Original Article

Differential Expression Profiling of Myogenic Regulatory Factor Genes in Postnatal Longissimus dorsi Muscle of Indigenous and Large White Yorkshire Breeds of Pigs

Year: 2021 | Month: February | Volume 11 | Issue 1

References (24)

1.Allen, N.S. 2010. Photochemistry and photophysics of polymeric materials. John Wiley & Sons.

View at Google Scholar

2.Carvajal, J.J., Keith, A. and Rigby, P.W. 2008. Global transcriptional regulation of the locus encoding the skeletal muscle determination genes Mrf4 and Myf5. Genes Dev., 22(2): 265-276.

View at Google Scholar

3.Chhabra, M.B. and Samantaray, S. 2013. Sarcocystis and sarcocystosis in India: status and emerging perspectives. J. Parasit. Dis., 37(1): 1-10.

View at Google Scholar

4.Du, Q. and Wang, D. 2003. Tetrahedral mesh generation and optimization based on centroidal Voronoi tessellations. Int. J. Numer. Meth. Eng., 56(9): 1355-1373.

View at Google Scholar

5.Erkens, T., Van Poucke, M., Vandesompele, J., Goossens, K., Van Zeveren, A. and Peelman, L.J. 2006. Development of a new set of reference genes for normalization of real-time RT- PCR data of porcine backfat and longissimus dorsi muscle, and evaluation with PPARGC1A. BMC Biotechnol., 6(1): 41.

View at Google Scholar

6.Giordani, J., Bajard, L., Demignon, J., Daubas, P., Buckingham, M. and Maire, P. 2007. Six proteins regulate the activation of Myf5 expression in embryonic mouse limbs. PNAS, 104(27): 11310-11315.

View at Google Scholar

7.Hwang, Y. H., Kim, G.D., Jeong, J.Y., Hur, S.J. and Joo, S.T. 2010. The relationship between muscle fiber characteristics and meat quality traits of highly marbled Hanwoo (Korean native cattle) steers. Meat Sci., 86(2):456-461.

View at Google Scholar

8.Kassar-Duchossoy, L., Gayraud-Morel, B., Gomès, D., Rocancourt, D., Buckingham, M., Shinin, V., and Tajbakhsh, S. 2004. Mrf4 determines skeletal muscle identity in Myf5: Myod double-mutant mice. Nature, 431(7007): 466-471.

View at Google Scholar

9.Kaur, M., Kumar, A., Siddaraju, N. K., Fairoze, M. N., Chhabra, P., Ahlawat, S. and Arora, R. 2020. Differential expression of miRNAs in skeletal muscles of Indian sheep with diverse carcass and muscle traits. Sci. Rep., 10(1): 1-11.

View at Google Scholar

10.Kim, D.C., Seo, S., Ahn, S.E., Suh, D.S., Lee, M.J., Park, B. H. and Lee, J.E. 2006. Electrical observations of filamentary conductions for the resistive memory switching in NiO films. Appl. Phys. Lett., 88(20): 202102.

View at Google Scholar

11.Maak, T. and Pless, N.M. 2006. Responsible leadership in a stakeholder society–a relational perspective. J. Bus. Ethics, 66(1): 99-115.

View at Google Scholar

12.Mesires, N.T. and Doumit, M.E. 2002. Satellite cell proliferation and differentiation during postnatal growth of porcine skeletal muscle. Am. J. Physiol. Cell Physiol., 282(4): C899-C906.

View at Google Scholar

13.Op’t Eijnde, B., Ursø, B., Richter, E. A., Greenhaff, P. L., and Hespel, P. 2001. Effect of oral creatine supplementation on human muscle GLUT4 protein content after immobilization. Diabetes, 50(1): 18-23.

View at Google Scholar

14.Patruno, M., Caliaro, F., Maccatrozzo, L., Sacchetto, R., Martinello, T., Toniolo, L., and Mascarello, F. 2008. Myostatin shows a specific expression pattern in pig skeletal and extraocular muscles during pre-and post-natal growth. Differentiation, 76(2): 168-181.

View at Google Scholar

15.Ropka-Molik, K., Eckert, R., and Piórkowska, K. 2011. The expression pattern of myogenic regulatory factors MyoD, Myf6 and Pax7 in postnatal porcine skeletal muscles. Gene Expr. Patterns, 11(1-2): 79-83.

View at Google Scholar

16.Rozen, S., and Skaletsky, H. 2000. Primer3 on the WWW for general users and for biologist programmers. Curr. Protoc. Bioinformatics, 365-386.

View at Google Scholar

17.Sodhi, S.S., Song, K.D., Ghosh, M., Sharma, N., Lee, S.J., Kim, J.H. and Jeong, D.K. 2014. Comparative transcriptomic analysis by RNA-seq to discern differential expression of genes in liver and muscle tissues of adult Berkshire and Jeju Native Pig. Gene, 546(2): 233-242.

View at Google Scholar

18.Sulabh, S., Shivhare, P., Kumari, A., Kumar, M. and Nimmanapalli, R. 2017. Status of pig rearing in India. Int. J. Vety. Sci. Ani. Husband., 2(3): 30-32.

View at Google Scholar

19.te Pas, A.B. and Walther, F.J. 2007. A randomized, controlled trial of delivery-room respiratory management in very preterm infants. Pediatr., 120(2): 322-329.

View at Google Scholar

20.White, R.B., Biérinx, A.S., Gnocchi, V.F. and Zammit, P.S. 2010. Dynamics of muscle fibre growth during postnatal mouse development. BMC Dev. Biol., https://doi.org/10.1186/1471- 213X-10-21.

View at Google Scholar

21.Wyszy?ska-Koko, J., and Kury?, J. 2004. Porcine MYF6 gene: sequence, homology analysis, and variation in the promoter region. Anim. Biotechnol., 15(2): 159-173.

View at Google Scholar

22.Xu, Y., Shi, T., Zhou, Y., Liu, M., Klaus, S., Lan, X., Lei, C., and Chen, Hong. 2018. A novel PAX7 10-bp indel variant modulates promoter activity, gene expression and contributes to different phenotypes of Chinese cattle. Sci. Rep., 8: 1724.

View at Google Scholar

23.Yang, S.Y., Ryu, I., Kim, H.Y., Kim, J.K., Jang, S.K. and Russell, T.P. 2006. Nanoporous membranes with ultrahigh selectivity and flux for the filtration of viruses. Adv. Mater, 18(6): 709- 712.

View at Google Scholar

24.Yin, H., Price, F. and Rudnicki, M.A. 2013. Satellite Cells and the Muscle Stem Cell Niche. Physiol. Rev., 93(1): 23–67.

View at Google Scholar

@ Journal of Animal Research | In Association with Association of Mastitis

30602123 - Visitors since March 23, 2019