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Slovenya Fındıklarında Genetik Çeşitlilik

Year 2016, Volume: 45 Issue: (Özel Sayı 1) 7. Ulusal Bahçe Bitkileri Kongresi, 194 - 199, 31.03.2016

Abstract

Slovenya kendi Avrupa fındığı Corylus avellana L. genotiplerini ve yabani tiplerini bulunduran dünyadaki fındık üreticilerinden biridir. Slovenya fındık kaynaklarının moleküler genetik açısından gösterdiği çeşitlilik araştırılmalı ve bu fındık çeşitliliğinin potansiyelleri geliştirilmelidir. Bu amaçla, Slovenya’nın geniş coğrafik alanını temsil eden 57 Slovenya fındık tipi ve Slovenya dünya koleksiyonundan 45 fındık çeşidi, 11 seçici AFLP primer çifti ve 50 SSR primer çifti ile taranmıştır. Toplamda, 512 polimorfik SSR fragmenti ve 532 polimorfik AFLP fragmenti analiz edilmiştir. Slovenya fındık çeşitleri ve tipleri, AFLP verisinin hoc istatistiği ve Neigbor-joining algoritması (r=0.96) ile analizi sonucunda üç kümeye ayrılmıştır. Benzer olarak, SSR verisi (r=0.96) Neigbor-joining algoritması ile üç kümeye ayrılmıştır. SSR verileriyle 28 fındık tipi, AFLP verileriyle 33 fındık tipi Slovenya fındık çekirdek koleksiyonu için seçilmiştir. Seçilen çekirdek koleksiyon, en yüksek genetik çeşitliliği en az birey ile temsil etmektedir ve seçilen fındıklardan 18 tanesi her iki çekirdek koleksiyonunda ortak olarak bulunmaktadır. Slovenya fındık çeşitliliğinin çalışılması, ilgilenilen agronomik ve biyokimyasal özelliklerin genetik haritalanması ve tanımlanması için ilk adımdır.

