- -

Environmental and Genetic Factors Affecting Litter Size Components in Rabbits

RiuNet: Repositorio Institucional de la Universidad Politécnica de Valencia

Compartir/Enviar a

Citas

Estadísticas

  • Estadisticas de Uso

Environmental and Genetic Factors Affecting Litter Size Components in Rabbits

Mostrar el registro sencillo del ítem

Ficheros en el ítem

dc.contributor.author Belabbas, Rafik es_ES
dc.contributor.author Ilès, Imèn es_ES
dc.contributor.author Argente, María-José es_ES
dc.contributor.author Ezzeoug, Rym es_ES
dc.contributor.author Ainbaziz, Hacina es_ES
dc.contributor.author García, María-Luz es_ES
dc.date.accessioned 2023-07-13T10:27:23Z
dc.date.available 2023-07-13T10:27:23Z
dc.date.issued 2023-06-30
dc.identifier.issn 1257-5011
dc.identifier.uri http://hdl.handle.net/10251/194886
dc.description.abstract [EN] In rabbits, ovulation rate is, together with prenatal survival, one of the main limiting factors for litter size. Both components are affected by several factors related to females and their environment. Thus, understanding these components and their factors of variation is key in designing diets, optimisation of reproductive performance and genetic selection. In this review, authors summarise the main components of litter size and their environmental factors of variation. Genetic factors and the main results of genetic selection programmes on components of litter size are also summarised. In this regard, a negative effect of dietary restriction and reduced day light hours is found, as well as a positive effect of body condition, parity order and age of female on ovulation rate. However, an increase in deterioration of oocyte quality has been reported as ovulation rate increases, leading to decreased embryonic and foetal survival. Dietary restriction and heat stress also have a negative effect on embryonic and foetal survival, increasing the failures during gestation while good vascularisation and enough available space in uterine horn are keys to embryonic and foetal survival. Ovulation rate was proposed as indirect selection criterion to improve litter size due to higher heritability. However, this selection was relevant, but it did not modify litter size because of an increase in prenatal mortality. Uterine capacity has been directly related to prenatal survival, although its selection has also been unsuccessful in increasing litter size. es_ES
dc.language Inglés es_ES
dc.publisher Universitat Politècnica de València es_ES
dc.relation.ispartof World Rabbit Science es_ES
dc.rights Reconocimiento - No comercial - Compartir igual (by-nc-sa) es_ES
dc.subject Litter size es_ES
dc.subject Ovulation es_ES
dc.subject Prenatal survival es_ES
dc.subject Rabbits es_ES
dc.subject Selection es_ES
dc.title Environmental and Genetic Factors Affecting Litter Size Components in Rabbits es_ES
dc.type Artículo es_ES
dc.identifier.doi 10.4995/wrs.2023.18680
dc.rights.accessRights Abierto es_ES
dc.description.bibliographicCitation Belabbas, R.; Ilès, I.; Argente, M.; Ezzeoug, R.; Ainbaziz, H.; García, M. (2023). Environmental and Genetic Factors Affecting Litter Size Components in Rabbits. World Rabbit Science. 31(2):117-131. https://doi.org/10.4995/wrs.2023.18680 es_ES
dc.description.accrualMethod OJS es_ES
dc.relation.publisherversion https://doi.org/10.4995/wrs.2023.18680 es_ES
dc.description.upvformatpinicio 117 es_ES
dc.description.upvformatpfin 131 es_ES
dc.type.version info:eu-repo/semantics/publishedVersion es_ES
dc.description.volume 31 es_ES
dc.description.issue 2 es_ES
dc.identifier.eissn 1989-8886
dc.relation.pasarela OJS\18680 es_ES
dc.description.references Adams C.E. 1960. Studies on prenatal mortality in the rabbit, Oryctolagus cuniculus: the amount and distribution of loss before and after implantation. J. Endocrinol., 19: 325-344. https://doi.org/10.1677/joe.0.0190325 es_ES
dc.description.references Adams C.E. 1962. Studies on prenatal moratality in rabbit Oryctolagus cuniculus: The effect of transferring varying numbers eggs. J. Endoc., 24: 471-490. https://doi.org/10.1530/jrf.0.0010036 es_ES
dc.description.references Abecia J.A., Lozano J.M., Forcada F., Zarazaga L. 1997. Effect of level of dietary energy and protein on embryo survival and progesterone production on day eight of pregnancy in Rasa Aragonesa ewes. Anim. Reprod. Sci., 48: 209-218. https://doi.org/10.1016/s0378-4320(97)00021-3 es_ES
dc.description.references Akkuşa T., Erdoğan G. 2019. Ultrasonic evaluation of fetoplacental tissues at different intrauterine locations in rabbit. Theriogenology, 138: 16-23. https://doi.org/10.1016/j.theriogenology.2019.06.042 es_ES
dc.description.references Alshaheen T.A., Awaad M.H., Mehaisen G.M. 2021. Leptin improves the in vitro development of preimplantation rabbit embryos under oxidative stress of cryopreservation. Plos one, 16: e0246307. https://doi.org/10.1371/journal.pone.0246307 es_ES
dc.description.references Argente M.J., Santacreu M.A., Climent A., Bolet G., Blasco A. 1997. Divergent selection for uterine capacity in rabbits. J. Anim. Sci., 75: 2350-2354. https://doi.org/10.2527/1997.7592350x es_ES
dc.description.references Argente M.J., Santacreu M.A., Climent A., Blasco A. 2003a. Relationships between uterineand fetal traits in rabbit selected on uterine capacity. J. Anim. Sci., 81: 1265-1273. https://doi.org/10.2527/2003.8151265x es_ES
dc.description.references Argente M.J., Blasco A., Ortega J.A., Haley C.S., Visscher P.M. 2003b. Analyses for the presence of a major gene affecting uterine capacity inunilaterally ovariectomized rabbits. Genetics, 163: 1061-1068. https://doi.org/10.1093/genetics/163.3.1061 es_ES
