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Molecular Cytogenetics in the Diagnostics of Balanced Chromosome Mutations in the Pig (Sus scrofa) – A Review

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Acloque H., Bonnet-Garnier A., Mompart F., Pinton A., Yerle-Bouissou M. (2013). Sperm nuclear architecture is locally modified in presence of a Robertsonian translocation t(13;17). PLoS One, 8: e78005.Search in Google Scholar

Arakaki D.T., Sparkes R.S. (1963). Microtechnique for culturing leucocytes from whole blood. Cytogenetics, 2: 57–60.Search in Google Scholar

Barasc H., Mary N., Raymond-Letron I., Calgaro A., Dudez A. M., Bonnet N., Lahbib-Mansais Y., Yerle M., Ducos A., Pinton A. (2012). Y-autosome translocation interferes with meiotic sex inactivation and expression of autosomal genes: a case study in the pig. Sex. Dev., 6: 143–150.Search in Google Scholar

Barasc H., Ferchaud S., Mary N., Cucchi M.A., Lucena A.N., Raymond-Letron I., Calgaro A., Bonnet N., Dudez A.M., Yerle M., Ducos A., Pinton A. (2014). Cytogenetic analysis of somatic and germinal cells from 38,XX/38,XY phenotypically normal boars. Theriogenology, 81: 368–872.Search in Google Scholar

Basrur P.K., Stranzinger G. (2008). Veterinary cytogenetics: past and perspective. Cytogenet. Genome Res., 120: 11–25.Search in Google Scholar

Bickmore W.A., (2001). Karyotype analysis and chromosome banding. Encyclopedia of Life Sciences. Nature Publishing Group, pp. 1–7.10.1038/npg.els.0001160Search in Google Scholar

Bloom S.E., Goodpasture C. (1976). An improved technique for selective silver staining of nucleolar organizer regions in human chromosomes. Hum. Genet., 34: 199–206.Search in Google Scholar

Bonnet-Garnier A., Guardia S., Pinton A., Ducos A., Yerle M. (2009). Analysis using sperm-FISH of a putative interchromosomal effect in boars carrying reciprocal translocations. Cytogenet. Genome Res., 126: 194–201.Search in Google Scholar

Chaudhary R., Kijas J., Raudsepp T., Guan X.Y., Zhang H., Chowdhary B.P. (1998). Microdissection of pig chromosomes: dissection of whole chromosomes, arms and bands for construction of paints and libraries. Hereditas, 128: 265–271.Search in Google Scholar

Chowdhary B.P., Raudsepp T., Frönicke L., Scherthan H. (1998). Emerging patterns of comparative genome organization in some mammalian species as revealed by Zoo-FISH. Genome Res., 8: 577–589.Search in Google Scholar

Ciotola F., Arabella S., Scopino G., Carpino S., Monaco F., Peretti V. (2014). Crossbreeding effect on genome stability in pig (Sus scrofa scrofa). Folia Biol. (Krakow), 62: 23–28.Search in Google Scholar

Danielak-Czech B., Słota E. (2004). Mutagen-induced chromosome instability in farm animals. J. Anim. Feed Sci., 13: 257–267.Search in Google Scholar

Danielak-Czech B., Słota E. (2007). A new case of reciprocal translocation t(10;13)(q16;q21) diagnosed in an AI boar. J. Appl. Genet., 48: 379–382.Search in Google Scholar

Danielak-Czech B., Słota E. (2008 a). Karyotype control system of AI boars in Poland: the current survey. Ann. Anim. Sci., 8: 255–262.Search in Google Scholar

Danielak-Czech B., Słota E. (2008 b). Tandem fusion-translocation: a unique karyotype rearrangement in the domestic pig. Ann. Anim. Sci., 8: 343–348.Search in Google Scholar

Danielak-Czech B., Słota E., Świtoński M. (1994). Identification of the first reciprocal translocations in the pig population bred in Poland. Proc. 11th Europ. Colloq. Cytogenet. Domest. Anim., pp. 20–24.Search in Google Scholar

Danielak-Czech B., Kozubska-Sobocińska A., Słota E., Rejduch B., Kwaczyńska A. (1996 a). Preliminary identification of pair 1 chromosome rearrangement in the Polish Landrace sow. Cytogenet. Cell Genet., 74: 230.Search in Google Scholar