References

  • Angiolillo, A., Mencuccini, M., Baldoni, L., 1999. Olive genetic diversity assessed using amplified fragment length polymorphism. Theor. Appl. Genet. 98:411-421.
  • Bacchetta, L., Avanzato, D., Giovanni, B. Di., Botta, R., Boccacci, P., Drogoudi, P., 2014. The Reorganization of European Hazelnut Genetic Resources in the Safenut (Agri Gen Re ) Project, 67–74.
  • Bassil, N.V., Botta, R., Mehlenbacher, S.A., 2005. Additional microsatellite markers of the European hazelnut. Acta Hort. 686:105.
  • Bassil, N., Boccacci, P., Botta, R., Postman, J., Mehlenbacher, S., 2013. Nuclear and chloroplast microsatellite markers to assess genetic diversity and evolution in hazelnut species, hybrids and cultivars. Genetic Resources and Crop Evolution 60:543–568.
  • Boccacci, P., Akkak, A., Bassil, N.V., Mehlenbacher, S.A., Botta, R., 2005. Characterization and evaluation of microsatellite loci in European hazelnut (Corylus avellana L.) and their transferability to other Corylus species. Mol. Ecol. Notes 5:934–937.
  • Boccacci, P., Akkak, A., Botta, R., 2006. DNA typing and genetic relationship among European hazelnut (Corylus avellana L.) cultivars using microsatellite markers. Genome 49:598–611.
  • Boccacci, P., Akkak, A., Botta, R., 2006. DNA typing and genetic relations among European hazelnut (Corylus avellana L.) cultivars using microsatellite markers. Genome/National Research Council Canada=Genome/Conseil National de Recherches Canada 49:598–611.
  • Boccacci, P., Botta, R., Rovira, M. 2008. Genetic diversity of hazelnut (Corylus avellana L.) germplasm in northeastern Spain. Hort. Sci. 43:667-672.
  • Boccacci, P., Beltramo, C., Prando, M.S., Lembo, A., Sartor, C., Mehlenbacher, S.A, Botta, R., Marinoni, D.T., 2015. In silico mining, characterization and cross-species transferability of EST-SSR markers for European hazelnut (Corylus avellana L.). Molecular Breeding, 35:1-14.
  • Boccacci, P., Botta, R., 2009. Investigating the origin of hazelnut (Corylus avellana L.) cultivars using chloroplast microsatellites. Genet. Resour. Crop. Evol. 56:851–859.
  • Boccacci P, Botta, R., 2010. Microsatellite variability and genetic structure in hazelnut (Corylus avellana L.) cultivars from different growing regions. Sci. Hortic. 124:128–133.
  • Campa, A., Trabanco, N., Pérez-Vega, E., Rovira, M., Ferreira, J.J., 2011. Genetic relationship between cultivated and wild hazelnuts (Corylus avellana L.) collected in northern Spain. Plant Breeding 130:360–366.
  • Ferrari, M., Gori, M., Monnanni, R., Buiatti, M., Scarascia Mugnozza, G.T., De Pace, C., 2004. DNA fingerprinting of Corylus avellana L. accessions revealed by AFLP molecular markers. Acta Hortic. 686:125-134.
  • Fulton, T.M., Chunwongse, J., Tanksley, S.D., 1995. Microprep protocol for extraction of DNA from tomato and other herbaceous plants. Plant Molecular Biology Reporter 13:207-209. http://doi.org/10.1007/BF02670897
  • Galderisi, U., Cipollaro, M., Di Bernanrdo, G., De Masi, L., Galano, G., Cascino, A., 1999. Identification of hazelnut (Corylus avellana L.) cultivars by RAPD analysis. Plant Cell Rep. 18:652-655.
  • Gökirmak, T., Mehlenbacher, S.A., Bassil, N.V., 2009. Characterization of European hazelnut (Corylus avellana) cultivars using SSR markers. Genet. Resour. Crop. Evol. 56:147–172.
  • Gurcan, K., Mehlenbacher, S.A., Botta, R., Boccacci, P., 2010. Development, characterization, segregation, and mapping of microsatellite markers for European hazelnut (Corylus avellana L.) from enriched genomic libraries and usefulness in genetic diversity studies. Tree Genet. & Genomes 6:513–531.
  • Gurcan, K., Mehlenbacher, S.A., 2010. Development of microsatellite marker loci for European hazelnut (Corylus avellana L.) from ISSR fragments. Mol. Breeding 26:551–559.
  • Kafkas, S., Doğan, Y., Sabır, A., Turan, A., Seker, H., 2009. Genetic characterization of hazelnut (Corylus avellana L.) cultivars from Turkey using molecular markers. HortScience 44:1557–1561.
  • Kasapligil, B., 1964. A contribution to the histotaxonomy of Corylus (Betulaceae). Adansonia (NS) 4:43–90.
  • Kaya, H. B., Cetin, O., Kaya, H., Sahin, M., Sefer, F., Kahraman, A., Tanyolac, B., 2013. SNP discovery by illumina-based transcriptome sequencing of the olive and the genetic characterization of Turkish olive genotypes revealed by AFLP, SSR and SNP markers. PloS One 8. doi:10.1371/journal.pone.
  • Kim, K.W., Chung, H.K., Cho, G.T., Ma, K.H., Chandrabalan, D., Gwag, J.G., Kim, T.S., Cho, E.G., Park, Y.J., 2007. PowerCore: a program applying the advanced M strategy with a heuristic search for establishing allele mining sets. Bioinformatics 23:2155-2162.
  • Leinemann, L., Steiner, W., Hosius, B., Kuchma, O., Arenhövel, W., Fussi, B., Finkeldey, R., 2013. Genetic variation of chloroplast and nuclear markers in natural populations of hazelnut (Corylus avellana L.) in Germany. Plant Systematics and Evolution 299:369–378.
  • Martins, S., Simões, F., Mendonça, D., Matos, J., Silva, A.P., Carnide, V., 2013. Chloroplast SSR genetic diversity indicates a refuge for Corylus avellana in Northern Portugal. Genetic Resources and Crop Evolution 60:1289–1295.
  • Martins, S., Simões, F., Matos, J., Silva, A.P., Carnide, V., 2014. Genetic relationship among wild, landraces and cultivars of hazelnut (Corylus avellana) from Portugal revealed through ISSR and AFLP markers. Plant Systematics and Evolution 300:1035–1046.
  • Martins, S., Simões, F., Mendonça, D., Matos, J., Silva, A.P., Carnide, V., 2015. Western European wild and landraces hazelnuts evaluated by SSR markers. Plant Molecular Biology Reporter 1-9. doi: 10.1007/s11105015-0867-9.
  • Mehlenbacher, S.A., Brown, R.N., Nouhra, E.R., Gokirmak, T., Bassil, N.V., Kubisiak, T.L., 2006. A genetic linkage map for hazelnut (Corylus avellana L.) based on RAPD and SSR markers. Genome 49:122-133.
  • Mehlenbacher, S.A., 2009. Genetic resources for hazelnut: State of the art and future perspectives. Acta Hort. 845:33-37.
  • Miaja, M.L., Vallania, R., Me, C., Akkak, O., Nassi, O., Lepori, G., 2001. Varietal characterization in hazelnut by RAPD markers. Acta Hort. 556:247-250.
  • Nei, M., 1973. Analysis of gene diversity in subdivided populations. Proceedings of the National Academy of Sciences 70:3321-3323.
  • Perrier, X., Jacquemoud-Collet, J.P., 2006. Darwin software. Available at: http://darwin.cirad.fr/darwin.
  • Pritchard, J.K., Stephens, M., Donnelly, P., 2000. Inference of population structure using multilocus genotype data. Genetics 155:945959.
  • Sharma, A., Sharma, R., Machii, H., 2000. Assessment of genetic diversity in Morus germplasm collection using fluorescence based AFLP markers. Theor. Appl. Genet. 101: 1049-1055.
  • Slatnar, A., Mikulic Petkovsek, M., Stampar, F., Veberic, R., Solar, A., 2014. HPLC-MSn identification and quantification of phenolic compounds in hazelnut kernels, oil and bagasse pellets. Food Research International 64:783-789.
  • Solar, A., Stampar, F., 2009. Performance of hazelnut cultivars from Oregon in Northeastern Slovenia. Hort. Technology. 19:653-659.
  • Solar, A., Stampar, F., 2011. Characterization of selected hazelnut cultivars: phenology, growing and yielding capacity, market quality and nutraceutical value. Journal of the Science of Food and Agriculture 91:1205-1212.
  • Tanksley, S.D., McCouch, S.R., 1997. Seed banks and molecular maps: unlocking genetic potential from the wild. Science 277:10631066.
  • Vos, F., Hogers, R., Bleeker, M., Reijans, M., Van de Lee, T., Hornes, M., Frijters, A., Pot, J., Peleman, J., Kuiper, M., Zabeau, M., 1995. AFLP: a new concept for DNA fingerprinting. Nucl. Acids Res. 23:4407-4414.
  • Winfield, M.O., Arnold, G.M., Cooper, F., Le Ray, M., White, J., Karp, A., Edwards, K.J., 1998. A study of genetic diversity in Populus nigra subsp. betulifolia in the Upper Severn area of the UK using AFLP markers. Molecular Ecology 7:3–10.