dc.description.references Argente M.J., Santacreu M.A., Climent A., Blasco A. 2006. Influence of available uterine space per fetus on fetal development and prenatal survival in rabbits selected for uterine capacity. Livest. Sci., 102: 83-91. https://doi.org/10.1016/j.livprodsci.2005.11.022 es_ES
dc.description.references Argente M.J., Santacreu M.A., Climent A., Blasco A. 2008. Effect of intra uterine crowding on available uterine space per fetus in rabbits. Livest. Sci., 114: 211-219. https://doi.org/10.1016/j.livsci.2007.05.008 es_ES
dc.description.references Argente M.J., García M.L., Birlanga V., Muelas R. 2014. Relationship between cortisol and acute phase protein concentrations in female rabbits. Vet. J., 202: 172-175, https://doi.org/10.1016/j.tvjl.2014.07.020 es_ES
dc.description.references Argente M.J., Calle E.W., García M.L., Blasco A. 2017. Correlated response in litter size components in rabbits selected for litter size variability. J. Anim. Breed. Genet., 134: 505-511. https://doi.org/10.1111/jbg.12283 es_ES
dc.description.references Ashworth C.J., Antipatis C., Beattie L. 1999. Effects of preand post-mating nutritional status on hepatic function, progesterone concentration, uterine protein secretion and embryo survival in Meishan pigs. Reprod. Fertil. Dev., 11: 67-73. https://doi.org/10.1071/rd99007 es_ES
dc.description.references Asker A.A.S. 1999. Some environmental factors affecting productive and reproductive traits of rabbits. Ph.D. Thesis, Faculty of Agriculture, Zagazig University, Zagazig, Egypt. es_ES
dc.description.references Badawy A.Y., Peiró A., Blasco A., Santacreu M.A. 2019. Correlated responses on litter size traits and survival traits after two-stage selection for ovulation rate and litter size in rabbits. Animal, 13: 453-459. https://doi.org/10.1017/S1751731118002033 es_ES
dc.description.references Bakker J., Baum M.J. 2000. Neuroendocrine regulation of GnRH release in induced ovulators. Front. Neuroendocrinol., 21: 220-262. https://doi.org/10.1006/frne.2000.0198 es_ES
dc.description.references Bazer F.W., Terqui M., Martinat-Botte F. 1990. Physiological limits to reproduction. In Proc.: 4th World Congress on Genetics Applied to Livestock Production, 1990, Edinburgh, UK, 16: 292-298. es_ES
dc.description.references Bebin K., Destombes N., Robert R., Fournier E., Briens C., Gardan-Salmon D. 2016. Effect of plant extract on rabbit embryonic viability. In Proc.: 11th World Rabbit Congress, 15-18 June, 2016, Qingdao, China, 181-184. es_ES
dc.description.references Beier H.M. 2000. The discovery of uteroglobin and its significance for reproductive biology and endocrinology. Ann. N. Y. Acad. Sci., 923: 9-24. https://doi.org/10.1111/j.1749-6632.2000.tb05516.x es_ES
dc.description.references Belabbas R., Ilès I., AinBaziz H., Theau-Clément M., Berbar A., Boumahdi Z., Boulbina I., Benali N., Temim S. 2013. Characterization of local Algerian population of rabbit: Factors influencing fetal and placental development. J. Agric. Sci., 5: 3. https://doi.org/10.5539/jas.v5n3p76 es_ES
dc.description.references Belabbas R., García M.L., AinBaziz H., Berbar A., Zitouni G., Lafri M., Bouzouan M., Merrouche R., Ismail D., Boumahdi Z., Benali N., Argente M.J. 2016. Ovulation rate and early embryonic survival rate in female rabbits of a synthetic line and a local Algerian population. World Rabbit Sci., 24: 275-282. https://doi.org/10.4995/wrs.2016.5301 es_ES
dc.description.references Belabbas R., García M.L., Ainbaziz H., Berbar A., Argente M.J. 2021. Litter size component traits in two Algerian rabbit lines. World Rabbit Sci., 29: 51-58. https://doi.org/10.4995/wrs.2021.14247 es_ES
dc.description.references Ben-Jonathan N., Mershon J.L., Allen D.L., Steinmetz R.W. 1996. Extra pituitary prolactin: distribution, regulation, functions, and clinical aspects. Endocr. Rev., 17: 639-669. https://doi.org/10.1210/edrv-17-6-639 es_ES
dc.description.references Bennett G.L., Leymaster K.A., 1989. Integration of ovulation rate, potential embryonic viability and uterine capacity into a model of litter size in swine. J. Anim. Sci., 67: 1230-1241. https://doi.org/10.2527/jas1989.6751230x es_ES
dc.description.references Blasco A., Santacreu M.A., Argente M.J. 1992. Genetic parameters of ovulation rate, embyo and fetal survival in rabbits. J. Appl. Rabbit Res., 15: 247-254. es_ES
dc.description.references Blasco A., Santacreu M.A., Thompson R., Haley C.S. 1993a. Estimates of genetic parameters for ovulation rate, prenatal survival and litter size in rabbits from an elliptical experiment. Livest. Prod. Sci., 34: 163-174. https://doi.org/10.1016/0301-6226(93)90044-I es_ES
dc.description.references Blasco A., Bidanel J.P., Bolet G., Haley C.S., Santacreu M.A. 1993b. The genetics of prenatal survival of pigs and rabbits: A review. Livest. Prod. Sci., 37: 1-21. https://doi.org/10.1016/0301-6226(93)90061-L es_ES
dc.description.references Blasco A., Ortega J.A., Climent A., Santacreu M.A. 2005. Divergent selection for uterine capacity in rabbits. I. Genetic parameters and response to selection. J. Anim. Sci., 83: 2297-2302. https://doi.org/10.2527/2005.83102297x es_ES
dc.description.references Boiti C., Galeati G., Maranesi M., Lilli L., Brecchia G., Dallaglio C., Mercati F., Gobbetti A., Zerani M. 2008. Pituitary gonadotropines and receptors for estrogen and GnRH en fasted does. In Proc.: 9th World Rabbit Congress, June 10 –13, 2008, Verona, Italy, 285 - 290. es_ES
