1. bookAHEAD OF PRINT
Dettagli della rivista
License
Formato
Rivista
eISSN
2300-8733
Prima pubblicazione
25 Nov 2011
Frequenza di pubblicazione
4 volte all'anno
Lingue
Inglese
Accesso libero

Association of ghrelin gene polymorphisms with slaughter traits in pig

Pubblicato online: 07 Feb 2023
Volume & Edizione: AHEAD OF PRINT
Pagine: -
Ricevuto: 07 Mar 2022
Accettato: 13 Dec 2022
Dettagli della rivista
License
Formato
Rivista
eISSN
2300-8733
Prima pubblicazione
25 Nov 2011
Frequenza di pubblicazione
4 volte all'anno
Lingue
Inglese

Blanchard P.J., Willis M.B., Warkup C.C., Ellis M. (2000). The influence of carcass backfat and intramuscular fat level on pork eating quality. J. Sci. Food Agric., 80: 145-151. doi: 10.1002/(SICI)1097-0010(20000101)80:1<145::AID-JSFA504>3.0.CO,2-M. Apri DOISearch in Google Scholar

Borzuta K., Lisiak D. (2016) Ewolucja wartości rzeźnej trzody chlewnej w Polsce w ostatnim sześćdziesięcioleciu. Przegl. Hodowl., 4: 1-6. Search in Google Scholar

Braz C.U., Camargo G.M., Cardoso D.F., Gil F.M., Fonseca P.D., Cyrillo J.N., Mercadante M.E., Oliveira H.N., Tonhati H. (2015). Polymorphisms in the GHRL gene and their associations with traits of economic interest in beef cattle. Genet. Mol. Research., 14: 18188-18197. doi: 10.4238/2015.December.23.6.26782466 Apri DOISearch in Google Scholar

Cummings D.E., Purnell J.Q., Frayo R.S., Schmidova K., Wisse B.E., Weigle D.S. (2001). A preprandial rise in plasma ghrelin levels suggests a role in meal initiation in humans. Diabetes, 50: 1714-1719. doi: 10.2337/diabetes.50.8.1714.11473029 Apri DOISearch in Google Scholar

Dong X.X., Bai G.C., Li1 M.L., Lan G.X., Yann D.W., Wang X.Y., Chen Q., Lu S.X. (2022). Relationship Between GHRL Gene Polymorphisms and Growth Traits in Pigs. Pakistan J. Zool., 1-7. doi: https://dx.doi.org/10.17582/journal.pjz/2019102208102610.17582/journal.pjz/20191022081026 Search in Google Scholar

Fang M., Nie Q., Luo C., Zhang D., Zhang X. (2006). An 8bp indel in exon 1 of Ghrelin gene associated with chicken growth. Domest. Anim. Endocrinol., 32: 216-225. doi: 10.1016/j.domaniend.2006.02.006.16766157 Apri DOISearch in Google Scholar

Fontanesi L., Galimberti G., Calò D.G., Fronza R., Martell, P.L., Scotti E., Colombo M., Schiavo G., Casadio R., Buttazzoni L., Russo V. (2012). Identification and association analysis of several hundred single nucleotide polymorphisms within candidate genes for back fat thickness in Italian Large White pigs using a selective genotyping approach. J. Anim. Sci., 90: 2450-2464. https://doi.org/10.2527/jas.2011-479710.2527/jas.2011-479722367074 Search in Google Scholar

Gnanapavan S., Kola B., Bustin S.A., Morris D.G., McGee P., Fa irclough P., Bhattacharya S., Carpenter R., Grossman A.B., Korbonits M. (2002). The tissue distribution of the mRNA of ghrelin and subtypes of its receptor, GHS-R, in humans. J. Clin. Endocrinol. Metab., 87: 2988-2991. doi: 10.1210/jcem.87.6.873912050285 Apri DOISearch in Google Scholar

