[Ahluwalia B.S., Graham E.F. (1966). Free amino acids in the semen of the fowl and the turkey. J. Reprod. Fertil., 12: 365–368.]Search in Google Scholar
[Ansari M.S., Rakha B.A., Akhter S., Akhter A., Blesbois E., Santiago-Moreno J. (2021). Effect of glutathione on pre and post-freezing sperm quality of Indian red jungle fowl (Gallus gallus murghi). Theriogenology, 172: 73–79.]Search in Google Scholar
[Bakst M.R., Wishart G.J., Brillard J.P. (1994). Oviductal spermatozoa selection, transport, and storage in poultry. Poult. Sci. Rev., 5: 117–143.]Search in Google Scholar
[Baliou S., Adamaki M., Ioannou P., Pappa A., Panayiotidis M.I., Span-didos D.A., Christodoulou I., Kyriakopoulos A.M., Zoumpourlis V. (2021). Protective role of taurine against oxidative stress (Review). Mol. Med. Rep., 24: 605.]Search in Google Scholar
[Baran A., Demir K., Sahin B.E., Evecen M., Bacinoglu S., Alkan S., Ileri I.K. (2009). Short-term chilled storage of cat semen extended with and without taurine containing milk extenders. J. Anim. Vet. Adv., 8: 1367–1371.]Search in Google Scholar
[Bayomy M.F.F., El-Nabi S.E.H., El Kassas T.A., Attia Z.I., Saeed A.M., Taha H.S.A, Alagawany M., Galosi L., Biagini L., El-Kassas S. (2023). Extender supplementation with glutathione (GSH) and taurine improves in vitro sperm quality and antioxidant status of New Zealand rabbits during chilled storage for up to 72 hours. Vet. Med. Int., 2023: 8339591.]Search in Google Scholar
[Bradford M.M. (1976). A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal. Biochem., 72: 248–254.]Search in Google Scholar
[Bridges C.C., Ola M.S., Prasad P.D., El-Sherbeny A., Ganapathy V., Smith S.B. (2001). Regulation of taurine transporter expression by NO in cultured human retinal pigment epithelial cells. Am. J. Physiol. Cell Physiol., 281: C1825–C1836.]Search in Google Scholar
[Bucak M.N., Atessahin A., Varisli O., Yüce A., Tekin N., Akcay A. (2007). The influence of trehalose, taurine, cysteamine and hyaluronan on ram semen. Microscopic and oxidative stress parameters, lipid peroxidation and antioxidant activities. Theriogenology, 67: 1060–1067.]Search in Google Scholar
[Burrows W.H., Quinns J.P. (1937). The collection of spermatozoa from the domestic fowl and turkey. Poult. Sci., 16: 19–24.]Search in Google Scholar
[Çoyan K., Bucak M.N., Başpınar N., Taşpınar M., Aydos S. (2012). Ergothioneine attenuates the DNA damage of post-thawed Merino ram sperm. Small Rumin., 106: 165–167.]Search in Google Scholar
[DasGupta M., Kumaresan A., Saraf K.K., Paul N., Sajeevkumar T., Karthikkeyan G., Prasad T.S.K., Modi P.K., Ramesha K., Manimaran A., Jeyakumar S. (2022). Deciphering metabolomic alterations in seminal plasma of crossbred (Bos taurus X Bos indicus) bulls through comparative deep metabolomic analysis. Andrologia, 54: e14253.]Search in Google Scholar
[de Lamirande E., Gagnon C. (1992). Reactive oxygen species and human spermatozoa. I. Effects on the motility of intact spermatozoa and on sperm axonemes. J. Androl., 13: 368–378.]Search in Google Scholar
[Dorado J., Acha D., Ortiz I., Gálvez M.J., Carrasco J.J., Gómez-Arrones V., Calero-Carretero R., Hidalgo M. (2014). Effect of extender and amino acid supplementation on sperm quality of cooled–preserved Andalusian donkey (Equus asinus) spermatozoa. Anim. Reprod. Sci., 146: 79–88.]Search in Google Scholar
[Douard V., Hermier D., Blesbois E. (2000). Changes in turkey semen lipids during liquid in vitro storage. Biol. Reprod., 63: 1450–1456.]Search in Google Scholar
[Du Y., Liu H., Zhang M., Zhang S., Hu J., Wu G., Yang J. (2019). Taurine increases spermatozoa quality and function in asthenospermia rats impaired by ornidazole. Adv. Exp. Med. Biol., 1155: 507–520.]Search in Google Scholar
[Dziekońska A., Koziorowska-Gilun M., Kordan W., Neuman N.M., Kotlarczyk A.M., Korzekwa A.J. (2022). The quality and fertilizing potential of red deer (Cervus elaphus L.) epididymal spermatozoa stored in a liquid state. Int. J. Mol. Sci., 23: 14591.]Search in Google Scholar