Danielak-Czech B., Kozubska-Sobocińska A., Słota E., Rejduch B., Kwaczyńska A. (1996 b). Preliminary identification of pair 1 chromosome rearrangement in the Polish Landrace sow. Arch. Zootec., 45: 215–219.Search in Google Scholar

Danielak-Czech B., Kozubska-Sobocińska A., Słota E., Rejduch B., Okularczyk S. (1996 c). Decrease in pig fertility as result of reciprocal translocations and assisted economic effects on the basis of rcp(7;13)(q13;q46). J. Appl. Genet., 36: 373–384.Search in Google Scholar

Danielak-Czech B., Świtoński M., Słota E. (1997). First identification of reciprocal translocations in Polish pigs. J. Anim. Breed. Genet., 114: 69–78.Search in Google Scholar

Danielak-Czech B., Słota E., Bugno M., Pieńkowska-Schelling A., Schelling C. (2006). Application of chromosome microdissection and chromosome painting techniques for reciprocal translocations diagnosis in pigs. Ann. Anim. Sci., 6: 219–224.Search in Google Scholar

Danielak-Czech B., Kozubska-Sobocińska A., Rejduch B. (2010 a). Diagnosis of tandem fusion translocation in the boar using FISH technique with human painting probes. Ann. Anim. Sci., 10: 361–366.Search in Google Scholar

Danielak-Czech B., Słota E., Kozubska-Sobocińska A., Rejduch B. (2010 b). A unique chromosome mutation in pigs: tandem fusion-translocation. Chromosome Res., 18: 715–716.Search in Google Scholar

Danielak-Czech B., Rejduch B., Kozubska-Sobocińska A. (2013). Identification of telomeric sequences in pigs with rearranged karyotype using PRINS technique. Ann. Anim. Sci., 13: 495–502.Search in Google Scholar

Danielak-Czech B., Kozubska-Sobocińska A., Kruczek K., Babicz M., Rejduch B. (2014). Physical mapping of the HSPB genes in the domestic and wild pigs. Chromosome Res., 22: 413.Search in Google Scholar

Di Meo G.P., Molteni L., Perucatti A., De Giovanni A., Incarnato D., Succi G., Schibler L., Cribiu E.P., Iannuzzi L. (2000). Chromosomal characterization of three centric fusion translocations in cattle using G-, R- and C-banding and FISH technique. Caryologia, 53: 213–218.Search in Google Scholar

Di Meo G.P., Perucatti A., Floriot S., Hayes H., Schibler L., Rullo R., Incarnato D., Feretti L., Cockett N., Cribiu E., Williams J.L., Eggen A., Iannuzzi L. (2007). An advanced sheep (Ovis aries, 2n=54) cytogenetic map and assignment of 88 new loci by fluorescent in situ hybridization and R-banding. Anim. Genet., 38: 233–240.Search in Google Scholar

Doleže l J., Vrána J., Safář J., Bartoš J., Kubaláková M., Simková H. (2012). Chromosomes in the flow to simplify genome analysis. Funct. Integr. Genomics, 12: 397–416.Search in Google Scholar

Ducos A., Pinton A., Berland H.M., Séguéla A., Blanc M.F., Darré A., Darré R. (1997 a). Five new cases of reciprocal translocation in the domestic pig. Hereditas, 128: 221–229.10.1111/j.1601-5223.1998.00221.x9760870Search in Google Scholar

Ducos A., Pinton A., Séguéla A., Berland H.M., Blanc M.F., Darré A., Pinton A., Yerle M., Darré R. (1997 b). A pericentric inversion of chromosome 4 in pigs. Gent. Sel. Evol., 29: 383–394.10.1186/1297-9686-29-3-383Search in Google Scholar

Ducos A., Berland H.M., Pinton A., Guillemot E., Séguéla A., Blanc M.F., Darré A., Darré R. (1998). Nine new cases of reciprocal translocation in the domestic pig (Sus scrofa domestica L.). J. Hered., 89: 136–342.Search in Google Scholar

