- -

Genetic structure of a small closed population of the New Zealand white rabbit through pedigree analyses

RiuNet: Repositorio Institucional de la Universidad Politécnica de Valencia

Compartir/Enviar a

Citas

Estadísticas

  • Estadisticas de Uso

Genetic structure of a small closed population of the New Zealand white rabbit through pedigree analyses

Mostrar el registro completo del ítem

Sakthivel, M.; Balasubramanyam, D.; Kumarasamy, P.; Raja, A.; Anilkumar, R.; Gopi, H.; Devaki, A. (2018). Genetic structure of a small closed population of the New Zealand white rabbit through pedigree analyses. World Rabbit Science. 26(2):101-112. https://doi.org/10.4995/wrs.2018.7426

Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/104845

Ficheros en el ítem

Metadatos del ítem

Título: Genetic structure of a small closed population of the New Zealand white rabbit through pedigree analyses
Autor: Sakthivel, M. Balasubramanyam, D. Kumarasamy, P. Raja, A. Anilkumar, R. Gopi, H. Devaki, A.
Fecha difusión:
Resumen:
[EN] The genetic structure of a small population of New Zealand White rabbits maintained at the Sheep Breeding and Research Station, Sandynallah, The Nilgiris, India, was evaluated through pedigree analyses. Data on pedigree ...[+]
Palabras clave: Effective population size , Genetic structure , Inbreeding , Pedigree analysis , Rabbit
Derechos de uso: Reserva de todos los derechos
Fuente:
World Rabbit Science. (issn: 1257-5011 ) (eissn: 1989-8886 )
DOI: 10.4995/wrs.2018.7426
Editorial:
Universitat Politècnica de València
Versión del editor: https://doi.org/10.4995/wrs.2018.7426
Agradecimientos:
The authors acknowledge the support provided by Tamil Nadu Veterinary and Animal Sciences University (TANUVAS) for successful completion of the study.
Tipo: Artículo

References

Alderson G.I.H. 1992. A system to maximize the maintenance of genetic variability in small populations. In L. Alderson & I. Bodo (ed). Genetic Conservation of Domestic Livestock II. CABI, Wallingford, UK, 18-29.

Boichard D., Maignel L., Verrier E. 1997. The value of using probabilities of gene origin to measure genetic variability in a population. Genet. Sel. Evol., 29: 5-23. https://doi.org/10.1186/1297-9686-29-1-5

Cervantes I., Goyache F., Molina A., Valera M., Gutiérrez J.P. 2008. Application of individual increase in inbreeding to estimate realized effective sizes from real pedigrees. J. Anim. Breed. Genet., 125: 301-310. https://doi.org/10.1111/j.1439-0388.2008.00755.x [+]
Alderson G.I.H. 1992. A system to maximize the maintenance of genetic variability in small populations. In L. Alderson & I. Bodo (ed). Genetic Conservation of Domestic Livestock II. CABI, Wallingford, UK, 18-29.

Boichard D., Maignel L., Verrier E. 1997. The value of using probabilities of gene origin to measure genetic variability in a population. Genet. Sel. Evol., 29: 5-23. https://doi.org/10.1186/1297-9686-29-1-5

Cervantes I., Goyache F., Molina A., Valera M., Gutiérrez J.P. 2008. Application of individual increase in inbreeding to estimate realized effective sizes from real pedigrees. J. Anim. Breed. Genet., 125: 301-310. https://doi.org/10.1111/j.1439-0388.2008.00755.x

Duchev Z., Distl O., Groeneveld E. 2006. Early warning system for loss of diversity in European livestock breeds. Arch. Anim. Breed., 49: 521-531. https://doi.org/10.5194/aab-49-521-2006

Dunner S., Checa M.L., Gutierrez J.P., Martin J.P., Cañon J. 1998. Genetic analysis and management in small populations: the Asturcon pony as an example. Genetics Selection Evolution 30: 397-405. https://doi.org/10.1186/1297-9686-30-4-397

Falconer D.S., Mackay T.F.C. 1996. Introduction to Quantitative Genetics. Longmans Green, Harlow, Essex, UK.