Gueorguiev M., Lecoeur C., Benzinou M., Mein C.A., Meyre D., Vatin V., Weill J., Heude B., Grossman A.B., Froguel P., Korbonits M. (2009). A Genetic Study of the Ghrelin and Growth Hormone Secretagogue Receptor (GHSR) Genes and Stature. Ann. Hum. Genet., 73: 1-9. doi: 10.1111/j.1469-1809.2008.00484.x.18945286 Apri DOISearch in Google Scholar

Imaizumi T., Ando M., Nakatochi M., Yasuda Y., Honda H., Kuwatsuka Y., Kato S., Kondo T., Iwata M., Nakashima T., Yasui H., Takamatsu H., Okajima H., Yoshida Y., Maruyama S. (2018). Effect of dietary energy and polymorphisms in BRAP and GHRL on obesity and metabolic traits. Obesity Res. Clin. Pract., 12: 39-48. doi: 10.1016/j.orcp.2016.05.004.27245511 Apri DOISearch in Google Scholar

Kaczor U., Poltowicz K., Kucharski M., Sitarz A.M., Nowak J., Wojtysiak D., Zieba D.A. (2017). Effect of Ghrelin and Leptin Receptors Genes Polymorphisms on Production Results and Physicochemical Characteristics of M. Pectoralis Superficialis in Broiler Chickens. Anim. Prod. Sci., 57: 42-50. https://doi.org/10.1071/AN15152.10.1071/AN15152 Search in Google Scholar

Khaerunnisa I., Jakaria J., Arief I.I., Budiman C., Sumantri C. (2017). The Ghrelin Receptor (GHSR) Gene Polymorphism in Indonesian Local Chicken and Crossbreed is Associated with Carcass Traits. Anim. Prod., 19: 71-80. doi: 10.20884/1.jap.2017.19.2.596. Apri DOISearch in Google Scholar

Kim K.S., Thomsen H., Bastiaansen J., Nguyen N.T., Dekkers J.C., Plastow G.S., Rothschild M.F. (2004). Investigation of obesity candidate genes on porcine fat deposition quantitative trait loci regions. Obes. Res., 12: 1981-1994. doi: 10.1038/oby.2004.24915687400 Apri DOISearch in Google Scholar

Kojima M., Hosoda H., Date Y., Nakazato M., Matsuo H., Kangawa K. (1999). Ghrelin is a growth-hormone-releasing acylated peptide from stomach. Nature, 402: 656-660. doi: 10.1038/45230.10604470 Apri DOISearch in Google Scholar

Lei M., Luo C., Peng X., Fang M., Nie Q., Zhang D., Yang G., Zhang X. (2007). Polymorphism of growth-correlated genes associated with fatness and muscle fiber traits in chickens. Poult. Sci., 86: 835-842. doi: 10.1093/ps/86.5.83517435016 Apri DOISearch in Google Scholar

Li P., Tiwari H.K., Lin W. -Y., Allison D.B., Chung W.K., Leibel R.L., Ly N., Liu N. (2014). Genetic Association Analysis of 30 Genes Related to Obesity in a European American Population. Internation. J. Obesity., 38: 724-729. doi: 10.1038/ijo.2013.140.390901823900445 Apri DOISearch in Google Scholar

Llamas-Covarrubias I. M., Llamas -Covarrubias M. A., Martinez -López E., Zepeda-Carrillo E. A., Rivera-León E. A., Palmeros-Sánchez B., Alcalá-Zermeño J. L., Sánchez-Enríquez S. (2017). Association of A-604G ghrelin gene polymorphism and serum ghrelin levels with the risk of obesity in a mexican population. Mol. Biol. Rep., 44(3): 289-293. doi: 10.1007/s11033-017-4109-0.28597412 Apri DOISearch in Google Scholar

