenetic analysis: models and estimation procedures. Evolution21: 550-570.
  • Colombo, P-M., Lorenzzoni, F-C., Grigoletto, F. 1983. Pollen grain morphology supports the taxonomical discrimination of Mediterranean oaks (Quercus, Fagaceae). Plant Syst. Evol.141: 273-284.
  • Crow, J.F., Kimura, M. 1964. The number of alleles that can be maintained in a finite population. Genetics49: 725-738
  • Dan, Y., Raz, Z. 1970. The soil association map of Israel (Scale 1: 250.000). Ministry of Agriculture, Department of Scientific publications, Bet Dagan, Israel. 147 pp. and two maps (in Hebrew, English summary).
  • Doyle, J.J., Doyle, J.H. 1990. Isolation of plant DNA from fresh tissue. Focus12: 145-151.
  • Elena-Rossello, J.A., Cabrera, E. 1996. Isoenzyme variation in natural populations of Cork oak (Q. suber L.). Silvae Genet.45: 229-235.
  • Ellstrand, N.C., Elam, D.R. 1993. Population genetic consequences of small population size: implications for plant conservation. Annu. Rev. Ecol. Syst.24: 217-242.
  • Felsenstein, J. 1993. PHYLIP (Phylogeny Inference Package) Vers. 3.5c. Department of Genetics, University of Washington, Seattle, WA. Focus12: 13-15.
  • Frumkin, A., Carmi, I., Gopher, A., Ford, D.C., Schwarcz, H.P., Tsuk, T. 1999. A Holocene millennial-scale climatic cycle from a speleothem in Nahal Qanah cave, Israel. The Holocene9: 677-682.
  • Furnier, G.R., Adams, W.T. 1986. Geographic patterns of allozyme variation in Jeffery pine. Am. J. Bot.73: 1009-1015.
  • Garcia, M., Retana, J. 2004. Effect of site quality and shading on sprouting patterns of holm oak coppices. Forest Ecol. Manage.188: 39-49.
  • Gentile, S., Gastaldo, P. 1976. Quercus calliprinos Webb. and Quercus coccifera L.: researches on the leaf anatomy and taxonomical and chronological considerations. Giorn. Bot. Ital.110: 89-115.
  • Geological Survey of Israel, 1998. Ministry of National Infrastructure. Geological map of Israel1: 200,000.
  • Gitzendanner, M.A., Soltis, P.M. 2000. Patterns of genetic variation in rare and widespread plant congeners. Am. J. Bot.87: 783-792.
  • Gömöry, D., Yakovlev, I., Zhelev, P., Jedináková, J., Paule, L. 2001. Genetic differentiation of oak populations within the Quercus robur / Quercus petraea complex in Central and Eastern Europe. Heredity86: 557-563.
  • Gregorius, H-R. 1980. The probability of losing an allele when diploid genotypes are sampled. Biometrics36: 632-652.
  • Guries, R.P., Ledig, F.T. 1981. Genetic structure of populations and differentiation in forest trees. In: Conkle, M.T., ed. Proceedings of the Symposium on Isozymes of North American Forest Trees and Forest Insects. USDA Forest Serv. Gen. Tech. Rep. PSW-48, pp. 42-48.
  • Hamrick, J.L. 2004. Response trees to global environmental changes. Forest Ecol. Manage.197: 323-335
  • Hamrick, J.L., Godt, M.J.W. 1989. Allozyme diversity in plant species. In: Brown, A.H.D., Clegg, M.T., Kahler, A.L., Weir, B.S., eds. Plant population genetics, breeding and genetic resources. Sinauer Associates, Sunderland, MA, pp. 43-63.
  • Hamrick, J.L., Godt, M.J.W., Murawski, D.A., Loveless, M.D. 1991. Correlations between species traits and allozyme diversity: implications for conservation biology. In: Falk, D.A., Holsinger, K.E., eds. Genetics and conservation of rare plants. Oxford University Press, New York, pp. 75-86.
  • Harif, I. 1974. First year development of leading species of plant communities in the Judean Hills and its role in succession. Ph.D. thesis, Hebrew Univ., Jerusalem, 88 pp. (in Hebrew, English summary).
  • Hokanson, S.C., Isebrands, J.G., Jensen, R.J., Hancock, J.F. 1993. Isozyme variation in oaks of the Apostle Islands in Wisconsin: genetic structure and levels of inbreeding in Quercus rubra and Q. ellipsoidalis (Fagaceae). Am. J. Bot.80: 1349-1357.
  • Horowitz, A. 1979. The Quaternary of Israel. Academic Press, New York, 394 pp.
  • Jiménez, P., Lopez de Heredia, U., Collad, C., Lorenzo, Z., Gil, L. 2004. High variability of chloroplast DNA in three Mediterranean evergreen oaks indicates complex evolutionary history. Heredity93: 510-515.