dc.description.references Bolet G., Bodin L. 1992. Les objectifs et les critères de sélection de la fécondité dans les espèces domestiques. INRA Production Animale 1992 hors sériée éléments de génétique quantitative et application aux populations animales, 5: 129-134. https://doi.org/10.20870/productions-animales.1992.5.HS.4276 es_ES
dc.description.references Bolet G., García-Ximenez F., Vicente J.S., 1992. Criteria and methodology used to characterize reproductive abilities of pure and crossbred rabbits in comparative studies. Option Méditerranéennes, série séminaires, 17: 95-104. es_ES
dc.description.references Bolet G., Theau-Clément M. 1994. Fertilization rate and preimplantation embryonic development in two rabbit strains of different fecundity, in pure breeding and crossbreeding. Anim. Reprod. Sci., 36: 153-162. https://doi.org/10.1016/0378-4320(94)90062-0 es_ES
dc.description.references Bolet G., Santacreu M.A., Argente M.J., Climent A., Blasco A. 1994. Divergent selection for uterine efficiency in unilaterally ovariectomized rabbits. I. Phenotypic and genetic parameters. In Proc.: 5th World Congress on Genetics Applied to Livestock Production, 1994, Guelph, Canada, 19: 261-264. es_ES
dc.description.references Bolet G., Esparbié J., Falières J. 1996. Relations entre le nombre de foetus par corne utérine, la taille de portée à la naissance et la croissance pondérale des lapereaux. Ann. Zootech., 45: 185-200. https://doi.org/10.1051/animres:19960207 es_ES
dc.description.references Boussit D. 1989. Reproduction et insémination artificielle en cuniculture. Association Française de Cuniculture (ed), France, 233p. es_ES
dc.description.references Brecchia G., Bonanno A., Galeati G., Federici C., Maranesi M., Godetti A., Gerani M., Boiti C. 2005. Hormonal and metabolic adaptation to fasting: effects on the hypotalamicpituitary-ovarian axis and reproductive performance on rabbit does. Domest. Anim. Endocrinol., 31: 105-22. https://doi.org/10.1016/j.domaniend.2005.09.006 es_ES
dc.description.references Brecchia G., Bonanno A., Galeati G., Federici G., Maranesi M., Gobbetti A., Zerani M., Boiti C. 2006. Hormonal and metabolic adaptation to fasting: effects on the hypothalamicpituitary-ovarian axis and reproductive performance of rabbit does. Domest. Anim. Endocrinol., 31: 105-122. https://doi.org/10.1016/j.domaniend.2005.09.006. es_ES
dc.description.references Buhi W.C., Alvarez I.M. 2003. Identification, characterization and localization of three proteins expressed by porcine oviduct. Theriogenology, 60: 225-238. https://doi.org/10.1016/s0093-691x(03)00027-x es_ES
dc.description.references Calle E.W., García M.L., Blasco A., Argente M.J., 2017. Correlated response in early embryonic development in rabbits selected for litter size variability. World Rabbit Sci., 25: 323-327. https://doi.org/10.4995/wrs.2017.6340 es_ES
dc.description.references Cardinali R., Dal Bosco A., Bonnano A., Di Grigoli A., Rebollar P.G., Lorenzo P.L., Castellini C. 2008. Connection between body condition score, chemical characteristics of body and reproductive traits of rabbit does. Livest. Sci., 116: 209-215. https://doi.org/10.1016/j.livsci.2007.10.004 es_ES
dc.description.references Cartuche L., Pascual M., Gomez E.A., Blasco A. 2014. economic weights in rabbit meat production. World Rabbit Sci., 22: 165-177. https://doi.org/10.4995/wrs.2014.1747 es_ES
dc.description.references Castellini C., Dal Bosco A., Arias-Álvarez M., Lorenzo P.L., Cardinali R., Rebollar P.G. 2010. The main factors affecting the reproductive performance of rabbit does: A review. Anim. Reprod. Sci., 122: 174-182. https://doi.org/10.1016/j.anireprosci.2010.10.003 es_ES
dc.description.references Cervero A., Horcajadas J.A., Martín J., Pellicer A., Simón C. 2004. The leptin system during human endometrial receptivity and préimplantation development. J. Clin. Endocr. Metab., 89: 2442-2451. https://doi.org/10.1210/jc.2003-032127 es_ES
dc.description.references Chilton B.S., Daniel J.R. 1987. Difference in the rabbit uterine response to progesterone as influenced by growth hormone or prolactin. J. Reprod. Fertil., 79: 581-587. https://doi.org/10.1530/jrf.0.0790581 es_ES
dc.description.references Christenson R.K., Leymaster K.A., Young L.D. 1987. Justification of unilateral hysterectomy-ovariectomy as a model to evaluate uterine capacity in swine. J. Anim. Sci., 65: 738-744. https://doi.org/10.2527/jas1987.653738x es_ES
dc.description.references Comin A., Gerin D., Cappa A., Marchi V., Renaville R., Motta M. 2002. The effect of an acute energy deficit on the hormone profile of dominant follicles in dairy cows. Theriogenology, 58: 899-910. https://doi.org/10.1016/s0093-691x(02)00922-6 es_ES
dc.description.references Cunnigham M.J., Clifton D.K., Steiner R.A. 1999. Leptin’s actions on the reproductive axis: perpectives and mechanisms. Biol. Reprod., 60: 216-222. https://doi.org/10.1095/biolreprod60.2.216 es_ES
dc.description.references Daniel J.C., Juneja S.C., Taylor S.P., Lonergan P.B., Sullivan P.K., Chilton B.S. 1988. Variability in the response of the rabbit uterus to progesterone as influenced by prolactin. J. Reprod. Fertil., 84: 13-21. https://doi.org/10.1530/jrf.0.0840013 es_ES
dc.description.references Daniel J.C., Juneja S.C. 1989. Amplification of unterine secretion by alterning prolactin-progesterone administration. J. Endocrinol., 122: R5-R6. https://doi.org/10.1677/joe.0.122r005 es_ES
