107
Views
0
CrossRef citations to date
0
Altmetric
Research Articles

Detection of single nucleotide polymorphism in HTR4 and its relationship with growth traits in sheep

, , , ORCID Icon, , , , , , , , , , & show all

References

  • Zhang DY, Zhang XX, Li FD, et al. Whole-genome resequencing reveals molecular imprints of anthropogenic and natural selection in wild and domesticated sheep. Zool Res. 2022;43(5):695–705.
  • Cheng J, Zhang X, Li F, et al. Detecting single nucleotide polymorphisms in MEF2B and UCP3 and elucidating their association with sheep growth traits. DNA Cell Biol. 2021;40(12):1554–1562.
  • Bayer H, Müller T, Myrtek D, et al. Serotoninergic receptors on human airway epithelial cells. Am J Respir Cell Mol Biol. 2007;36(1):85–93.
  • Bach T, Syversveen T, Kvingedal AM, et al. 5HT4(a) and 5-HT4(b) receptors have nearly identical pharmacology and are both expressed in human atrium and ventricle. Naunyn Schmiedebergs Arch Pharmacol. 2001;363(2):146–160.
  • Hegde SS, Eglen RM. Peripheral 5-HT4 receptors. FASEB J. 1996;10(12):1398–1407.
  • Hodge E, et al. HTR4 gene structure and altered expression in the developing lung. Respir Res. 2013;14(1):77.
  • Bockaert J, Claeysen S, Compan V, et al. 5-HT(4) receptors: history, molecular pharmacology and brain functions. Neuropharmacology. 2008;55(6):922–931.
  • Coupar IM, Desmond PV, Irving HR. Human 5-HT(4) and 5-HT(7) receptor splice variants: are they important? Curr Neuropharmacol. 2007;5(4):224–231.
  • Milligan G. G protein-coupled receptor hetero-dimerization: contribution to pharmacology and function. Br J Pharmacol. 2009;158(1):5–14.
  • Berger M, Gray JA, Roth BL. The expanded biology of serotonin. Annu Rev Med. 2009;60:355–366.
  • Kato T. Molecular genetics of bipolar disorder. Neurosci Res. 2001;40(2):105–113.
  • Airan RD, Meltzer LA, Roy M, et al. High-speed imaging reveals neurophysiological links to behavior in an animal model of depression. Science. 2007;317(5839):819–823.
  • Canli T, Lesch KP. Long story short: the serotonin transporter in emotion regulation and social cognition. Nat Neurosci. 2007;10(9):1103–1109.
  • Roth BL, Hanizavareh SM, Blum AE. Serotonin receptors represent highly favorable molecular targets for cognitive enhancement in schizophrenia and other disorders. Psychopharmacology. 2004;174(1):17–24.
  • Pietrelli A, Matković L, Vacotto M, et al. Aerobic exercise upregulates the BDNF-Serotonin systems and improves the cognitive function in rats. Neurobiol Learn Mem. 2018;155:528–542.
  • Wang Q, Zhang H, Xu H, et al. 5-HTR3 and 5-HTR4 located on the mitochondrial membrane and functionally regulated mitochondrial functions. Sci Rep. 2016;6:37336.
  • Mohammadi A, Nassiry MR, Mosafer J, et al. Distribution of BoLA-DRB3 allelic frequencies and identification of a new allele in the Iranian cattle breed sistani (Bos indicus). Genetika. 2009;45(2):224–229.
  • Mohammadabadi MR, Jafari AHD, Bordbar F. Molecular analysis of CIB4 gene and protein in Kermani sheep. Braz J Med Biol Res. 2017;50(11):e6177.
  • Mohammadabadi MR, et al. Genetic variability in three native Iranian chicken populations of the Khorasan province based on microsatellite markers. Genetika. 2010;46(4):572–576.
  • Zamani P, Akhondi M, Mohammadabadi M. Associations of Inter-Simple Sequence Repeat loci with predicted breeding values of body weight in sheep. Small Rumin Res. 2015;132(10):123–127.
  • Mohammadabadi M, et al. Key genes regulating skeletal muscle development and growth in farm animals. Animals. 2021;11(3):835.