  • Kadosh, D., Sivan, D., Kutiel, H., Weinstein-Evron, M. 2004. A late quaternary paleoenvironmental sequence from Dor, Carmel coastal plain, Israel. Palynology28: 143-157.
  • Korol, L., Shklar, G., Schiller, G. 2001. Site influences on the genetic variation and structure of Pinus halepensis Mill. provenances. Forest Genet.8: 295-306
  • Le Corre, V., Roussel, G., Zanetto, A., Kremer, A. 1998. Geographical structure of gene diversity in Quercus petraea (Matt.) Liebl. III. Patterns of variation identified by geostatistical analyses. Heredity80: 464-473.
  • Lewontin, R.C. 1972. The apportionments of human diversity. Evol. Biol.6: 381-398.
  • Linhart, Y.B., Mitton, J.B., Sturgeon, K.B., Davis, M.L. 1981. Genetic variation in space and time in a population of ponderosa pine. Heredity46: 407-426.
  • Liphschitz, N., Biger, G. 1990. Ancient dominance of the Quercus calliprinos—Pistacia palaestina association in Mediterranean Israel. J. Veg. Sci.1: 67-70.
  • Mayes, S.G., McGinley, M.A., Werth, C.R. 1998. Clonal population structure and genetic variation in sand-shinnery oak, Quercus havardii (Fagaceae). Am. J. Bot.85: 1609-1617.
  • McDermott, J.M., McDonald, B.A. 1993. Gene flow in plant pathosystems. Annu. Rev. Phytopathol.31: 353-373
  • Michaud, H., Lumaret, R., Romane, F. 1992. Variastion in the genetic structure and reproduction biology of Holm oak populations. Vegetatio 99-100: 107-113.
  • Michaud, H., Toumi, L., Lumaret, R., Li, T.X., Romane, F., Di Giusto, F. 1995. Effect of geographical discontinuity on genetic variation in Quercus ilex L. (holm oak). Evidence from enzyme polymorphism. Heredity74: 590-606
  • Montalvo, A.M., Conard, S.G., Conkle, M.T., Hodgskiss, P.D. 1997. Population structure, genetic diversity, and clone formation in Quercus chrysolepis (Fagaceae). Am. J. Bot.84: 1553-1564.
  • Mueller-Starck, G. 1995. Genetic variation under extreme environmental conditions. In: Baradat, Ph., Adams, W.T., Müller-Starck, G., eds. Population genetics and genetic conservation of forest trees. SPB Academic Publishers, Amsterdam, pp. 201-210.
  • Nave, Z. 1985. The climax of the Mediterranean maquis—Imagination or reality. In: The Mediterranean maquis and forests in Israel. ROTEM—Bulletin of the Israel Plant Information Centre18: 14-33.
  • Nei, M. 1973. Analysis of gene diversity in subdivided populations. Proc. Natl. Acad. Sci. U.S.A.70: 3321-3323.
  • Nei, M. 1978. Molecular evolutionary genetics. Columbia University Press, New York, pp. 187-192.
  • Nei, M. 1987. Estimation of average heterozygosity and genetic distance from a small number of individuals. Genetics89: 283-290.
  • Nevo, A. 1998. Molecular evolution and ecological stress at global, regional and local scales: the Israeli perspective. J. Exp. Zool.282: 95-119.
  • Nevo, E., Fragman, O., Dafni, A., Beiles, A. 1999. Biodiversity and interslope divergence of vascular plants caused by microclimatic differences at "Evolution Canyon", Lower Nahal Oren, Mount Carmel, Israel. Isr. J. Plant Sci.47: 49-59.
  • Oliveira, P., Custodio, A.C., Branco, C., Reforco, I., Rodrigues, F., Varela, M.C., Meierrose, C. 2003. Hybrids between cork oak and holm oak: isoenzyme analysis. Forest Genet.10: 283-297.
  • Oppenheimer, H.R. 1940. Etudes sur le probleme de la reconstitution des chenaies en Palestine. Palest. J. Bot., Rehovot3: 105-143.
  • Paffetti, D., Vettori, C., Giannini, R. 2001. Relict populations of Quercus calliprinos Webb. on Sardinia island identified by chloroplast DNA sequences. Forest Genet.8: 1-11.
  • Palamarev, E. 1989. Paleobotanical evidence of the Tertiary history and origin of the Mediterranean sclerophyll dendroflora. Plant Syst. Evol.162: 93-107.
  • Pervolotsky, A., Haimov, Y. 1992. The effect of thinning and goat browsing on the structure and development of Mediterranean woodland in Israel. Forest Ecol. Manage.49: 61-74.
  • Safriel, U.N., Volis, S., Kark, S. 1994. Core and peripheral populations and global climate change. Isr. J. Plant Sci.42: 331-345.