Ducos A., Pinton A., Yerle M., Séguéla A., Berland H.M., Brun-Baronnat C., Bonnet N., Darré R. (2002 a). Cytogenetic and molecular characterization of eight new reciprocal translocations in the pig species. Estimation of their incidence in French populations. Genet. Sel. Evol., 34: 389–406.10.1186/1297-9686-34-3-389270545212081804Search in Google Scholar

Ducos A., Pinton A., Berland H.M., Séquéla A., Yerle M., Séquéla A., Brun-Barronat C., Bonnet N., Darré R. (2002 b). Contrôle chromosomique des populations porcines an France: bilan de cinq années d’activité. Journées de la Recherche Porcine France, 34: 269–275.10.1186/1297-9686-34-3-389Search in Google Scholar

Ducos A., Berland H.M., Bonnet N., Calgaro A., Billoux S., Mary N., Garnier-Bonnet A., Darré R., Pinton A. (2007). Chromosomal control of pig populations in France: 2002–2006 survey. Genet. Sel. Evol., 39: 583–597.Search in Google Scholar

Ducos A., Revay T., Kovacs A., Hidas A., Pinton A., Bonnet-Garnier A., Molteni L., Słota E., Świtoński M., Arruga M.V., van Haeringen W.A., Nicolae I., Chaves R., Guedes-Pinto H., Andersson M., Iannuzzi L. (2008). Cytogenetic screening of livestock populations in Europe: an overview. Cytogenet. Genome Res., 120: 26–41.Search in Google Scholar

Dutrillaux B. (1973). Nouveau systeme de marquage chromosomique: Les bands T. Chromosoma, 41: 395–402.Search in Google Scholar

Dutrillaux B., Laurent C., Couturier J., Lejeune J. (1973). Coloration des par l’acridine orange de chromosomes prealablement trites par le 5-bromodeoxyuridine (BudR). Comp. Rend. Acad. Sci., 276: 31–39.Search in Google Scholar

Fahrenkrug S.C., Rohrer G.A., Freking B.A., Smith T.P.L., Osoegawa K., Shu C.L., Catanese J.J., de Jong P.J. (2001). A porcine BAC library with tenfold genome coverage: a resource for physical and genetic map integration. Mamm. Genome, 12: 472–474.Search in Google Scholar

Frönicke L., Wienberg J. (2001). Comparative chromosome painting defines the high rate of karyotype changes between pigs and bovids. Mamm. Genome, 12: 442–449.Search in Google Scholar

Goureau A., Yerle M., Schmitz A., Riquet D., Milan D., Pinton P., Frelat G., Gellin J. (1996). Human and porcine correspondence of chromosome segments using bidirectional chromosome painting. Genomics, 36: 252–262.Search in Google Scholar

Gu F., Handikjaer I., Gustavsson I., Bolund L. (1996). A signal of telomeric sequences on porcine chromosome 6q21-q22 detected by primed in situ labeling. Chromosome Res., 4: 251–252.Search in Google Scholar

Gustavsson I. (1980). Banding techniques in chromosome analysis of domestic animals. Adv. Vet. Sci. Comp. Med., 24: 245–289.Search in Google Scholar

Gustavsson I. (1988). Standard karyotype of domestic pig. Hereditas, 109: 151–157.Search in Google Scholar

Gustavsson I. (1990). Chromosomes of the pig. Adv. Vet. Sci. Comp. Med., 34: 73–107.Search in Google Scholar

Hayes H. (1995). Chromosome painting with human chromosome-specific DNA libraries reveals the extent and distribution of conserved segments in bovine chromosomes. Cytogenet. Cell Genet., 71: 168–174.Search in Google Scholar

Iannuzzi L., Di Berardino D. (2008). Tools of the trade: diagnostics and research in domestic animal cytogenetics. J. Appl. Genet., 49: 357–366.Search in Google Scholar

Iannuzzi L., Molteni L., Di Meo G.P., Perucatti A., Lorenzi L., Incarnato D., De Giovanni A., Succi G., Gustavsson I. (2001). A new balanced autosomal reciprocal translocation in cattle revealed by banding techniques and human-painting probes. Cytogenet. Cell Genet., 94: 225–228.Search in Google Scholar