dc.description.references Daoud N.M., Mahrous K.F., Ezzo O.H. 2012. Feed restriction as a biostimulant of the production of oocytes, their quality and GDF-9 gene expression in rabbit oocytes. Anim. Reprod. Sci., 136: 121-127. https://doi.org/10.1016/j.anireprosci.2012.09.011 es_ES
dc.description.references Djiane J., Durand P. 1977. Prolactin progesterone antagonism in self regulation of prolactin receptors in the mammary gland. Nature, 266: 641-643. https://doi.org/10.1038/266641a0 es_ES
dc.description.references Dollah M.A., Ramakrishnan N., Nordin Y., Sani R.A. 1990. Reproductive responses to climatic heat induced by management systems in swamp buffaloes. In Proc.: Coordination Meeting on the Use of Nuclear Techniques to Improve Domestic Buffalo Production in Asia, FAO/IAEA, 1990, Vienna, Austria, 155-166. es_ES
dc.description.references Duncan S.L.B. 1969. The partition of uterine blood flow in the pregnant rabbit. J. Physiol., 204: 421-433. https://doi.org/10.1113/jphysiol.1969.sp008921 es_ES
dc.description.references Eady S.J., Garreau H. 2008. An enterprise gross margin model to explore the influence of selection criteria for breeding programs and changes to management systems. In Proc.: 9th World Rabbit Congress, June 10-13, 2008, Verona, Italy, 61-66. es_ES
dc.description.references El-Fouly H.A., Boady A.M.A., Radwan A.A., Kamar G.A.R. 1997. Seasonal variation in some reproductive traits of Bouscat and Giza White rabbits. Egypt. J. Anim. Prod., 17: 9-19. https://doi.org/10.21608/ejap.1977.142935 es_ES
dc.description.references Fayos L., Climent A., Santacreu M.A., Gallego M., Molina I., Blasco A. 1994. Taux de fertilisation et développement embryonnaire dans deux lignées de lapin sélectionnées de façon divergente pour l’efficacité utérine: premier résultats. In Proc.: 6èmes Journées de Recherche Cunicole, 1994, la Rochelle, France, 211-213. es_ES
dc.description.references Ferguson E.M., Ashworth C.J., Edwards S.A., Hawkins N., Hepburn N., Hunter M.G. 2003. Effect of different nutritional regimens before ovulation on plasma concentrations of metabolic and reproductive hormones and oocyte maturation in gilts. Reproduction, 126: 61-71. https://doi.org/10.1530/rep.0.1260061 es_ES
dc.description.references Finn C.A. 1963. Reproductive capacity and litter size in mice: effect of age and environment. J. Reprod. Fertil., 6: 205-214. https://doi.org/10.1530/jrf.0.0060205 es_ES
dc.description.references Flint A.P.F., Sheldrick E.L. 1986. Ovarian oxytocin and the maternal recognition of pregnancy. J. Reprod. Fertil., 76: 831-839. https://doi.org/10.1530/jrf.0.0760831 es_ES
dc.description.references Ford S.P. 1997. Embryonic and fetal development in different genotypes in pigs. J. Reprod. Fertil. Suppl., 52: 165-176. es_ES
dc.description.references Fortun-Lamothe L. 2006. Energy balance and reproductive performance in rabbit does. Anim. Reprod. Sci., 93: 1-15. https://doi.org/10.1016/j.anireprosci.2005.06.009 es_ES
dc.description.references Fortun-Lamothe L., Bolet G. 1995. Les effets de la lactation sur les performances de reproduction chez la lapine. INRA. Prod. Anim., 8: 49-56. https://doi.org/10.20870/productionsanimales.1995.8.1.4105 es_ES
dc.description.references Fortun-Lamothe L., Gidenne T. 2000. The effects of size of suckled litter on intake behaviour, performance and health status of young and reproducing rabbits. Ann. Zootech., 49: 517-529. https://doi.org/10.1051/animres:2000142 es_ES
dc.description.references Fortun-Lamothe L., Prunier A., Lebas F. 1993. Effects of lactation on foetal survival and development in rabbit does mated shortly after parturition. J. Anim. Sci., 7: 1882-1886. https://doi.org/10.2527/1993.7171882x es_ES
dc.description.references Fortun-Lamothe L., Prunier A., Bolet G., Lebas F. 1999. Physiological mechanisms involved in the effects of concurrent pregnancy and lactation on foetal growth and mortality in the rabbit. Livest. Prod. Sci., 60: 229-241. https://doi.org/10.1016/S0301-6226(99)00096-2 es_ES
dc.description.references Fortun-Lamothe L., Powers S.J., Collet A., Read K.L.Q., Mariana J.C. 2000. Effects of concurrent pregnancy and References lactation in rabbit does on the growth of follicles in daughter’s ovaries. World Rabbit Sci., 8: 33-40. https://doi.org/10.4995/wrs.2000.415 es_ES
dc.description.references Fraga M.J., Lorente M., Carabano R.M., De Blas J.C. 1989. Effect of diet and of remating interval on milk composition of the doe rabbit. Anim. Prod., 48: 459-466. https://doi.org/10.1017/S0003356100040460 es_ES
dc.description.references Fuchs A.R., Cubile L., Dawood M.Y., Jorgensen F.S. 1984. Release of oxytocin and prolactin by suckling inrabbits throughout lactation. Endocrinology, 114: 462-469. https://doi.org/10.1210/endo-114-2-462 es_ES
dc.description.references Gadsby J.E. Keyes P.L., Bil C.H. 1983. Control of corpus luteum function in the pregnant rabbit: Role of estrogen and lack of a direct luteotropic role of the placenta. Endocrinol., 113: 2255-2262. https://doi.org/10.1210/endo-113-6-2255 es_ES
dc.description.references García F., Perez A. 1989. Effects of lactation and litter size on mating, ovulation and embryo viability evaluated by means of laparoscopy in multiparous rabbits. Inf. Tec. Econ. Agraria, 20: 3-10. es_ES
dc.description.references García M.L., Lavara R., Viudes-de-Castro M.P., Vicente J.S. 2000. Litter size components from two selected lines of rabbits. In Proc.: 7th World Rabbit Congress, July 4-7, 2000, Valencia, Spain, A: 133-137. es_ES
dc.description.references García M.L., Argente M.J. 2017. Exposure to high ambient temperatures alters embryology in rabbits. Int. J. Biometeorol., 61: 1555-1560. https://doi.org/10.1007/s00484-017-1334-0 es_ES