  • Sambrook, J., Fritsch, E.F., Maniatis, T. 1989. Molecular cloning. A laboratory manual. 2nd ed. Cold Spring Harbor Laboratory Press, Cold Spring Harbor, NY.
  • Samuel, R., Pinsker, W., Ehrendorfer, F. 1995. Electrophoretic analysis of genetic variation within and between populations of Quercus cerris, Q. pubescens, Q. petraea and Q. robr (Fagaceae) from eastern Austria. Bot. Acta108: 290-299.
  • Schiller, G., Shklar, G., Korol, L. 2003. Genetic diversity assessment by random amplified polymorphic DNA of oaks in Israel. 1. Tabor oak (Quercus aegilops L. ssp. ithaburensis [Decne] Boiss.). Isr. J. Plant Sci.51: 1-10.
  • Schiller, G., Shklar, G., Korol, L. 2004a. Genetic diversity assessment by random amplified polymorphic DNA of oaks in Israel. 2. Quercus boissieri Reut. Isr. J. Plant Sci.52: 315-322.
  • Schiller, G., Korol, L., Shklar, G. 2004b. Habitat effects on adaptive genetic variation in Pinus halepensis Mill. provenances. Forest Genet.11: 325-335.
  • Schneider, S., Roessli, D., Excoffier, I. 2000. ARLEQUIN, ver. 2.000: A software for population genetic data analysis. Genetics and Biometry Laboratory, University of Geneva, Switzerland.
  • Schwab, M.J., Neumann, F., Litt, T., Negendank, J.F.W., Stein, M. 2004. Holocene palaeoecology of the Golan Heights (Near East: investigation of lacustrine sediments from Birkat Ram Crater Lake). Quaternary Sci. Rev.23: 1723-1731.
  • Shamir, T. 1985. Dynamics of oak maquis (Quercus calliprinos) in the Jerusalem Mountains: vegetative growth, regeneration and acorn production. ROTEM—Bulletin of the Israel Plant Information Centre18: 93-112.
  • Shannon, C.E., Weaver, W. 1949. The mathematical theory of communication. University of Illinois Press, Urbana.
  • Slatkin, M. 1995. A measure of population subdivision based on microsatellite allele frequencies. Genetics139: 457-462.
  • Soto, A., Lorenzo, Z., Gil, L. 2003. Nuclear microsatellite markers for the identification of Quercus ilex L. and Q. suber L. hybrids. Silvae Genet.52: 63-66
  • Sternberg, M., Shoshany, M. 2001. Aboveground biomass allocation and water content relationships in Mediterranean trees and shrubs at two climatological regions in Israel. Plant Ecol.157: 171-179.
  • Toumi, L., Lumaret, R. 1998. Allozyme variation in cork oak (Quercus suber L.): the role of phylogeography and genetic introgression by other Mediterranean oak species and human activities. Theor. Appl. Genet.97: 647-656.
  • Tsiouvaras, C. 1987. Ecology and management of Kermes oak (Quercus coccifera L.) shrubland in Greece: a review. J. Range Manage.40: 542-546.
  • Valladares, F., Balaguer, L., Martinez-Ferri, E., Perez-Corona, E., Manrique, E. 2002. Plasticity, instability and canalization: is the phenotypic variation in seedlings of sclerophyll oaks consistant with the environment unpredictability of Mediterranean ecosystems. New Phytol.156: 457-467.
  • Waisel, Y., Friedman, J. 1960. Germination and seedling survival of Quercus calliprinos Webb. La-Yaaran 3-4: 10-13 (in Hebrew).
  • Weinstein, A. 1984. Acorn production and seedling crop in Quercus calliprinos Webb. La-Yaaran34: 1-3 (in Hebrew).
  • Yeh, F.C., Yang, R-C., Boyle, T.B.J., Ye, Z-H., Mao, J.X. 1997. POPGEN Ver. 1.32. The user-friendly software for population genetic analysis. Molecular Biology and Bio-technology Center, University of Alberta, Canada.
  • Zanetto, A., Kremer, A. 1995. Geographical structure of gene diversity in Quercus petraea (Matt.) Liebl. I. Monolocus patterns of variation. Heredity75: 506-517.
  • Zohary, M. 1960. The maquis of Quercus calliprinos in Israel and Jordan. Bull. Res. Counc. Isr.9D: 51-72.
  • Zohary, M. 1961. On the oak species of the Middle East. Bull. Res. Counc. Isr.9D: 161-186.
  • Zohary, M. 1962. Plant life of Palestine, Israel and Jordan. Ronald Press, New York, 262 pp.
  • Zohary, M. 1966. Flora Palaestina. The Israel Academy of Sciences and Humanities, Jerusalem.
  • Zohary, M. 1973. Geobotanical foundation of the Middle East. Gustav Fischer Verlag, Stuttgart, 738 pp.

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