Inglot P., Lewinska A., Potocki L., Oklejewicz B., Tabecka-Lonczynska A., Koziorowski M., Bugno-Poniewierska M., Bartosz G., Wnuk M. (2012). Cadmium-induced changes in genomic DNA-methylation status increase aneuploidy events in a pig Robertsonian translocation model. Mutat. Res., 747: 182–189.Search in Google Scholar

Kociucka B., Szczerbal I., Bugaj S., Orsztynowicz M., Świtoński M. (2014). A high incidence of adjacent-1 meiotic segregation pattern, revealed by multicolor sperm FISH, in a carrier boar of a new reciprocal translocation t(6;16)(p13;q23). Cytogenet. Cell Genet., 142: 21–27.Search in Google Scholar

Konfortova G.D., Miller N.G., Tucker E.M. (1995). A new reciprocal translocation (7q+; 15q−) in the domestic pig. Cytogenet. Cell Genet., 71: 285–288.Search in Google Scholar

Kozubska-Sobocińska A., Babicz M., Rejduch B. (2008). Genetic conservation of chromosome G-bands in Suidae. Ann. Anim. Sci., 8: 349–355.Search in Google Scholar

Kozubska-Sobocińska A., Danielak-Czech B., Bąk A., Babicz M., Rejduch B. (2014). Comparative physical mapping of genes associated with meat production traits in the wild pig genome. Chromosome Res., 22: 414.Search in Google Scholar

Kubickova S., Cernohorska H., Musilova P., Rubeš J. (2002). The use of laser microdissection for the preparation of chromosome-specific painting probes in farm animals. Chromosome Res., 10: 571–577.Search in Google Scholar

Langford C.F., Telenius H., Miller N.G., Thomsen P.D., Tucker E.M. (1993). Preparation of chromosome-specific paints and complete assignment of chromosome in the pig flow-sorted karyotype. Anim. Genet., 24: 261–267.Search in Google Scholar

Mary N., Barasc H., Ferchaud S., Billon Y., Meslier F., Robelin D., Calgaro A., Loustau-Dudez A.M., Bonnet N., Yerle M., Acloque H., Ducos A., Pinton A. (2014). Meiotic recombination analyses of individual chromosomes in male domestic pigs (Sus scrofa domestica). PLoS One, 9: e99123.Search in Google Scholar

Massip K., Berland H., Bonnet N., Calgaro A., Billoux S., Baquié V., Mary N., Bonnet-Garnier A., Ducos A., Yerle M., Pinton A. (2008). Study of inter- and intraindividual variation of meiotic segregation patterns in t(3;15)(q27;q13) boars. Theriogenology, 70: 655–661.Search in Google Scholar

Massip K., Bonnet N., Calgaro A., Billoux S., Baquié V., Mary N., Bonnet-Garnier A., Ducos A., Yerle M., Pinton A. (2009). Male meiotic segregation analyses of periand paracentric inversions in the pig species. Cytogenet. Genome Res., 125: 117–124.Search in Google Scholar

Massip K., Yerle M., Billon Y., Ferchaud S., Bonnet N., Calgaro A., Mary N., Dudez A.M., Sentenac C., Plard C., Ducos A., Pinton A. (2010). Studies of male and female meiosis in inv(4)(p14;q23) pig carriers. Chromosome Res., 18: 925–938.Search in Google Scholar

Miller J.R., Hindkjǽr J., Thomsen P.D. (1993). A chromosomal basis for the differential organization of a porcine centromere-specific repeat. Cytogenet. Cell Genet., 62: 37–41.Search in Google Scholar

Musilova P., Drbalova J., Kubickova S., Cernohorska H., Stepanova H., Rubeš J. (2014). Illegitimate recombination between T cell receptor genes in humans and pigs (Sus scrofa domestica). Chromosome Res., 22: 483–493.Search in Google Scholar

Padula A.M. (2005). The freemartin syndrome: an update. Anim. Reprod. Sci., 87: 93–109.Search in Google Scholar

Pellestor F., Girardet A., Lefort G., Andréo B., Charlieu J.P. (1995). Use of the primed in situ labelling (PRINS) technique for a rapid detection of chromosomes 13, 16, 18, 21, X and Y. Hum. Genet., 95: 12–17.Search in Google Scholar

Pinkel D., Straume T., Gray J.W. (1986). Cytogenetic analysis using quantitative, high sensitive, fluorescence hybridization. Proc. Nat. Acad. Sci. USA, 83: 2934.Search in Google Scholar