Fernández J., Toro M.A., Caballero A. 2003. Fixed contributions designs vs. minimization of global conancestry to control inbreeding in small populations. Genetics, 165: 885-894.

González-Recio O., López de Maturana E., Gutiérrez J.P. 2007. Inbreeding depression on female fertility and calving ease in Spanish dairy cattle. J. Dairy Sci., 90: 5744-5752. https://doi.org/10.3168/jds.2007-0203

Gowane G.R., Chopra A., Misra S.S., Prince L.L.L. 2014. Genetic diversity of a nucleus flock of Malpura sheep through pedigree analyses. Small Ruminant Res., 120: 35-41. https://doi.org/10.1016/j.smallrumres.2014.04.016

Goyache F., Gutiérrez J.P., Fernández I., Gomez E., Alvarez I., Díez J., Royo I.J. 2003. Using pedigree information to monitor genetic variability of endangered populations: the Xalda sheep breed of Asturias as an example. J. Anim. Breed. Genet., 120: 95-103. https://doi.org/10.1046/j.1439-0388.2003.00378.x

Gutiérrez J.P., Altarriba J., Díaz C., Quintanilla A.R., Cañón J., Piedrafita J. 2003. Genetic analysis of eight Spanish beef cattle breeds. Genet. Sel. Evol., 35: 43-64. https://doi.org/10.1051/gse:2002035

Gutiérrez J.P., Cervantes I., Goyache F. 2009. Improving the estimation of realized effective population sizes in farm animals. J. Anim. Breed. Genet., 126: 327-332.

https://doi.org/10.1111/j.1439-0388.2009.00810.x

Gutiérrez J.P., Cervantes I., Molina A., Valera M., Goyache F. 2008. Individual increase in inbreeding allows estimating realized effective sizes from pedigrees. Genet. Sel. Evol., 40: 359-378. https://doi.org/10.1051/gse:2008008

Gutiérrez J.P., Goyache F. 2005. A note on ENDOG: a computer program for analyzing pedigree information. J. Anim. Breed. Genet., 122: 172-176. https://doi.org/10.1111/j.1439-0388.2005.00512.x

Hill W.G. 1979. A note on effective population size with overlapping generations. Genetics, 92: 317-322.

Lacy R.C. 1989. Analysis of founder representation in pedigrees: founder equivalents and founder genome equivalents. Zoo Biol., 8: 111-123. https://doi.org/10.1002/zoo.1430080203

Leroy G., Mary-Huard T., Verrier E., Danvy S., Charvolin E., Danchin-Burge C. 2013. Methods to estimate effective population size using pedigree data: examples in dog, sheep, cattle and horse. Genet. Sel. Evol., 45: 1-10. https://doi.org/10.1186/1297-9686-45-1

Maignel L., Boichard D., Verrier E. 1996. Genetic variability of French dairy breeds estimated form pedigree information. Interbull Bull., 14: 49-54.

Martín de la Rosa A.J., Cervantes I., Gutiérrez J.P. 2016. Equivalent effective population size mating as a useful tool in the genetic management of the Ibicenco rabbit breed (Conill Pages d'Eivissa). Czech J. Anim. Sci., 61: 108-116. https://doi.org/10.17221/8783-CJAS

Martínez R.A., García D., Gallego J.L., Onofre G., Pérez J., Cañón J. 2008. Genetic variability in Colombian Creole cattle populations estimated by pedigree information. J. Anim. Sci., 86: 545-552. https://doi.org/10.2527/jas.2007-0175

Meuwissen T.H.E. 1991. Expectation and variance of genetic gain in open and closed nucleus and progeny testing schemes. Anim. Prod., 53: 133-141. https://doi.org/10.1017/S0003356100020043

Meuwissen T.H.E. 2009. Towards consensus on how to measure neutral genetic diversity? J. Anim. Breed. Genet., 126: 333-334. https://doi.org/10.1111/j.1439-0388.2009.00839.x

Meuwissen T.I., Luo Z. 1992. Computing inbreeding coefficients in large populations. Genet. Sel. Evol., 24: 305-303. https://doi.org/10.1186/1297-9686-24-4-305