Genetic Diversity in Slovenian Hazelnuts

Year 2016, Volume: 45 Issue: (Özel Sayı 1) 7. Ulusal Bahçe Bitkileri Kongresi, 194 - 199, 31.03.2016

Abstract

Slovenia is the one of the hazelnut producers in the world and has its own European hazelnut (Corylus avellana L.) genotypes and wild types. Slovenian hazelnut resources should be examined for their molecular genetic diversity and their potential for improvement of hazelnut. For this reason, 102 Slovenian hazelnuts representing a wide geographic range of the country were screened with 11 pairs of selective AFLP primers and 50 pairs of SSR primers. In total, 512 polymorphic SSR fragments and 532 polymorphic AFLP fragments were found. Diversity analysis of the Slovenian hazelnut genotypes indicated that they were classified to three clusters according to hoc statistics and Neighbor-joining algorithms (r= 0.96) for AFLP data. Similarly, three clusters were observed for the SSR data using the Neighbor joining algorithm (r= 0.96). A total of 28 individuals with SSR data and 33 individuals with AFLP data were selected for core collections of Slovenian hazelnut genotypes. These core collections represent a maximum of genetic diversity in a minimum number of individuals and 18 of them were present in both core collection datasets. Examination of Slovenian hazelnut diversity is a first step toward identification and genetic mapping of agronomic and biochemical traits of interest.