Pinton A., Ducos A., Séguéla A., Berland H.M., Darré R., Darré A., Pinton P., Schmitz A., Cribiu E.P., Yerle M. (1998). Characterization of reciprocal translocations in pigs using dual-colour chromosome painting and primed in situ DNA labelling. Chromosome Res., 6: 361–366.Search in Google Scholar

Pinton A., Ducos A., Berland H., Seguela A., Brun-Baronnat C., Darré A., Darré R., Schmitz A., Yerle M. (2000). Chromosomal abnormalities in hypoprolific boars. Hereditas, 132: 55–62.Search in Google Scholar

Pinton A., Pailhoux E., Piumi F., Rogel-Gaillard C., Darré R., Yerle M., Ducos A., Cotinot C. (2002). Acase of intersexuality in pigs associated with a de novo paracentric inversion 9 (p1.2; p2.2). Anim. Genet., 32: 1–3.Search in Google Scholar

Pinton A., Ducos A., Yerle M. (2003). Chromosomal rearrangements in cattle and pigs revealed by chromosome microdissection and chromosome painting. Genet. Sel. Evol., 35: 685–696.Search in Google Scholar

Pinton A., Ducos A., Yerle M. (2004). Estimation of the proportion of genetically unbalanced spermatozoa in the semen of boars carrying chromosomal rearrangements using sperm-FISH. Genet. Sel. Evol., 36: 123–137.Search in Google Scholar

Pinton A., Faraut T., Yerle M., Gruand J., Pellestor F., Ducos A. (2005). Comparison of male and female meiotic segregation patterns in translocation heterozygotes: a case study in an animal model (Sus scrofa domestica L.). Hum Reprod., 20: 2476–2482.Search in Google Scholar

Pinton A., Raymond Letron I., Berland H.M., Bonnet N., Calgaro A., Garnier-Bonnet A., Yerle M., Ducos A. (2008). Meiotic studies in an azoospermic boar carrying a Y;14 translocation. Cytogenet. Genome Res., 120: 106–111.Search in Google Scholar

Pinton A., Calgaro A., Bonnet N., Ferchaud S., Billoux S., Dudez A.M., Mary N., Massip K., Bonnet-Garnier A., Yerle M., Ducos A. (2009). Influence of sex on the meiotic segregation of a t(13;17) Robertsonian translocation: a case study in the pig. Hum. Reprod., 24: 2034–2043.Search in Google Scholar

Pinton A., Barasc H., Raymond-Letron I., Bordedebat M., Mary N., Massip K., Bonnet N., Calgaro A., Dudez A.M., Feve K., Riquet J., Yerle M., Ducos A. (2011). Meiotic studies of a 38,XY/39,XXY mosaic boar. Cytogenet. Genome Res., 133: 202–208.Search in Google Scholar

Pinton A., Calgaro A., Bonnet N., Mary N., Dudez A.M., Barasc H., Plard C., Yerle M., Ducos A. (2012). Chromosomal control of pig populations in France: 2007–2010 survey (in French). Journées Recherche Porcine, 44: 43–44.Search in Google Scholar

Quach T.A., Villagomez D.A.F., Coppola G., Pinton A., Hart E.J., Reyes E.R., Basrur P.K., King W.A. (2009). A cytogenetic study of breeding boars in Canada. Cytogenet. Genome Res., 126: 271–280.Search in Google Scholar

Raudsepp T., Chowdhary B.P. (2011). Cytogenetics and chromosome maps. In: The Genetics of the Pig. 2nd ed., Rothschild M.P., Ruvinsky A. (eds). CAB International, Wallingford, pp.134–178.10.1079/9781845937560.0134Search in Google Scholar

Rejduch B., Słota E., Różycki M., Kościelny M. (2003 a). Chromosome number polymorphism in a litter of European wild boar (Sus scrofa scrofa L.). Anim. Sci. Pap. Rep., 21: 57–62.Search in Google Scholar

Rejduch B., Słota E., Sysa P., Kościelny M., Wrzeska M., Babicz M. (2003 b). Synaptonemal complexes analysis of the European wild boars carriers of the 15;17 Robertsonian translocation. Ann. Anim. Sci., 3: 255–262.Search in Google Scholar