Marić G., Gazibara T., Zaletel I., Labudović Borović M., Tomanović N., Ćirić M., Puškaš N. (2014). The role of gut hormones in appetite regulation (Review). Acta Physiol. Hung., 101: 395-407. doi: 10.1556/APhysiol.101.2014.4.1.25532952 Apri DOISearch in Google Scholar

Męczekalski B., Czyżyk A., Warenik-Szymankiewicz A. (2008). The role of genes in pathogenesis of obesity. Contemporary view, pathogenesis, clinical aspects. (In Polish). Endokrynologia, Otyłość i Zaburzenia Przemiany Materii, 5 (1), 27–37. Search in Google Scholar

Moskvina V., Schmidt K.M. (2006). Susceptibility of biallelic haplotype and genotype frequencies to genotyping error. Biometrics, 62(4): 1116-1123. doi: 10.1111/j.1541-0420.2006.00563.x.17156286 Apri DOISearch in Google Scholar

Nie Q., Fang M., Xie L., Peng X., Xu H., Luo C., Zhang D., Zhang X. (2009). Molecular Characterization of the Ghrelin and Ghrelin Receptor Genes and Effects on Fat Deposition in Chicken and Duck. BioMed Resear. Internat. Article ID 567120, 12 pages, doi:10.1155/2009/567120281737020145704 Apri DOISearch in Google Scholar

Ropka-Molik K., Oczkowicz M., Piórkowska K., Różycki M., R omanek J., Natonek-Wiśniewska M. (2011). New polymorphisms and expression of the porcine ghrelin (GHRL) gene in different pig breeds. J. Anim. Feed Sci., 20: 186-199. doi: 10.22358/jafs/66170/2011. Apri DOISearch in Google Scholar

Różycki M., Tyra M. (2010). Metodyka oceny wartości tucznej i rzeźnej świń przeprowadzana w stacjach kontroli użytkowości rzeźnej trzody chlewnej (SKURTCh). In: Stan hodowli i wyniki oceny świń. Instytutu Zootechniki Państwowy Instytut Badawczy, Kraków, XXVIII: 93-117. Search in Google Scholar

Seim I., Crisp G., Shah E. T., Jeffery P. L., Chopin L.K. (2017). Abundant ghrelin gene expression by monocytes: Putative implications for fat accumulation and obesity. Obesity Medicine, 5: 1-3. https://doi.org/10.1016/j.obmed.2016.12.001.10.1016/j.obmed.2016.12.001 Search in Google Scholar

Sun W.-K., Cheng C., Liu R., Chen Y. -H., Zeng K., Chen X.-H., Gu Y.-R., Li J.-L., Lv X.-B., Gao R. (2019): Expression patterns of GHRL, GHSR, LEP, LEPR, SST and CCK genes in the gastrointestinal tissues of Tibetan and Yorkshire pigs. Czech J. Anim. Sci., 64: 239–247. https://doi.org/10.17221/40/2018-CJAS.10.17221/40/2018-CJAS Search in Google Scholar

Szulc K., Lisiak D., Grześkowiak E., Nowaczewski S. (2012). The influence of cross-breeding Zlotnicka Spotted native breed sows with boars of Duroc (D) and Polish Large White (PLW) breeds on meat quality. Afric. J. Biotech., 11: 4471-4477. doi: 10.5897/AJB11.3504. Apri DOISearch in Google Scholar

Tanaka K., Takizawa T., Oki O., Fukawa K., Ito T., Miyabe M., Mannen H., Kurosawa Y., Hirose K. (2015). Allele Frequency for c.335 A>C Polymorphisms in Porcine Ghrelin/Obestatin Prepropeptide Gene and Association Analysis with Performance Traits in Various Pig Breeds. Czech J. Anim. Sci., 60: 2015-2411. https://doi.org/10.17221/8459-CJAS.10.17221/8459-CJAS Search in Google Scholar

