Indian Journal of Animal Research
SCOPUSWeb of Science
  • Year: 2023
  • Volume: 57
  • Issue: 10

Expression profile of acetyl CoA carboxylase beta (ACACB) gene during the pre and post-hatch period in chicken

  • Author:
  • Ch. Shiva Prasad1, R. Vinoo1, R.N. Chatterjee2, M. Muralidhar1, D. Narendranath1, K. Aswani Kumar1, D. Divya2, G. Sushma1, T.K. Bhattacharya2,*
  • Total Page Count: 7
  • Page Number: 1272 to 1278

1N.T.R. College of Veterinary Science, Gannavaram-521 101, Andhra Pradesh, India

2ICAR-Directorate of Poultry Research, Rajendranagar, Hyderabad-500 030, Telangana, India

*Corresponding Author: T.K. Bhattacharya, ICAR-Directorate of Poultry Research, Rajendranagar, Hyderabad-500 030, Telangana, India, Email: bhattacharyatk@gmail.com

Online published on 4 November, 2023.

Abstract

Acetyl-CoA Carboxylase Beta (ACACB) plays a key role in fatty acid oxidation and was known to be involved in production of very-long-chain fatty acid and other compounds needed for proper development. This gene is mainly expressed in the tissues of heart, muscle, liver and colon. It chiefly involved in the production of malonyl-coA, a potent inhibitor of carnitine palmitoyl transferase I (CPT-I) enzyme needed in transport of long-chain fatty acyl-coAs to the mitochondria for β-oxidation.

The present study was conducted to explore the expression pattern of the ACACB gene in breast muscle tissue during pre-hatch embryonic day (ED) 5th to 18th and post-hatch (18th, 22nd and 40th week of age) periods of White leghorn (IWI line) by using Quantitative real-time PCR (qPCR). Then, fold change of ACACB gene expression was calculated.

Our study showed that the ACACB gene expression was down-regulated during embryonic stages from ED6 to ED18. The gene expression was also down-regulated during adult stages i.e. on 22nd and 40th week of age. This result indicated that the initial expression of the ACACB gene is required for embryo development and during adult periods, low gene expression leads to the less fat deposition in muscle of layer chicken. Finally, it can be concluded that there was a differential expression pattern of the ACACB gene during the pre-hatch embryonic and post-hatch adult periods to mitigate varied requirements of lipids during different physiological stages in layer chicken.

Keywords

ACACB gene, IWI chicken, Pre and post-hatch, QPCR