dc.description.references García M., Argente M. 2020. The genetic improvement in meat rabbits. In: Argente M., García M.L., Dalton P. (Ed). Lagomorpha Characteristics. IntechOpen. https://doi.org/10.5772/intechopen.93896 es_ES
dc.description.references García M.L., Baselga M. 2002a. Estimation of genetic response to selection in litter size of rabbits using a cryopreserved control population. Livest. Prod. Sci., 74: 45-53. https://doi.org/10.1016/S0301-6226(01)00280-9 es_ES
dc.description.references García M.L., Baselga M. 2002b. Genetic response to selection for reproductive performance in a maternal line of rabbits. World Rabbit Sci., 10: 71-76. https://doi.org/10.4995/wrs.2002.478 es_ES
dc.description.references García M.L., Muelas R., Argente M.J., Peiró R. 2021. Relationship between prenatal characteristics and body condition and endocrine profile in rabbits. Animals, 11: 95. https://doi.org/10.3390/ani11010095 es_ES
dc.description.references Garreau H., Larzul C., Tudela F., Ruesche J., Ducrocq V., Fortun-Lamothe L. 2017. Energy balance and body reserves in rabbit females selected for longevity. World Rabbit Sci., 25: 205-213. https://doi.org/10.4995/wrs.2017.5216 es_ES
dc.description.references González R.R., Caballero-Campo P., Jasper M., Mercader A., Devoto L., Pellicer A., Simón C. 2006. Leptin and leptin receptor are expressed in the human endometrium and endometrial leptin secretion is regulated by the human blastocyst. J. Clin. Endocr. Metab., 85: 4883-4888. https://doi.org/10.1210/jcem.85.12.7060 es_ES
dc.description.references Guesnet P., Demarne Y. 1987. La régulation de la lipogenèse et de la lipolyse chez les mammifères. INRA (ed), Paris, France, 153. es_ES
dc.description.references Hadjadj I., Hankele A.K., Armero E., Argente M.J., García M.L 2021. Fatty acid profile of blood plasma at mating and early gestation in rabbit. Animals, 11: 3200. https://doi.org/10.3390/ani11113200 es_ES
dc.description.references Hafez E.S.E., Tsutsumi Y. 1966. Changes in endometrial vascularity during implantation and pregnancy in the rabbit. Am. J. Anat., 118: 249-282. https://doi.org/10.1002/aja.1001180113 es_ES
dc.description.references Hewitt D.P., Mark P.J., Waddell B.J. 2006. Glucocorticoids prevent the normal increase in placental vascular endothelial growth factor expression and placental vascularity during late pregnancy in the rat. Endocrinology, 147: 5568-5574. https://doi.org/10.1210/en.2006-0825 es_ES
dc.description.references Holt J.A. 1989. Regulation of progesterone production in the rabbit corpus luteum. Biol. Reprod., 40: 201-208. https://doi.org/10.1095/biolreprod40.2.201 es_ES
dc.description.references Hulot F., Matheron G. 1981. Effets du génotype, de l’âge et de la saison sur les composantes de la reproduction chez la lapine. Ann. Génét. Sél. Anim., 13: 131-150. https://doi.org/10.1186/1297-9686-13-2-131 es_ES
dc.description.references Hulot F., Mariana J.C., Lebas F. 1982. L’établissement de la puberté chez la lapine (Folliculogénèse et ovulation): Effet du rationnement alimentaire. Reprod. Nutr. Dev., 22: 439-453. https://doi.org/10.1051/rnd:19820401 es_ES
dc.description.references Ibáñez N., Santacreu M.A., Martínez M., Climent A., Blasco A. 2006. Selection for ovulation rate in rabbits. Livest. Sci., 101: 126-133. https://doi.org/10.1016/j.livprodsci.2005.10.024 es_ES
dc.description.references Ibrahim Z.A. 1994. Some reproductive traits of newly imported Bouscat, New Zealand White and Californian breeds as affected by Egyptian environmental conditions. Egypt. J. Rabbit Sci., 4: 183-190. es_ES
dc.description.references Jänne O.A. 1981. Progesterone action in mammalian uterus. Acta. Obstet. Gyneco. Scand. Suppl., 101: 11-16. https://doi.org/10.0.3109/00016348109157805 es_ES
dc.description.references Jones C.J., Parker D.S. 1981. The metabolism of glucose, acetate, and palmitate in the lactating rabbit. Comp. Biochem. Physiol.-B Biochim., 69: 837-842. https://doi.org/10.1016/0305-0491(81)90391-6 es_ES
dc.description.references Juárez J.D., Marco-Jimenez F., Vicente J.S. 2021. Evaluation of foetal growth, litter size and reproductive performance in rabbit after 18 generations of selection for growth rate using cryopreserved embryos. Livest. Sci., 253: 104702. https://doi.org/10.1016/j.livsci.2021.104702 es_ES
dc.description.references Khalil M.H., Owen J.B., Afifi E.A. 1986. A review of phenotypic and genetic parameters associated with meat production traits in rabbits. Anim. Breed. Abstract, 54: 725-749. es_ES
dc.description.references Killian G.J. 2004. Evidence of the role of oviduct secretions in sperm function, fertilization and embryo development. Anim. Reprod. Sci., 82: 141-153. https://doi.org/10.1016/j.anireprosci.2004.04.028 es_ES
dc.description.references Laborda P., Mocé M.L., Santacreu M.A., Blasco A. 2011. Selection for ovulation rate in rabbits: Genetic parameters, direct response, and correlated response on litter size. J. Anim. Sci., 89: 2981-2987. https://doi.org/10.2527/jas.2011-3906 es_ES
dc.description.references Lebas F. 1994. Physiologie de la reproduction chez la lapine. In Proc.: Journée AERA-ASFC, la reproduction chez le lapin, 20 Janvier, 1994, 2-11. es_ES
dc.description.references Lefevre B., Caillol M. 1978. Relationship of oestrus behavior with follicular growth and sexsteroid concentration in the follicular fluid in the domestic rabbit. Ann. Biol. Anim. Biochem. Biophys., 18: 1435-1441. https://doi.org/10.1051/rnd:19780716 es_ES
