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Genetic diversity of Picea likiangensis natural population at different altitudes revealed by EST-SSR markers

glacialholocene transition in South Chile. Science 290: 325-328. BIALOZYT, R., B. ZIEGENHAGEN and R. J. PETIT (2006): Contrasting effects of long distance seed dispersal on genetic diversity during range expansion. J Evol Biol 19: 12-20. BROOKFIELD, J. F. Y. (1996): A simple new method for estimating null allele frequency from heterozygote deficiency. Mol Ecol 5: 453-455. CHEN, X. Y., X. X. FAN and X. S. HU (2008): Roles of seed and pollen dispersal in natural regeneration of Castanopsis fargesii (Fagaceae): implications for

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Genetic Diversity in Domestic and Introduced Wheats

, pp. 39-43. FU, Y.B. - PETERSON, G.W. - GAO, J.K.Y.L. - JIA, J. - RICHARDS, K.W. 2006. Impact of plant breeding on genetic diversity of the Canadian hard red spring wheat germplasm as revealed by EST-derived SSr markers. In Theoretical and Applied Genetics , vol. 112 , pp. 1239-1247. DOI: 10.1007/s00122-006-0225-2. FUJITA, Y. - FUKUOKA, H. - YANO, H. 2009. Identification of wheat cultivars using EST-SSR markers. In Breeding Science , vol. 59 , pp. 159-167. DOI: 10.1270/jsbbs.59.159. GADALETA, A. - GIANCASPRO, A

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Preliminary studies on genetic diversity of ectomycorrhizal fungus Suillus bovinus in Lithuania

.-A., Martin F., 1999: High genetic diversity in a population of the ectomycorrhizal basidiomycete Laccaria amethystina in a 150-year-old beech forest. - Molecular Ecology, 8: 2003-2013 Groenberg H., Paulin L., Sen R., 2003: ITS probe development for specific detection of Rhizoctonia spp. and Suillus bovinus based on Southern blot and liquid hybridization-fragment length polymorphism. - Mycological Research, 107: 428-438. Halling R.E., Osmu nds on T.W., Neves M.-A., 2008: Pacific boletes: implications for biogeographic relationships

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Gradient Of Genetic Diversity Of Erigeron Annuus In The Part Of Invasive European Range

REFERENCES A usterlitz F., J ung -M iller B., G odelle B., G ouyon P.H., 1997: Evolution of coalescence times, genetic diversity and structure during colonization. – Theoretical Population Biology, 51: 148–164. B aker S.A., D yer R.J., 2011: Invasion genetics of Microstegium vimineum (Poaceae) within the James River Basin of Virginia, USA. – Conservation Genetics, 12: 793–803. B arrett S.C., C olautti R.I., E ckert C.G., 2008: Plant reproductive systems and evolution during biological invasion. – Molecular Ecology, 17: 373

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Genetic diversity of Potamogeton pectinatus L. in Iran as revealed by ISSR markers

, 230–232. Feinbrun-Dothan, N., 1986: Potamogetonaceae. In: Zohary, M. (ed.), Flora Palaestina. Jerusalem. 4, 6–12. Gawel, N. J., Jarret, R. L., 1991: A modified CTAB extraction procedure for Musa and Ipomoea . Plant Molecular Biology Reporter 9, 262–266. Green, A. J., Figuerola, J., Sanchez, M. L., 2002: Implications of waterbird ecology for the dispersal of aquatic organisms. Acta Oecologica 23, 177–189. Han, Q., Wang, G., Li, W., Liu, F., 2014: Genetic diversity of Potamogeton pectinatus L. in relation to species diversity in a pair of

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Genetic Diversity of Perennial Ryegrass Wild Ecotypes Based on Agro-Biological Traits

the genus Lolium . Genet. Resour. Crop Ev. , 47 , 247-255. Bolaric, S., Barth, S., Melchinger, A. E., Posselt, U. K. (2005). Molecular genetic diversity within and among German ecotypes in comparison to European perennial ryegrass cultivars. Plant Breed. , 124 , 257-262. Ghariani, S., Trifi-Farah, N., Chakroun, M., Marghali, S., Marrakchi, M. (2003). Genetic diversity in Tunisian perennial ryegrass revealed by ISSR markers. Genet. Resour. Crop Ev ., 50 (8), 809-815. Gunter, L. E., Tuskan, G. A., Wullschleger, S

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Impact of forest management on genetic diversity of Quercus petraea populations: a case study from the Křivoklátsko Protected Landscape Area (Czech Republic)

Research Programme Molecular Tools for Biodiversity. Muir G., Lowe A. J., Fleming C. C. & Vogl J. 2004. High nuclear genetic diversity, high levels of outcrossing and low differentiation among remnant populations of Quercus petraea at the margin of its range in Ireland. Ann. Bot. 93: 691-697. Nei M. 1978. Estimation of average heterozygosity and genetic distance from a small numberof individuals

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Genetic Diversity of an Australian Santalum album Collection – Implications For Tree Improvement Potential

References ALDRICH, P. R. and J. DOEBLEY (1992): Restriction fragment variation in the nuclear and chloroplast genomes of cultivated and wild Sorghum bicolor: Theor. Appl. Genet. 85: 293-302. ANONYMOUS (2003): Geology of Timor Leste. (United Nations Economic and Social Commission for Asia and the Pacific (UNESCAP) Bangkok) AUSTERLITZ, F., S. MARIETTE, N. MACHON, P.-H. GOUYON and B. GODELLE (2000): Effects of colonization processes on genetic diversity

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Study of the genetic diversity of Korean, Chinese and Japanese landraces of barley (Hordeum vulgare L.) using microsatellites

in soybean. Theor. Appl. Genetics 95: 723-733. Fregeau C. J. & Fourney R. N. 1993. DNA typing with fluorescently tagged short tandem repeats: a sensitive and accurate approach to human identification. BioTechn. 15: 100-119. Harlan J. R. 1979. On the origin of barley, Hordeum vulgare (Graminea-triticinae). In: N. W. Simmonds (ed.). Evolution of Crop Plants, pp. 93-98. Longman Group, London. Huang X. Q., Borner A., Roder M. S. & Ganal M. W. 2002. Assessing genetic diversity of wheat

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Genetic diversity and differentiation of Chilean plantations of Pinus radiata D. Don using microsatellite DNA markers

Conservation, edited by C. M. SCHONEWALD-COX, S. M. CHAMBERS, B. MACBRYDE and L. THOMAS. Benjamin-Cummings, Menlo Park, California, USA. GAPARE, W. J., S. N. AITKEN and C. E. RITLAND (2005): Genetic diversity of core and peripheral Sitka spruce (Picea sitchensis (Bong.) Carr) populations: implications for conservation of widespread species. Biol Conser. 123: 113-123. GAPARE, W. J., B. S. BALTUNIS, M. IVKOVIC´, C. B. LOW, P. JEFFERSON and H. X. WU (2011): Performance differences among ex-situ native-provenance collections of Pinus radiata D

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