[Fraser L., Lecewicz M., Strzeżek J. (2002). Fluorometric assessments of viability and mitochondrial status of boar spermatozoa following liquid storage. Pol. J. Vet. Sci., 5: 85–92.]Search in Google Scholar
[Froman D.P., Thurston R.J. (1981). Chicken and turkey superoxide dismutase: a comparative study. Biol. Reprod., 24: 193–200.]Search in Google Scholar
[Giustarini D., Milzani A., Dalle-Donne I., Rossi R. (2023). How to increase cellular glutathione. Antioxidants, 12: 1094.]Search in Google Scholar
[Guizoni D.M., Vettorazzi J.F., Carneiro E.M., Davel A.P. (2020). Modulation of endothelium-derived nitric oxide production and activity by taurine and taurine-conjugated bile acids. Nitric Oxide, 94: 48–53.]Search in Google Scholar
[Halliwell B. (1994). Free radicals, antioxidants, and human disease: curiosity, cause, or consequence? Lancet, 344: 721–724. Halliwell B., Cheah I.K., Tang R.M.Y. (2018). Ergothioneine – a diet-derived antioxidant with therapeutic potential. FEBS Lett., 592: 3357–3366.]Search in Google Scholar
[Hama T., Okumura H., Tamaki N., Konishi T. (1973). Studies on ergothioneine. IV. Effect of ergothioneine upon spermatozoa from guinea pigs. Yakugaku Zasshi, 93: 369–373.]Search in Google Scholar
[Hess R., Thurston R. (1984). Detection and incidence of yellow turkey semen on commercial breeder farms. Poult. Sci., 63: 2084–2086.]Search in Google Scholar
[Higuchi M., Celino F.T., Shimizu-Yamaguchi S., Miura Ch., Miura T. (2012). Taurine plays an important role in the protection of spermatogonia from oxidative stress. Amino Acids, 43: 2359–2369.]Search in Google Scholar
[Holsberger D.R., Donoghue A.M., Froman D.P., Ottinger M.A. (1998). Assessment of ejaculate quality and sperm characteristics in turkeys: Sperm mobility phenotype is independent of time. Poult. Sci., 77: 1711–1717.]Search in Google Scholar
[Ijaz A., Ducharme R. (1995). Effect of various extenders and taurine on survival of stallion sperm cooled to 5°C. Theriogenology, 44: 1039–1050.]Search in Google Scholar
[Jang H.Y., Kong H.S., Park C.K., Oh J.D., Lee S.G., Cheong H.T., Kim J.T., Lee S.J., Yang B.K., Lee H.K. (2006). Effects of taurine on sperm characteristics during in vitro storage of boar semen. Asian-Australias. J. Anim. Sci., 19: 1561–1565.]Search in Google Scholar
[Khan R.U. (2011). Antioxidants and poultry semen quality. Worlds Poult. Sci. J., 67: 297–308.]Search in Google Scholar
[Kozlowski D.J., Chen Z., Zhuang L., Fei Y.J., Navarre S., Ganapathy V. (2008). Molecular characterization and expression pattern of taurine transporter in zebrafish during embryogenesis. Life Sci., 82: 1004–1011.]Search in Google Scholar
[Lake P.E., Ravie O. (1982). Effect on fertility of storing turkey semen for 24 hours at 10 degrees C in fluids of different pH. Br. Poult. Sci., 23: 41–47.]Search in Google Scholar
[Lake P.E., Wishart G.J. (1984). Comparative physiology of turkey and fowl semen. In: Reproductive biology of poultry, Cunningham F.J., Lake P.E., Hewit D. (eds). British Poultry Science, Harlow, UK, pp. 151–160.]Search in Google Scholar
[Lampiao F., Strijdom H., Du Plessis S.S. (2006). Direct nitric oxide measurement in human spermatozoa: Flow cytometric analysis using the fluorescent probe, diaminofluorescein. Int. J. Androl., 29: 564–567.]Search in Google Scholar
[Li J.H., Ling Y.Q., Fan J.J., Zhang X.P., Cui S. (2006). Expression of cysteine sulfinate decarboxylase (CSD) in male reproductive organs of mice. Histochem. Cell Biol., 125: 607–613.]Search in Google Scholar
[Li Y., Peng Q., Shang J., Dong W., Wu S., Guo X., Xie Z., Chen Ch. (2023). The role of taurine in male reproduction: Physiology, pathology and toxicology. Front Endocrinol. (Lausanne), 14: 1017886.]Search in Google Scholar
[MacLeod J. (1943). The role of oxygen in the metabolism and motility of human spermatozoa. Am. J. Physiol., 138: 512–518.]Search in Google Scholar