Miglior F., Burnside E.B., Dekkers J.C. 1995. Non additive genetic effects and inbreeding depression for somatic cell counts of Holstein cattle. J. Dairy Sci., 78: 1168-1173.

https://doi.org/10.3168/jds.S0022-0302(95)76734-0

Moura A.S.A.M.T., Polastre R., Wechsler F.S. 2000. Dam and litter inbreeding and environmental effects on litter performances in Botucatu rabbits. World Rabbit Sci., 8: 151-157. https://doi.org/10.4995/wrs.2000.433

Nagy I., Curik I., Radnai I., Cervantes I., Gyovai P., Baumung R., Farkas J., Szendrő Zs. 2010. Genetic diversity and population structure of the synthetic Pannon White rabbit revealed by pedigree analyses. J. Anim.Sci., 88: 1267-1275. https://doi.org/10.2527/jas.2009-2273

Nagy I., Farkas J., Onika-Szvath S., Radnai I., Szendrő Zs. 2011. Genetic parameters and inbreeding depression of litter weight in Pannon White rabbits. Agric. Conspec. Sci., 76: 231-233.

Nagy I., Gyovai P., Farkas J., Radnai I., Eles V., Szendro Zs. 2012. Effects of selection and inbreeding on growth and carcass traits of Pannon terminal line rabbits. In Proc.. 10th World Rabbit Congress, 3-6 September 2012, Sharm El-Sheikh, Egypt, 93-96.

Panetto J.C.C., Gutiérrez J.P., Ferraz J.B.S., Cunha D.G., Golden B.L. 2010. Assessment of inbreeding depression in a Guzerat dairy herd: Effects of individual increase in inbreeding coefficients on production and reproduction. J. Dairy Sci., 93: 4902-4912. https://doi.org/10.3168/jds.2010-3197

Pedrosa V.B., Santana Jr. M.L., Oliveira P.S., Eler J.P., Ferraz J.B.S. 2010. Population structure and inbreeding effects on growth traits of Santa Ines sheep in Brazil. Small Ruminant Res., 93: 135-139. https://doi.org/10.1016/j.smallrumres.2010.05.012

Pérez-Enciso M. 1995. Use of uncertain relationship matrix to compute effective population size. J. Anim. Breed. Genet., 112: 327-332. https://doi.org/10.1111/j.1439-0388.1995.tb00574.x

Planinc M., Kermauner A., Kovac M., Malovrh S. 2012. Pedigree analysis in the Sika rabbits in Slovenia. Acta Agr. Slov., Supplement 3: 171-173.

Rafat S.A., Allain D., de Rochambeau H. 2009. Genetic description of a divergent selection experiment in Angora rabbits with overlapping generations. J. Anim. Breed. Genet., 126: 189-197. https://doi.org/10.1111/j.1439-0388.2008.00769.x

Santana Jr M.L., Oliveira P.S., Eler J.P., Gutiérrez J.P., Ferraz J.B.S. 2012. Pedigree analysis and inbreeding depression on growth traits in Brazilian Marchigiana and Bonsmara breeds. J. Anim. Sci. 90: 99-108. https://doi.org/10.2527/jas.2011-4079

Sorensen A.C., Sorensen M.K., Berg P. 2005. Inbreeding in Danish dairy cattle breed. J. Dairy Sci., 88: 1865-1872. https://doi.org/10.3168/jds.S0022-0302(05)72861-7

Valera M., Molina A., Gutiérrez J.P., Gomes I., Goyache F. 2005. Pedigree analyses in the Andalusian horse: population structure, genetic variability and influence of the Carthusian strain. Livest. Prod. Sci., 95: 57-66. https://doi.org/10.1016/j.livprodsci.2004.12.004

Venkataramanan R., Subramanian A., Sivaselvam S.N., Sivakumar T., Sreekumar C., Anilkumar R., Iyue M. 2013. Pedigree analysis of the Nilagiri sheep of South India. Anim. Genet. Resour., 53: 11-18. https://doi.org/10.1017/S2078633613000301

Wright S. 1931. Evolution in Mendelian populations. Genetics, 16: 97-159.

[-]

recommendations

 

Este ítem aparece en la(s) siguiente(s) colección(ones)

Mostrar el registro completo del ítem