dc.description.references Lin K.C., Okamura H., Mori T. 1987. Inhibition of human chrionic gonadotropin - induced ovulation andsteroıdogenesis by short term hyperprolactinemia in female rabbits. J. Endocrinol., 34:675-683. https://doi.org/10.1507/endocrj1954.34.675 es_ES
dc.description.references Lorenzo P.L., Rebollar P.G., Illera M.J., Illera J.C., Illera M., Alvarino J.M.R. 1996. Characterization of rabbit follicular oocytes and their ability to mature in vitro. Rev. Arch. Zootec. 45: 25-35. es_ES
dc.description.references MacLaughlin S.M., Walker S.K., Roberts C.T., Kleemann D., McMillen I.C. 2005. Periconceptional nutrition and the relationship between maternal body weight changes in the periconceptional period and feto-placental growth in the sheep. J. Physiol., 565: 111-124. https://doi.org/10.1113/jphysiol.2005.084996 es_ES
dc.description.references Matheron G., Poujardieu B. 1982. Ovulation induite de lapines soumises à des conditions d’ambiance différentes après le sevrage. In Proc.: 3èmes Journées de la Recherche Cunicole, 8-9, Décembre, 1982, Communication n°3. es_ES
dc.description.references Mattioli S., Maranesi M., Castellini C., Dal Bosco A., Arias-Álvarez M., Lorenzo P.L., Rebollar P.G., García-García R.M. 2021. Physiology and modulation factors of ovulation in rabbit reproduction management. World Rabbit Sci. 2021, 29: 221-229. https://doi.org/10.4995/wrs.2021.13184 es_ES
dc.description.references Marai I.F.M., El-Kelawy H.M. 1999. Effect of heat stress on the reproduction in females of rabbits. In Proc.: 1st International Conference on Indigenous Versus Acclimatized Rabbits, 1999, El-Arish-North Sinai, Egypt. es_ES
dc.description.references Marongiu M.L., Dimauro C. 2013. Preliminary study on factors influencing rabbit doe reproductive efficiency: Effect of parity, day of mating and suckling on ovarian status and estrogen levels at day 6 of pregnancy. Can. J. Vet. Res., 77: 126-130. es_ES
dc.description.references Martínez-Paredes E., Nicodemus N., Pascual J.J., García J. 2022. Challenges in rabbit doe feeding, including the young doe. World Rabbit Sci., 30: 13-34. https://doi.org/10.4995/wrs.2022.15562 es_ES
dc.description.references McNeilly A.S., Friesen H.G. 1978. Prolactin during pregnancy and lactation in the rabbit. Endocrinol., 102: 1548-1558. https://doi.org/10.1210/endo-102-5-1548 es_ES
dc.description.references Menchetti L., Brecchia G., Canali C., Cardinali R., Polisca A., Zerani M., Boiti C. 2015. Food restriction during pregnancy in rabbits: Effects on hormones and metabolites involved in energy homeostasis and metabolic programming. Res. Vet. Sci., 98: 7-12. https://doi.org/10.1016/j.rvsc.2014.11.017 es_ES
dc.description.references Merchàn M., Peiró R., Argente M.J., García M.L., Agea I., Santacreu M.A., Blasco A., Folch J.M. 2006. Candidate genes for reproductive traits in rabbits: I, oviductin gene. In Proc.: 8th World Congress on Genetics Applied to Livestock Production, 2006, Brasil, 11: 156-201. es_ES
dc.description.references Merchán M., Peiró R., Santacreu M.A., Francino O., Folch J.M. 2007. Rabbit oviductal glycoprotein 1 gene: genomic organization polymorphism analysis and mRNA expression. Mol. Reprod. Dev., 74: 687-693. https://doi.org/10.1002/mrd.20650 es_ES
dc.description.references Minuti A., Bani P., Piccioli-Cappelli F., Uboldi O., Bacciu N., Trevisi E., 2015. Metabolic and biochemical changes in plasma of the periparturient rabbit does with different litter size. Animal, 9: 614-621. https://doi.org/10.1017/S1751731114002675 es_ES
dc.description.references Mocé M.L., Santacreu M.A. 2010. Genetic improvement of litter size in rabbits: a review. In Proc.: 9th World Congress Genetic Applied for Livestock Production, 2010, Leipzig, Germany. es_ES
dc.description.references Mocé M.L., Santacreu M.A., Climent A. 2002. Effect of divergent selection for uterine capacityon progesterone, estradiol and cholesterol levels around implantation time in rabbits. World Rabbit Sci., 10: 89-97. https://doi.org/10.4995/wrs.2002.480 es_ES
dc.description.references Mocé M.L., Santacreu M.A., Climent A., Blasco A. 2004. The effect of divergent selection for uterine capacity on fetal and placental development at term in rabbits: Maternal and embryonic genetic effects. J. Anim. Sci., 82: 1046-1052.https://doi.org/10.2527/2004.8241046x es_ES
dc.description.references Muelas R., Cano P., Garcia M.L., Esquifino A., Argente M.J. 2008. Influence of FSH, LH and Prolactin on the components of litter size in rabbit does. In Proc.: 9th World Rabbit Congress, June 10-13, Verona, Italy, 405-409. es_ES
dc.description.references Mocé M.L., Peiro R., Blasco A., Santacreu M.A. 2008. Uteroglobin levels at day 6 of gestation in two lines of rabbits divergently selected for uterine capacity. In Proc.: 9th World Rabbit Congress, June 10-13, 2008, Verona, Italy, 175-178. es_ES
dc.description.references Nafeaa A., Abdel F., Ahmed S., Hallah S.F. 2011. Effect of feed restriction during pregnancy on performance andproductivity of new zealand white rabbit does. Vet. Med. Int., 839737. https://doi.org/10.4061/2011/839737 es_ES
dc.description.references Nancarrow C.D., Hill J.L. 1995. Oviduct proteins in fertilization and early embryo development. J. Reprod. Fertil., Suppl 49: 3-13. es_ES
dc.description.references Naturil-Alfonso C., Marco-Jiménez F., Jiménez-Trigos E., Saenzde-Juano M.D.,Viudes-de-Castro M.P., Lavara R., Vicente J.S. 2015. Role of embryonic and maternal genotype on prenatal survival and foetal growth in rabbit. Reprod. Domest. Anim., 50: 312-320. https://doi.org/10.1111/rda.12493 es_ES