Rejduch B., Słota E., Sysa P., Kwaczyńska A., Kozubska-Sobocińska A., Danielak-Czech B. (2003 c). Diagnosis of a new reciprocal translocation rcp(9;14)(q14;q23) in infertile boar after the synaptonemal complex analysis. Ann. Anim. Sci., 3: 269–278.Search in Google Scholar

Rejduch B., Kozubska-Sobocińska A., Słota E., Sysa P., Wrzeska M. (2006). Evaluation of chromosomal changes in gonads and their effect on boar fertility (in Polish). Med. Weter., 62: 931–932.Search in Google Scholar

Rejduch B., Danielak-Czech B., Kozubska-Sobocińska A. (2010 a). FISH-based comparative analysis of human and porcine chromosome region involving obesity-related genes. Ann. Anim. Sci., 10: 367–372.Search in Google Scholar

Rejduch B., Kozubska-Sobocińska A., Danielak-Czech B. (2010 b). Use of human painting probes for identification of centric fusion in wild boar. Chromosome Res., 18: 728–729.Search in Google Scholar

Rettenberger G., Klett C., Zechner U., Kunz J., Vogel W., Hameister H. (1995). Visualization of the conservation of synteny between humans and pigs by heterologous chromosomal painting. Genomics, 26: 372–378.Search in Google Scholar

Rezácová O., Kubícková S., Cernohorská H., Rubes J. (2003). Comparison of spontaneous background genomic aberration frequencies among cattle, pig and humans using dual-colored FISH. Chromosome Res., 11: 715–724.Search in Google Scholar

Riggs P.K., Rønne M. (2009). Fragile sites in domestic animal chromosomes: molecular insights and challenges. Cytogenet. Genome Res., 97–109.10.1159/00024591020016160Search in Google Scholar

Riggs P.K., Kuczek T., Chrisman C.L., Bidwell C.A. (1993). Analysis of aphidicolin-induced chromosome fragility in the domestic pig (Sus scrofa). Cytogenet. Cell Genet., 62: 110–116.Search in Google Scholar

Rodríguez A., Sanz E., De Mercado E., Gómez E., Martín M., Carrascosa C., Gómez-Fidalgo E., Villagómez D.A.F., Sánchez-Sánchez R. (2010). Reproductive consequences of a reciprocal chromosomal translocation in two Duroc boars used to provide semen for artificial insemination. Theriogenology, 74: 67–74.Search in Google Scholar

Rogel-Gaillard C., Hayes H., Coullin P., Chardon P., Vaiman M. (1997). Swine centromeric DNA repeats revealed by primed in situ (PRINS) labeling. Cytogenet. Cell Genet., 79: 79–84.Search in Google Scholar

Rønne M. (1990). The high resolution R-banded karyotype of Sus scrofa domestica L. In Vivo, 4: 181–184.Search in Google Scholar

Rubeš J., Borkovec L., Hořinová Z., Urbanová J., Proroková I., Kuliková L. (1992). Cytogenetic monitoring of farm animals under conditions of environmental pollution. Mutation Res., 283: 199–210.Search in Google Scholar

Rubeš J., Pinton A., Bonnet-Garnier A., Fillon V., Musilova P., Michalova K., Kubickova S., Ducos A., Yerle M. (2009). Fluorescence in situ hybridization applied to domestic animal cytogenetics. Cytogenet. Genome Res., 126: 34–48.Search in Google Scholar

Shizuya H., Kouros-Mehr H. (2001). The development of applications of the bacterial artificial chromosome cloning system. Keio J. Med., 50: 21–30.Search in Google Scholar

Słota E., Kozubska-Sobocińska A., Danielak-Czech B., Rejduch B, Kwaczyńska A. (1996). NOR polymorphism in pigs: Evaluation of metaphase chromosomes in lymphocytes and synaptonemal complexes analysis in spermatocytes. Cytogenet. Cell Genet., 74: 242.Search in Google Scholar

Słota E., Danielak-Czech B., Pietraszewska J., Kozubska-Sobocińska A. (2000). Preliminary identification of the fragile X in two crossbred cows. Vet. Med.-Czech, 45: 7–9.Search in Google Scholar