  • Mohammadabadi MR, Soflaei M, Mostafavi H, et al. Using PCR for early diagnosis of bovine leukemia virus infection in some native cattle. Genet Mol Res. 2011;10(4):2658–2663.
  • Gooki FG, Mohammadabadi M, Fozi MA, Soflaei M. Association of biometric traits with growth hormone gene diversity in Raini Cashmere goats. WJST. 2019;16(7):499–508.
  • Gooki F, Mohammadabadi M, Fozi MA. Polymorphism of the growth hormone gene and its effect on production and reproduction traits in goat. IJAS. 2018;8(4):653–659.
  • Nassiry MR, Shahroodi FE, Mosafer J, et al. Analysis and frequency of bovine lymphocyte antigen (BoLA-DRB3) alleles in Iranian Holstein cattle. Genetika. 2005;41(6):817–822.
  • Norouzy A, Nassiry MR, Eftekhari Shahrody F, Javadmanesh A, Mohammad Abadi MR, Sulimova GE. Identification of bovine leucocyte adhesion deficiency (BLAD) carriers in Holstein and Brown Swiss AI bulls in Iran. Genetika. 2005;41(12):1697–1701.
  • Walsh IM, Bowman MA, Soto Santarriaga IF, et al. Synonymous codon substitutions perturb cotranslational protein folding in vivo and impair cell fitness. Proc Natl Acad Sci USA. 2020;117(7):3528–3534.
  • Jayasinghe RG, Cao S, Gao Q, et al. Systematic analysis of splice-site-creating mutations in cancer. Cell Rep. 2018;23(1):270–281.e3.
  • Wan Q, Dingerdissen H, Fan Y, et al. BioXpress: an integrated RNA-seq-derived gene expression database for pan-cancer analysis. Database. 2015;2015:bav019.
  • Fabà L, de Groot N, Ramis G, et al. Serotonin receptors and their association with the immune system in the gastrointestinal tract of weaning piglets. Porc Health Manag. 2022;8(1):8.
  • Meylan M, Georgieva TM, Reist M, et al. Distribution of mRNA that codes for 5-hydroxytryptamine receptor subtypes in the gastrointestinal tract of dairy cows. Am J Vet Res. 2004;65(8):1151–1158.
  • Mulak A, Paradowski L. Effect of 5-HT1 agonist (sumatriptan) on anorectal function in irritable bowel syndrome patients. World J Gastroenterol. 2006;12(10):1591–1596.
  • Greenwood-van Meerveld B. Importance of 5-hydroxytryptamine receptors on intestinal afferents in the regulation of visceral sensitivity. Neurogastroenterol Motil. 2007;19(s2):13–18.
  • Yu XZ, Liu HF, Sun ZX. Investigation of the effect of military stress on the prevalence of functional bowel disorders. World J Gastroenterol. 2012;18(23):3004–3007.
  • Gershon MD. Nerves, reflexes, and the enteric nervous system: pathogenesis of the irritable bowel syndrome. J Clin Gastroenterol. 2005;39(5 Suppl 3):S184–S93.
  • Zhang DY, Zhang XX, Li GZ, et al. Transcriptome analysis of long noncoding RNAs ribonucleic acids from the livers of Hu sheep with different residual feed intake. Animal. 2021;15(2):100098.
  • Zhang D, Zhang X, Li F, et al. Transcriptome analysis identifies candidate genes and pathways associated with feed efficiency in Hu sheep. Front Genet. 2019;10:1183.
  • Oliver G, Detmar M. The rediscovery of the lymphatic system: old and new insights into the development and biological function of the lymphatic vasculature. Genes Dev. 2002;16(7):773–783.
  • Xu D, Wang X, Zhang X, et al. Polymorphisms in the ovine GP5 gene associated with blood physiological indices. Anim Biotechnol. 2021;14:1–11.
  • Liu Y, Liu C, Wu H, et al. Small intestine microbiome and metabolome of high and low residual feed intake angus Heifers. Front Microbiol. 2022;13:862151.
  • He X, McClorry S, Hernell O, et al. Digestion of human milk fat in healthy infants. Nutr Res. 2020;83:15–29.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.