dc.description.references Naturil-Alfonso C., Lavara R., Vicente J.S., Marco-Jiménez F. 2016. Effects of female dietary restriction in a rabbit growth line during rearing on reproductive performance and embryoquality. Reprod. Domest. Anim., 51: 114-122. https://doi.org/10.1111/rda.12653 es_ES
dc.description.references Ouhayoun J., Poujardieu B., Delmas D. 1986. Etude de la croissance et de la composition corporelle des lapins au de la de l’âge de 11 semaines. 1. Composition corporelle. In Proc.: 4èmes Journées de la Recherche Cunicole, 1986, France, Paris, n°24. es_ES
dc.description.references Parigi-Bini R., Xiccatto G. 1993. Research on the interaction among nutrition, reproduction and lactation in rabbit does. A review. World Rabbit Sci., 1: 155-161. https://doi.org/10.4995/wrs.1993.209 es_ES
dc.description.references Partridge G.G., Allan S.J., Findlay M., Corrigall W. 1984. The effects of reducing the remating interval after parturition on the reproductive performance of the commercial doe rabbit. Anim. Prod., 393-465. https://doi.org/10.1017/S0003356100032219 es_ES
dc.description.references Pascual J.J., Savietto D., Cervera C., Baselga M. 2013. Resources allocation in reproductive rabbit does: a review of feeding and genetic strategies for suitable performance. World Rabbit Sci., 21: 123-144. https://doi.org/10.4995/wrs.2013.1236 es_ES
dc.description.references Peiró R., Gallego M., Blasco A., Santacreu M.A. 2014. The effect of unilateral ovariectomy on early embryonic survival and embryo development in rabbits. World Rabbit Sci., 22: 123-127. https://doi.org/10.4995/wrs.2014.2105 es_ES
dc.description.references Peiró R., Badawy A.Y., Blasco A., Santacreu M.A. 2019. Correlated responses on growth traits after two-stage selection for ovulation rate and litter size in rabbits. Animal, 13: 2457-2462. https://doi.org/10.1017/S1751731119001423 es_ES
dc.description.references Peiró R., Quirino C., Blasco, A., Santacreu, M.A. 2021. Correlated response on growth traits and their variabilities to selection for ovulation rate in rabbits using genetic trends and a cryopreserved control population. Animals, 11: 2591. https://doi.org/10.3390/ani11092591 es_ES
dc.description.references Pilawski Z. 1969. Seasonal variations of ovulation response time after copulation in rabbits. Folia Biologica Krakow, 17: 211-217. es_ES
dc.description.references Pope W.F., First N.L. 1985. Factors affecting the survival of pig embryos. Theriogenology, 23: 91-105. https://doi.org/10.1016/0093-691X(85)90075-5 es_ES
dc.description.references Pope W.F., Xie S., Broermann D.M., Nephew K.P. 1990. Causes and consequences of early embryonic diversity in pigs. J. Reprod. Fertil., 40: 251-260. es_ES
dc.description.references Puscheck E.E., Awonuga A.O., Yang Y., Jiang Z., Rappolee D.A. 2015. Molecular biology of the stress response in the early embryo and its stem cells, in: Leese, H.J., Brison, D.R. (Eds.), Cell Signaling During Mammalian Early Embryo Development. Adv. Exp. Med. Biol., 843: 77-128. https://doi.org/10.1007/978-1-4939-2480-6_4 es_ES
dc.description.references Ragab M., Sánchez J.P., Vicente J.S., Baselga M. 2014. Litter size components in a full diallel cross of four maternal lines of rabbits. J. Anim. Sci., 92: 3231-3236. https://doi.org/10.2527/jas.2013-7286 es_ES
dc.description.references Rebollar P.G., Ubilla E., Alvarino J.M.R., Illera J.C., Silvan G. 1992. Effect of degree of sexual receptivity on post-partum plasma oestradiol and ovulatory response in rabbits. Rev. Esp. Fisiol.,1: 13-18. es_ES
dc.description.references Santacreu M.A., Viudes M.P., Blasco A. 1990. Evaluation par coelioscopie des corps jaunes et des embryons. Influence sur la taille de portée chez la lapine. Reprod. Nutr. Dev., 30: 583-588. https://doi.org/10.1051/rnd:19900503 es_ES
dc.description.references Santacreu M.A., Gou P., Blasco A. 1992. Relationship between ovulation rate, embryo survival and litter size in rabbits. Anim. Prod., 55: 271-276. https://doi.org/10.1017/S0003356100037557 es_ES
dc.description.references Santacreu M.A., Argente M.J., Mocé M.L., Blasco A. 2000. Selection for uterine capacity. II. Response to selection estimated with a cryopreserved control population. In Proc.: 7th World Rabbit Congress, Valencia, Spain, 1: 491-495. es_ES
dc.description.references Santacreu M.A., Mocé M.L., Climent A., Blasco A. 2005. Divergent selection for uterine capacity in rabbits. II. Correlated response on litter size and its components estimated with a cryopreserved control population. J. Anim. Sci., 83: 2303-2307. https://doi.org/10.2527/2005.83102303x es_ES
dc.description.references Sawyer H.R., Moeller C.L., Kowzlowski G.P. 1986. Immunocytochemical localization of neurophysin and oxytocin in ovine corpora lutea. Biol. Reprod., 34: 543-548. https://doi.org/10.1095/biolreprod34.3.543 es_ES
dc.description.references Scofield A.M. 1972. Embryonic mortality. In: D.J.A. cole (Editor), Pig production Butter Worths, London, UK, 367-384. es_ES
dc.description.references Selme M., Prud’hon M. 1973. Comparaison au cours de différentes saisons, des taux d’ovulation, d’implantations et de de survie embryonnaire chez les lapines allaitantes saillies à l’oestrus postpartum et chez les lapines témoins. In Proc.: Journées de Recherche Avicole et Cunicole, Paris, Décembre, 1973, Publication ITAVI, 55-58. es_ES
dc.description.references Smith GD., Jackson L.M., Foster D.L. 2002. Leptin regulation of reproductive function and fertility. Theriogenology, 57: 73-86. https://doi.org/10.1016/S0093-691X(01)00658-6 es_ES