Słota E., Kozubska-Sobocińska A., Kościelny M., Danielak-Czech B., Rejduch B. (2003). Detection of the XXY trisomy in a bull by using sex chromosome painting probes. J. Appl. Genet., 44: 379–382.Search in Google Scholar

Słota E., Bugno M., Rejduch B., Danielak-Czech B., Jura J., Smorąg Z., Kopchick J.J., Kelder B. (2004 a). Preliminary localization of WAP-human α 1, 2 fucosyltransferase (WAP-Fuc) gene construct in goat and pigs. Cytogenet. Genome Res., 106: 18.Search in Google Scholar

Słota E., Kozubska-Sobocińska A., Danielak-Czech B., Rejduch B., Kowol P., Żyga A. (2004 b). A note on cytogenetic monitoring of Polish Red cattle. J. Anim. Feed Sci., 13: 65–71.10.22358/jafs/67389/2004Search in Google Scholar

Sumner A.T. (1972). A simple technique for demonstrating centromeric heterochromatin. Exp. Cell Res., 75: 304–306.Search in Google Scholar

Świtoński M. (1991). Paracentric inversion involving NOR of chromosome 8 in a boar: studies of synaptonemal complexes under a light microscope. Genet. Sel. Evol., 23: 181–189.Search in Google Scholar

Świtoński M., Stranzinger G. (1998). Studies of synaptonemal complexes in farm mammals – a review. J. Hered., 89: 473–480.Search in Google Scholar

Świtoński M., Danielak-Czech B., Słota E., Sysa P. (1998). Lack of pairing loop formation in synaptonemal complex preparation of a boar carrying an inversion. Hereditas, 128: 83–85.Search in Google Scholar

Telenius H., Pelmear A.H., Tunnacliffe A., Carter N.P., Behmel A., Ferguson-Smith M.A., Nordenskjöld M., Pfragner R., Ponder B.A. (1992). Cytogenetic analysis by chromosome painting using DOP-PCR amplified flow-sorted chromosomes. Genes Chromosome. Canc., 4: 257–263.Search in Google Scholar

Villagόmez D.A.F., Pinton A. (2008). Chromosomal abnormalities, meiotic behaviour and fertility in domestic animals. Cytogenet. Genome Res., 120: 69–80.Search in Google Scholar

Villagomez D.A.F., Ayala-Valdovinos M.A., Galindo-Garcia J., Sanchez-Chipres D.R., Mora-Galindo J., Taylor-Preciado J.J., (2008). Extensive nonhomologous meiotic synapsis between normal chromosome axes of an rcp(3;6)(p14;q21) translocation in a hairless Mexican boar. Cytogenet. Genome Res., 120: 112–116.Search in Google Scholar

Vorsanova S.G., Burov Y.B., Iourov I.Y. (2010). Human interphase chromosomes: a review of available molecular cytogenetic technologies. Mol. Cytogenet., 3: 2–15.Search in Google Scholar

Wang H.C., Fedoroff S., (1972). Banding in human chromosomes treated with trypsin. Nat. New Biol., 235: 52–54.Search in Google Scholar

Wnuk M., Kotylak Z., Bugno M., Słota E. (2005). Karyotype analysis in pigs – hybrids of European wild boar (Sus scrofa scrofa) and domestic pig (Sus scrofa domestica). Ann. Anim. Sci., 5: 11–19.Search in Google Scholar

Yang M.Y., Long S.E. (1993). Folate sensitive common fragile sites in chromosomes of the domestic pig (Sus scrofa). Res. Vet. Sci., 55: 231–235.Search in Google Scholar

Yerle M., Galman O., Echard G. (1991). The high resolution GTG-banding pattern of pig chromosomes. Cytogenet. Cell Genet., 56: 45–47.Search in Google Scholar

Yerle M., Schmitz A., Milan D., Chaput B., Monteagudo L., Vaiman M., Frelat G., Gellin J. (1993). Accurate characterization of porcine bivariate flow karyotype by PCR and fluorescence in situ hybridization. Genomics, 16: 97–103.Search in Google Scholar

Yunis J.J. (1981). Mid-prophase human chromosomes. The attainment of 2000 bands. Hum. Genet., 56: 293–298.Search in Google Scholar

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