Tschöp M., Weyer C., Tataranni P.A., Devanarayan V., Ravussin E., Heiman M.L. (2001). Circulating ghrelin levels are decreased in human obesity. Diabetes, 50: 707-709. doi: 10.2337/diabetes.50.4.707.11289032 Apri DOISearch in Google Scholar

Turner S., Armstrong L.L., Bradford Y., Carlson C.S., Crawford D.C., Crenshaw A.T., de Andrade M., Doheny K.F., Haines J.L., Hayes G., Jarvik G., Jiang L., Kullo I.J., Li R., Ling R., Manolio T.A., Matsumoto M., McCarty C.A., McDavid A.N., Mirel D.B., Paschall J.E., Pugh E.W., Rasmussen L.V., Wilke R.A., Zuvich R.L., Ritchie M.D. (2011). Quality Control Procedures for Genome Wide Association Studies. Curr. Protoc. Hum. Genet., CHAPTER: Unit1.19. doi: 10.1002/0471142905.hg0119s68306618221234875 Apri DOISearch in Google Scholar

Ukkola O., Ravussin E., Jacobson P., Snyder E.E., Chagnon M., Sjöström L., Bouchard C. (2001). Mutations in the preproghrelin/ghrelin gene associated with obesity in humans. J. Clin. Endocrinol. Metab., 86: 3996-3999. doi: 10.1210/jcem.86.8.7914.11502844 Apri DOISearch in Google Scholar

Ukkola O., Ravussin E., Jacobson P., Pérusse L., Rankinen T., Tschöp M., Heiman M.L., Leon A.S., Rao D.C., Skinner J.S., Wilmore J.H., Sjöström L., Bouchard C. (2002). Role of ghrelin polymorphisms in obesity based on three different studies. Obes. Res., 10: 782-791. doi: 10.1038/oby.2002.106.12181387 Apri DOISearch in Google Scholar

van der Lely A.J., Tschöp M., Heiman M.L., Ghigo E. (2004). Biological, physiological, pathophysiological, and pharmacological aspects of ghrelin. Endocr. Rev., 25: 426-457. https://doi.org/10.1210/er.2002-0029.10.1210/er.2002-002915180951 Search in Google Scholar

Van Poucke M., Yerle M., Tuggle C., Piumi F., Genêt C., Van Zeveren A., Peelman L.J. (2001). Integration of porcine chromosome 13 maps. Cytogenet. Cell Genet., 93: 297-303. doi: 10.1159/000057001.11528129 Apri DOISearch in Google Scholar

Vitari F., Di Giancamillo A., Deponti D., Carollo V., Domeneghini C. (2012). Distribution of ghrelin-producing cells in the gastrointestinal tract of pigs at different ages. Vet. Res. Commun., 36: 71–80. doi: 10.1007/s11259-012-9517-y.22281862 Apri DOISearch in Google Scholar

Wojtysiak D., Kaczor U. (2011). Effect of polymorphisms at the ghrelin gene locus on carcass, microstructure and physicochemical properties of longissimus lumborum muscle of Polish Landrace pigs. Meat Sci., 89: 514-518. doi: 10.1016/j.meatsci.2011.05.019.21669497 Apri DOISearch in Google Scholar

Zhang B., Chen H., Yikun G., Zhang L., Miao A., Lan X., Zhang C., Pan C., Hu S., Wang J., Lei C. (2009). Associations of polymorphism within the GHSR gene with growth traits in Nanyang cattle. Mol. Biol. Evol., 36: 2259-2263. doi: 10.1007/s11033-008-9442-x.19148773 Apri DOISearch in Google Scholar

Zigman J.M., Jones J.E., Lee C.E., Saper C.B., Elmquist J.K. (2006). Expression of Ghrelin Receptor mRNA in the Rat and the Mouse Brain. J. Comp. Neurol., 494: 528-548. doi: 10.1002/cne.20823.452449916320257 Apri DOISearch in Google Scholar

Articoli consigliati da Trend MD

Pianifica la tua conferenza remota con Sciendo