References

  • Angiolillo, A., Mencuccini, M., Baldoni, L., 1999. Olive genetic diversity assessed using amplified fragment length polymorphism. Theor. Appl. Genet. 98:411-421.
  • Bacchetta, L., Avanzato, D., Giovanni, B. Di., Botta, R., Boccacci, P., Drogoudi, P., 2014. The Reorganization of European Hazelnut Genetic Resources in the Safenut (Agri Gen Re ) Project, 67–74.
  • Bassil, N.V., Botta, R., Mehlenbacher, S.A., 2005. Additional microsatellite markers of the European hazelnut. Acta Hort. 686:105.
  • Bassil, N., Boccacci, P., Botta, R., Postman, J., Mehlenbacher, S., 2013. Nuclear and chloroplast microsatellite markers to assess genetic diversity and evolution in hazelnut species, hybrids and cultivars. Genetic Resources and Crop Evolution 60:543–568.
  • Boccacci, P., Akkak, A., Bassil, N.V., Mehlenbacher, S.A., Botta, R., 2005. Characterization and evaluation of microsatellite loci in European hazelnut (Corylus avellana L.) and their transferability to other Corylus species. Mol. Ecol. Notes 5:934–937.
  • Boccacci, P., Akkak, A., Botta, R., 2006. DNA typing and genetic relationship among European hazelnut (Corylus avellana L.) cultivars using microsatellite markers. Genome 49:598–611.
  • Boccacci, P., Akkak, A., Botta, R., 2006. DNA typing and genetic relations among European hazelnut (Corylus avellana L.) cultivars using microsatellite markers. Genome/National Research Council Canada=Genome/Conseil National de Recherches Canada 49:598–611.
  • Boccacci, P., Botta, R., Rovira, M. 2008. Genetic diversity of hazelnut (Corylus avellana L.) germplasm in northeastern Spain. Hort. Sci. 43:667-672.
  • Boccacci, P., Beltramo, C., Prando, M.S., Lembo, A., Sartor, C., Mehlenbacher, S.A, Botta, R., Marinoni, D.T., 2015. In silico mining, characterization and cross-species transferability of EST-SSR markers for European hazelnut (Corylus avellana L.). Molecular Breeding, 35:1-14.
  • Boccacci, P., Botta, R., 2009. Investigating the origin of hazelnut (Corylus avellana L.) cultivars using chloroplast microsatellites. Genet. Resour. Crop. Evol. 56:851–859.
  • Boccacci P, Botta, R., 2010. Microsatellite variability and genetic structure in hazelnut (Corylus avellana L.) cultivars from different growing regions. Sci. Hortic. 124:128–133.
  • Campa, A., Trabanco, N., Pérez-Vega, E., Rovira, M., Ferreira, J.J., 2011. Genetic relationship between cultivated and wild hazelnuts (Corylus avellana L.) collected in northern Spain. Plant Breeding 130:360–366.
  • Ferrari, M., Gori, M., Monnanni, R., Buiatti, M., Scarascia Mugnozza, G.T., De Pace, C., 2004. DNA fingerprinting of Corylus avellana L. accessions revealed by AFLP molecular markers. Acta Hortic. 686:125-134.
  • Fulton, T.M., Chunwongse, J., Tanksley, S.D., 1995. Microprep protocol for extraction of DNA from tomato and other herbaceous plants. Plant Molecular Biology Reporter 13:207-209. http://doi.org/10.1007/BF02670897
  • Galderisi, U., Cipollaro, M., Di Bernanrdo, G., De Masi, L., Galano, G., Cascino, A., 1999. Identification of hazelnut (Corylus avellana L.) cultivars by RAPD analysis. Plant Cell Rep. 18:652-655.
  • Gökirmak, T., Mehlenbacher, S.A., Bassil, N.V., 2009. Characterization of European hazelnut (Corylus avellana) cultivars using SSR markers. Genet. Resour. Crop. Evol. 56:147–172.
  • Gurcan, K., Mehlenbacher, S.A., Botta, R., Boccacci, P., 2010. Development, characterization, segregation, and mapping of microsatellite markers for European hazelnut (Corylus avellana L.) from enriched genomic libraries and usefulness in genetic diversity studies. Tree Genet. & Genomes 6:513–531.
  • Gurcan, K., Mehlenbacher, S.A., 2010. Development of microsatellite marker loci for European hazelnut (Corylus avellana L.) from ISSR fragments. Mol. Breeding 26:551–559.
  • Kafkas, S., Doğan, Y., Sabır, A., Turan, A., Seker, H., 2009. Genetic characterization of hazelnut (Corylus avellana L.) cultivars from Turkey using molecular markers. HortScience 44:1557–1561.