dc.description.references Stephenson T.J., Stammers J.P., Hull D. 1990. Maternal to fetal transfert of free fatty acids in the in situ perfused rabbit placenta. J. Dev. Physiol., 13: 117-123. es_ES
dc.description.references Theau-Clément M. 2000. Advances in biostimulation methods applied to rabbit reproduction. In Proc.: 7th World Rabbit Congress, July 4-7, 2000, Valencia, Spain, A: 61-79. es_ES
dc.description.references Theau-Clément M. 2008. Facteurs de réussite de l’insémination et méthodes de l’induction de l’oestrus. INRA. Prod. Anim., 21: 221-230. https://doi.org/10.20870/productions-animales.2008.21.3.3394 es_ES
dc.description.references Theau-Clément M., Poujardieu B., Bellereaud J. 1990. Influence des traitements lumineux, modes de reproduction et état physiologiques sur la productivité des lapines multipare. In Proc.: 5èmes Journées de la Recherche Cunicole, 12-13 Décembre, 1990, Paris, France. es_ES
dc.description.references Theau-Clément M., Boiti C., Mercier P., Falieres J. 2000. Description of the ovarian status and fertilizing ability of primiparous rabbit does at different lactation stage. In Proc.: 7th World Rabbit Congress, July 4-7, 2000, Valencia, Spain, 259-266. es_ES
dc.description.references Torner H., Kubelka M., Heleil B., Tomek W., Aim H., Kuzmina T., Guiard V. 2001. Dynamics of meiosis and protein kinase activities in bovine oocytes correlated to prolactin treatment and follicle size. Theriogenology, 55: 885-99. https://doi.org/10.1016/s0093-691x(01)00451-4 es_ES
dc.description.references Torres S. 1982. Etude de la mortalité embryonnaire chez la lapine. In Proc.: 3èmes Journées de la Recherche Cunicole, 8-9 Décembre, 1982, Paris, n°15. es_ES
dc.description.references Torres S., Hulot F., Meunier M., Sevellec C. 1987. Comparative study of preimplantation development and embryonic loss in two rabbit strains. Reprod. Nutr. Dev., 27: 707-714. https://doi.org/10.1051/rnd:19870510 es_ES
dc.description.references Ubilla E., Rebollar P.G., Pazo D., Esquifino A., Alvarino J.M. 2000. Effects of doe litter separation on endocrinological and productivity variables in lactating rabbits. Livest. Sci., 67: 67-74. https://doi.org/10.1016/S0301-6226(00)00196-2 es_ES
dc.description.references Ulberg L.C., Rampacek G.B. 1974. Embryonic and fetal development: Uterine components and influences. J. Anim. Sci., 38: 1013. https://doi.org/10.2527/jas1974.3851013x es_ES
dc.description.references Vicente J.S., Llobat L., Viudes-de-Castro M.P., Lavara R., Baselga M. Marco-Jiménez F. 2012. Gestational losses in a rabbit line selected for growth rate. Theriogenology, 77: 81-88. https://doi.org/10.1016/j.theriogenology.2011.07.019 es_ES
dc.description.references Vicente J.S., Llobat L., Jiménez-Trigos E, Lavara R., Marco-Jiménez F. 2013. Effect of embryonic and maternal genotype on embryo and foetal survival in rabbit. Reprod. Dom. Anim., 48: 402-406. https://doi.org/10.1111/rda.12087 es_ES
dc.description.references Vicente J.S., Marco-Jiménez F., Pérez-García M., Naturil-Alfonso C., Peñaranda D.S., Viudes-de-Castro M.P. 2022. Oocyte quality and in vivo embryo survival after ovarian stimulation in nulliparous and multiparous rabbit does. Theriogenology, 189: 53-58. https://doi.org/10.1016/j.theriogenology.2022.06.003 es_ES
dc.description.references Viudes-de-Castro P., Santacreu M.A., Vicente J.S. 1991. Effet de la concentration énergétique de l’alimentation sur les pertes embryonnaires et foetales chez la lapines. Reprod. Nutr. Dev., 31: 525-534. https://doi.org/10.1051/rnd:19910505 es_ES
dc.description.references Wells K., Robert B., O’Hara R.B., Cooke B.D., Mutze G.J., Prowse T.A.A., Fordham D.A., 2016. Environmental effects and individual body condition drive seasonal fecundity of rabbits: identifying acute and lagged processes. Oecologia, 181: 853-864. https://doi.org/10.1007/s00442-016-3617-2 es_ES
dc.description.references Wintenberger-Torres S. 1974. Relation entre la taille des blastocystes de lapine a l´implantation et la survie embryonnaire. Ann. Biol. Anim. Bioch. Biophys., 14: 41-52. https://doi.org/10.1051/rnd:19740105 es_ES
dc.description.references Young K.H., Krading R.R., Bazer F.W. 1989. Effects of prolactin on conceptus survival and uterine secretory activity in pigs. J. Reprod. Fertil., 86: 713-722. https://doi.org/10.1530/jrf.0.0860713 es_ES
dc.description.references Zarrow M.X., Denenberg V.H., Anderson C.O. 1995. Rabbit: frequency of suckling in the pup. Science, 150: 1835-1836. https://doi.org/10.1126/science.150.3705.1835 es_ES
dc.description.references Zerani M., Boiti C., Zampini D., Brecchia G., Da ll'Aglio C., Ceccarelli P., Gobbetti A. 2004. Ob receptor in rabbit ovary and leptin in vitro regulation of corpora lutea. J. Endocr., 183: 279-288. https://doi.org/10.1677/joe.1.05507 es_ES
dc.description.references Zerrouki N., Bolet G., Theau-Clément M. 2009. Etude des composantes biologiques de la prolificité de lapines de population locale algérienne. In Proc.: 13èmes Journées de la Recherche Cunicole, INRA-ITAVI, Novombre 17-18, 2009, Le Mans, France, 153-156. es_ES
dc.description.references Ziadi C., Mocé ML., Laborda P., Blasco A., Santacreu M.A. 2013. Genetic selection for ovulation rate and litter size in rabbits: Estimation of genetic parameters and direct and correlated responses. J. Anim. Sci., 91: 3113-20. https://doi.org/10.2527/jas.2012-6043 es_ES


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

Mostrar el registro sencillo del ítem