Expression profile of follicular genes vis-à -vis season and cyclicity in buffalo


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Authors

  • JEROME A Scientist, ICAR-Central Institute for Research on Buffaloes, Hisar, Haryana 125001 India
  • S K SRIVASTAVA Principal Scientist, ICAR-Central Institute for Research on Buffaloes, Hisar, Haryana 125001 India
  • R K SHARMA Principal Scientist, ICAR-Indian Veterinary Research Institute, Izatnagar, Uttar Pradesh 243 122 India

https://doi.org/10.56093/ijans.v85i5.48585

Keywords:

Buffalo, Cyclicity, Follicle, Gene expression, Season

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References

Argov N, Moallem U and Sklan D. 2005. Summer heat stress alters the mRNA expression of selective-uptake and endocytotic receptors in bovine ovarian cells. Theriogenology 64: 1475–89. DOI: https://doi.org/10.1016/j.theriogenology.2005.02.014

Badinga L, Thatcher W W, Diaz T, Drost M and Wolfenson D. 1993. Effect of environmental heat-stress on follicular development and steroidogenesis in lactating Holstein cows. Theriogenology 39 (4): 797–810. DOI: https://doi.org/10.1016/0093-691X(93)90419-6

Bao B and Garverick H A. 1998. Expression of steroidogenic enzyme and gonadotropin receptor genes in bovine follicles during ovarian follicular waves: a review. Journal of Animal Science 76: 1903–21. DOI: https://doi.org/10.2527/1998.7671903x

Dangi S S, Gupta M, Maurya D, Yadav V P, Panda R P, Singh G, Mohan N H, Bhure S K, Das B C, Bag S, Mahapatra R, Sharma G T and Sarkar M. 2012. Expression profile of HSP genes during different seasons in goats (Capra hircus). Tropical Animal Health and Production 44: 1905–12. DOI: https://doi.org/10.1007/s11250-012-0155-8

Evans A C, Ireland J L H, Winn M E, Lonergan P, Smith G W, Coussens P M and Ireland J J. 2004. Identification of genes involved in apoptosis and dominant follicle development during follicular waves in cattle. Biology of Reproduction 70: 1475–84. DOI: https://doi.org/10.1095/biolreprod.103.025114

Furtado C L M, Priscilavendramini Silva, Marta Fonseca Martinsguimarães, Nicola Vergara Lopes Serão, José Domingosguimarães, Simone Eliza Facioni Guimarães. 2010. Differential expression of genes in follicular cells of swines. Revista Brasileira de Zootecnia 39 (5): 1023–28. DOI: https://doi.org/10.1590/S1516-35982010000500012

Ginther O J, Wiltbank M C, Fricke P M, Gibbons J R and Kot K. 1996. Selection of the dominant follicle in cattle. Biology of Reproduction 55: 1187–94. DOI: https://doi.org/10.1095/biolreprod55.6.1187

Hansen P J. 2013. Antecedents of mammalian fertility: Lessons from the heat-stressed cow regarding the importance of oocyte competence for fertilization and embryonic development. Animal Frontiers 3 (4): 34–38. DOI: https://doi.org/10.2527/af.2013-0031

Hansen P J. 2009. Effects of heat stress on mammalian reproduction. Philosophical Transactions of the Royal Society B 364 (1534): 3341–50. DOI: https://doi.org/10.1098/rstb.2009.0131

Irving-Rodgers H F, Harland M L, Sullivan T R and Rodgers R J. 2009. Studies of granulosa cell maturation in dominant and subordinate bovine follicles: novel extracellular matrix focimatrix is co-ordinately regulated with cholesterolsidechain cleavage CYP11A1. Reproduction 137: 825–34. DOI: https://doi.org/10.1530/REP-08-0485

Janowskia, D, Salilew-Wondimb D, Tornera H, Tesfaye D, Ghanemc B N, Tomeka W, El-Sayedc A, Schellander B K and Hölkerb M. 2012. Incidence of apoptosis and transcript abundance in bovine follicular cells is associated with the quality of the enclosed oocyte. Theriogenology 78: 656–69. DOI: https://doi.org/10.1016/j.theriogenology.2012.03.012

Jyotsna U R and Medhamurthy R. 2009. Standardization and validation of an induced ovulation model system in buffalo cows: Characterization of gene expression changes in the periovulatory follicle. Animal Reproduction Science 113: 71– 81. DOI: https://doi.org/10.1016/j.anireprosci.2008.08.001

Ken-Go Hayashi, Ushizawa K, Misahosoe and Takahashi T. 2010. Differential genome-wide gene expression profiling of bovine largest and second-largest follicles: identification of genes associated with growth of dominant follicles. Reproductive Biology and Endocrinology 8:11. DOI: https://doi.org/10.1186/1477-7827-8-11

Pfaffl M W. 2001. A new mathematical model for relative quantification in real-time RT-PCR. Nucleic Acids Research 29 (9): e45. DOI: https://doi.org/10.1093/nar/29.9.e45

Pieterse M C, Kappen K A, Kruip T A and Taverne M A.1988. Aspiration of bovine oocytes during transvaginal ultrasound scanning of the ovaries. Theriogenology 30:751–62. DOI: https://doi.org/10.1016/0093-691X(88)90310-X

Rao J U, Shah K B, Puttaiah J and Rudraiah M. 2011. Gene expression profiling of preovulatory follicle in the buffalo cow: Effects of increased IGF-I concentration on periovulatory events. PLoS ONE 6 (6): e20754. doi:10.1371/journal.pone.0020754. DOI: https://doi.org/10.1371/journal.pone.0020754

Snedecor G W and Cochran W G. 1989. Statistical Methods. 8th edn. Iowa State University Press.

Valdez K E, Peder Cuneo S and Turzillo A M. 2005. Regulation of apoptosis in the atresia of dominant bovine follicles of the first follicular wave following ovulation. Reproduction 130: 71–81. DOI: https://doi.org/10.1530/rep.1.00430

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Submitted

2015-05-15

Published

2015-05-15

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Short-Communication

How to Cite

A, J., SRIVASTAVA, S. K., & SHARMA, R. K. (2015). Expression profile of follicular genes vis-à -vis season and cyclicity in buffalo. The Indian Journal of Animal Sciences, 85(5), 514–516. https://doi.org/10.56093/ijans.v85i5.48585
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