  • Kasapligil, B., 1964. A contribution to the histotaxonomy of Corylus (Betulaceae). Adansonia (NS) 4:43–90.
  • Kaya, H. B., Cetin, O., Kaya, H., Sahin, M., Sefer, F., Kahraman, A., Tanyolac, B., 2013. SNP discovery by illumina-based transcriptome sequencing of the olive and the genetic characterization of Turkish olive genotypes revealed by AFLP, SSR and SNP markers. PloS One 8. doi:10.1371/journal.pone.
  • Kim, K.W., Chung, H.K., Cho, G.T., Ma, K.H., Chandrabalan, D., Gwag, J.G., Kim, T.S., Cho, E.G., Park, Y.J., 2007. PowerCore: a program applying the advanced M strategy with a heuristic search for establishing allele mining sets. Bioinformatics 23:2155-2162.
  • Leinemann, L., Steiner, W., Hosius, B., Kuchma, O., Arenhövel, W., Fussi, B., Finkeldey, R., 2013. Genetic variation of chloroplast and nuclear markers in natural populations of hazelnut (Corylus avellana L.) in Germany. Plant Systematics and Evolution 299:369–378.
  • Martins, S., Simões, F., Mendonça, D., Matos, J., Silva, A.P., Carnide, V., 2013. Chloroplast SSR genetic diversity indicates a refuge for Corylus avellana in Northern Portugal. Genetic Resources and Crop Evolution 60:1289–1295.
  • Martins, S., Simões, F., Matos, J., Silva, A.P., Carnide, V., 2014. Genetic relationship among wild, landraces and cultivars of hazelnut (Corylus avellana) from Portugal revealed through ISSR and AFLP markers. Plant Systematics and Evolution 300:1035–1046.
  • Martins, S., Simões, F., Mendonça, D., Matos, J., Silva, A.P., Carnide, V., 2015. Western European wild and landraces hazelnuts evaluated by SSR markers. Plant Molecular Biology Reporter 1-9. doi: 10.1007/s11105015-0867-9.
  • Mehlenbacher, S.A., Brown, R.N., Nouhra, E.R., Gokirmak, T., Bassil, N.V., Kubisiak, T.L., 2006. A genetic linkage map for hazelnut (Corylus avellana L.) based on RAPD and SSR markers. Genome 49:122-133.
  • Mehlenbacher, S.A., 2009. Genetic resources for hazelnut: State of the art and future perspectives. Acta Hort. 845:33-37.
  • Miaja, M.L., Vallania, R., Me, C., Akkak, O., Nassi, O., Lepori, G., 2001. Varietal characterization in hazelnut by RAPD markers. Acta Hort. 556:247-250.
  • Nei, M., 1973. Analysis of gene diversity in subdivided populations. Proceedings of the National Academy of Sciences 70:3321-3323.
  • Perrier, X., Jacquemoud-Collet, J.P., 2006. Darwin software. Available at: http://darwin.cirad.fr/darwin.
  • Pritchard, J.K., Stephens, M., Donnelly, P., 2000. Inference of population structure using multilocus genotype data. Genetics 155:945959.
  • Sharma, A., Sharma, R., Machii, H., 2000. Assessment of genetic diversity in Morus germplasm collection using fluorescence based AFLP markers. Theor. Appl. Genet. 101: 1049-1055.
  • Slatnar, A., Mikulic Petkovsek, M., Stampar, F., Veberic, R., Solar, A., 2014. HPLC-MSn identification and quantification of phenolic compounds in hazelnut kernels, oil and bagasse pellets. Food Research International 64:783-789.
  • Solar, A., Stampar, F., 2009. Performance of hazelnut cultivars from Oregon in Northeastern Slovenia. Hort. Technology. 19:653-659.
  • Solar, A., Stampar, F., 2011. Characterization of selected hazelnut cultivars: phenology, growing and yielding capacity, market quality and nutraceutical value. Journal of the Science of Food and Agriculture 91:1205-1212.
  • Tanksley, S.D., McCouch, S.R., 1997. Seed banks and molecular maps: unlocking genetic potential from the wild. Science 277:10631066.
  • Vos, F., Hogers, R., Bleeker, M., Reijans, M., Van de Lee, T., Hornes, M., Frijters, A., Pot, J., Peleman, J., Kuiper, M., Zabeau, M., 1995. AFLP: a new concept for DNA fingerprinting. Nucl. Acids Res. 23:4407-4414.
  • Winfield, M.O., Arnold, G.M., Cooper, F., Le Ray, M., White, J., Karp, A., Edwards, K.J., 1998. A study of genetic diversity in Populus nigra subsp. betulifolia in the Upper Severn area of the UK using AFLP markers. Molecular Ecology 7:3–10.
There are 39 citations in total.

