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The Effect of Using DNA Obtained from Blood of Cattle with Genetic Chimerism on Illumina’s Beadchip Assay Performance

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25 kwi 2014

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Anderson D., Billingham R.E., Lampkin G.H., Madawar P.B. (1951). The use of skingrafting to distinguish between monozygotic and dizygotic twins in cattle. Heredity, 5: 379-397.Search in Google Scholar

Basrur P.K., Kanagawa H. (1969). Parallelism in chimeric ratios in heterosexual cattle twins. Genetics, 63: 419-425.Search in Google Scholar

Buoen L.C., Zhang T.Q., Veber A.F., Ruth G.R. (1992). Non-freemartin rate in Holstein heterosexual twins. Am. Assoc. Bov. Pract. Confr., 1: 300-303.Search in Google Scholar

Cady R.A., Van Vleck L.D. (1978). Factors affecting twinning and effects of twinning in Holstein dairy cattle. J. Anim. Sci., 46: 950-956.Search in Google Scholar

Conlin L.K., Thiel B.D., Bonnemann C.G., Medne L., Ernst L.M., Zackai E.H., Deardorff M.A., Krantz I.D., Hakonarson H., Spinner N.B. (2010). Mechanisms of mosaicism, chimerism and uniparental disomy identified by single nucleotide polymorphism array analysis. Hum. Mol. Genet., 19: 1263-1275.Search in Google Scholar

Craig D.W., Millis M.P., Di Stefano J.K. (2009). Genome-wide SNPgenotyping study using pooled DNAto identify candidate markers mediating susceptibility to end-stage renal disease attributed to Type 1 diabetes. Diabet. Med., 26: 1090-1098.Search in Google Scholar

Fricke P.M. (2001). Review: Twinning in Dairy Cattle. Prof. Anim. Sci., 17: 61-67.Search in Google Scholar

Hayes B.J., Bowman P.J., Chamberlain A.C., Verbyla K., Goddard M.E. (2009). Accuracy of genomic breeding values in multi-breed dairy cattle populations. Genet. Sel. Evol., 41: 51.Search in Google Scholar

Holl H.M., Lear T.L., Nolen-Walston R.D., Slack J., Brooks S.A. (2013). Detection of two equine trisomies using SNP-CGH. Mamm. Genome, 24: 252-256.Search in Google Scholar

Komisarek J., Dorynek Z.J. (2002). Genetic aspects of twinning in cattle. J. Appl. Genet., 43: 55-68.Search in Google Scholar

Meaburn E., Butcher L.M., Liu L., Fernandes C., Hansen V., Al - Chalabi A., Plo- min R., Craig I., Schalkwyk L.C. (2005). Genotyping DNApools on microarrays: tackling the QTLproblem of large samples and large numbers of SNPs. BMC Genomics, 6: 52.Search in Google Scholar

Metzger J., Philipp U., Lopes M.S.,da Camara Machado A., Felicetti M., Sil -vestrelli M., Distl O. (2013). Analysis of copy number variants by three detection algorithms and their association with body size in horses. BMC Genomics, 14: 487.Search in Google Scholar

Nielen M., Schukken Y.H., Scholl D.T., Wilbrink H.J., Brand A. (1989). Twinning in dairy cattle:astudy of risk factors and effects. Theriogenology, 32: 845-862.Search in Google Scholar

Niku M., Pessa-Morikawa T., Taponen J., Iivanainen A. (2007). Direct observation of hematopoietic progenitor chimerism in fetal freemartin cattle. BMC Vet. Res., 3: 29.Search in Google Scholar

Peiris B.L., Ralph J., Lamont S.J., Dekkers J.C. (2011) Predicting allele frequencies in DNA pools using high density SNPgenotyping data. Anim. Genet., 42: 113-116.Search in Google Scholar

Radko A., Słota E., Marczyńska J. (2010). Usefulness ofasupplementary set of microsatellite DNAmarkers for parentage testing in cattle. Pol. J. Vet. Sci., 13: 313-318.Search in Google Scholar

Staaf J., Vallon - Christersson J., Lindgren D., Juliusson G., Rosenquist R., Hög lund M., Borg A., Ringnér M. (2008). Normalization of Illumina Infinium whole-genome SNPdata improves copy number estimates and allelic intensity ratios. BMC Bioinformatics, 9: 409.Search in Google Scholar

Szyda J., Żarnecki A., Suchocki T., Kamiński S. (2011). Fitting and validating the genomic evaluation model to Polish Holstein-Friesian cattle. J. Appl. Genet., 52: 363-366.Search in Google Scholar

Vigier B., Watrin F., Magre S., Tran D., Garrigou O., Forest M.G., Josso N. (1988). Anti-mullerian hormone and freemartinism: inhibition of germ cell development and induction of seminiferous cord-like structures in rat fetal ovaries exposed in vitro to purified bovine AMH. Reprod. Nutr. Dev., 28: 1113-1128.Search in Google Scholar

Vigier B., Magre S., Charpentier G., Bezard J., Josso N. (1991). Anti-mullerian hormone and natural and experimental freemartin effect. Bull. Assoc. Anat., 75: 29-32.Search in Google Scholar

Zhang T.Q., Buoen L.C., Seguin B.E., Ruth G.R., Weber A.F. (1994). Diagnosis of freemartinism in cattle: the need for clinical and cytogenetic evaluation. J. Am. Vet. Med. Assoc., 204: 1672-1675.Search in Google Scholar

Język:
Angielski
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Nauki biologiczne, Biotechnologia, Zoologia, Medycyna, Weterynaria