Details

Primary Language Turkish
Subjects Agricultural Engineering (Other)
Journal Section Makaleler
Authors

Süleyman Can Öztürk

Saniye Elvan Öztürk

Ali Tevfik Uncu

Anita Solar This is me

Sami Doğanlar

Anne Frary This is me

Publication Date March 31, 2016
Submission Date January 1, 2016
Acceptance Date January 31, 2016
Published in Issue Year 2016 Volume: 45 Issue: (Özel Sayı 1) 7. Ulusal Bahçe Bitkileri Kongresi

Cite

APA Öztürk, S. C., Öztürk, S. E., Uncu, A. T., … Solar, A. (2016). Slovenya Fındıklarında Genetik Çeşitlilik. Bahçe, 45((Özel Sayı 1) 7. Ulusal Bahçe Bitkileri Kongresi), 194-199.
AMA Öztürk SC, Öztürk SE, Uncu AT, Solar A, Doğanlar S, Frary A. Slovenya Fındıklarında Genetik Çeşitlilik. Bahçe. March 2016;45((Özel Sayı 1) 7. Ulusal Bahçe Bitkileri Kongresi):194-199.
Chicago Öztürk, Süleyman Can, Saniye Elvan Öztürk, Ali Tevfik Uncu, Anita Solar, Sami Doğanlar, and Anne Frary. “Slovenya Fındıklarında Genetik Çeşitlilik”. Bahçe 45, no. (Özel Sayı 1) 7. Ulusal Bahçe Bitkileri Kongresi (March 2016): 194-99.
EndNote Öztürk SC, Öztürk SE, Uncu AT, Solar A, Doğanlar S, Frary A (March 1, 2016) Slovenya Fındıklarında Genetik Çeşitlilik. Bahçe 45 (Özel Sayı 1) 7. Ulusal Bahçe Bitkileri Kongresi 194–199.
IEEE S. C. Öztürk, S. E. Öztürk, A. T. Uncu, A. Solar, S. Doğanlar, and A. Frary, “Slovenya Fındıklarında Genetik Çeşitlilik”, Bahçe, vol. 45, no. (Özel Sayı 1) 7. Ulusal Bahçe Bitkileri Kongresi, pp. 194–199, 2016.
ISNAD Öztürk, Süleyman Can et al. “Slovenya Fındıklarında Genetik Çeşitlilik”. Bahçe 45/(Özel Sayı 1) 7. Ulusal Bahçe Bitkileri Kongresi (March2016), 194-199.
JAMA Öztürk SC, Öztürk SE, Uncu AT, Solar A, Doğanlar S, Frary A. Slovenya Fındıklarında Genetik Çeşitlilik. Bahçe. 2016;45:194–199.
MLA Öztürk, Süleyman Can et al. “Slovenya Fındıklarında Genetik Çeşitlilik”. Bahçe, vol. 45, no. (Özel Sayı 1) 7. Ulusal Bahçe Bitkileri Kongresi, 2016, pp. 194-9.
Vancouver Öztürk SC, Öztürk SE, Uncu AT, Solar A, Doğanlar S, Frary A. Slovenya Fındıklarında Genetik Çeşitlilik. Bahçe. 2016;45((Özel Sayı 1) 7. Ulusal Bahçe Bitkileri Kongresi):194-9.

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