[Mayumi T., Kawano H., Kawai Y., Hama T. (1984). Studies on Ergo-thioneine. IX. Ergothioneine stimulates mouse spermatozoa and fertilization in vitro. Dev. Growth Differ., 26: 563–569.]Search in Google Scholar
[Mohan J., Sharma S.K., Kolluri G., Dhama K. (2018). History of artificial insemination in poultry, its components and significance. Worlds Poult. Sci. J., 74: 475–488.]Search in Google Scholar
[Mussa N.J., Boonkum W., Chankitisakul V. (2023). Semen quality traits of two Thai native chickens producing a high and a low of semen volumes. Vet. Sci., 10: 73.]Search in Google Scholar
[Narainsamy K., Farci S., Braun E., Junot C., Cassier-Chauvat C., Chauvat F. (2016). Oxidative-stress detoxification and signalling in Cyanobacteria: the crucial glutathione synthesis pathway supports the production of ergothioneine and ophthalmate. Mol. Microbiol., 100: 15–24.]Search in Google Scholar
[Nikodemus D., Lazic D., Bach M., Bauer T., Pfeiffer C., Wiltzer L. (2011). Paramount levels of ergothioneine transporter SLC22A4 mRNA in boar seminal vesicles and cross-species analysis of ergothioneine and glutathione in seminal plasma. J. Physiol. Pharmacol., 62: 411–419.]Search in Google Scholar
[Nonaka H., Tsujino T., Watari Y., Emoto N., Yokoyama M. (2001). Taurine prevents the decrease in expression and secretion of extra-cellular superoxide dismutase induced by homocysteine: amelioration of homocysteine-induced endoplasmic reticulum stress by taurine. Circulation, 104: 1165–1170.]Search in Google Scholar
[Oumari M., Goldfuss B., Stoffels C., Schmalz H.G., Grundemann D. (2019). Regeneration of ergothioneine after reaction with singlet oxygen. Free Radical Bio. Med., 134: 498–504.]Search in Google Scholar
[Partyka A., Niżański W. (2021). Supplementation of avian semen extenders with antioxidants to improve semen quality – is it an effective strategy? Antioxidants (Basel), 10: 1927.]Search in Google Scholar
[Partyka A., Łukaszewicz E., Niżański W. (2012). Lipid peroxidation and antioxidant enzymes activity in avian semen. Anim. Reprod. Sci., 134: 184–190.]Search in Google Scholar
[Partyka A., Rodak O., Bajzert J., Kochan J., Niżański W. (2017). The effect of L-carnitine, hypotaurine, and taurine supplementation on the quality of cryopreserved chicken semen. BioMed Res. Int., 2017: 7279341.]Search in Google Scholar
[Perumal P., Kezhavituo V., Rajkhowa C. (2013). Effect of addition of taurine on the liquid storage (5°C) of mithun (Bos frontalis) semen. Vet. Med. Int., 2013: 165348.]Search in Google Scholar
[Ravie O., Lake P.E. (1985). The phospholipid-bound fatty acids of fowl and turkey spermatozoa. Anim. Reprod. Sci., 9: 189–192.]Search in Google Scholar
[Rubio-Riquelme N., Huerta-Retamal N., Gómez-Torres M.J., Martínez-Espinosa R.M. (2020). Catalase as a molecular target for male infertility diagnosis and monitoring: An overview. Antioxidants (Basel), 9: 78.]Search in Google Scholar
[Salih S.A., Daghigh-Kia H., Mehdipour M., Najafi A. (2021). Does ergothioneine and thawing temperatures improve rooster semen post-thawed quality? Poult. Sci., 100: 101405.]Search in Google Scholar
[Sarıözkan S., Bucak M.N., Tuncer P.B., Ulutasß P.A., Bilgen A. (2009). The influence of cysteine and taurine on microscopic–oxidative stress parameters and fertilizing ability of bull semen following cryopreservation. Cryobiology, 58: 134–138.]Search in Google Scholar
[Sexton T.J., Giesen A.F. (1982). Beltsville Poultry Semen Extender. 6. Holding turkey semen for six hours at 15 C. Poult. Sci., 61: 1202–1208.]Search in Google Scholar
[Sharma R., Kattoor A.J., Ghulmiyyah J., Agarwal A. (2015). Effect of sperm storage and selection techniques on sperm parameters. Sys. Bio. Reprod. Med., 61: 1–12.]Search in Google Scholar
[Slanina T., Miškeje M., Tirpák F., Błaszczyk M., Stawarz R., Massányi P. (2018). Effect of taurine on turkey (Meleagris gallopavo) spermatozoa viability and motility. Czech J. Anim. Sci., 63: 127–135.]Search in Google Scholar
[Słowińska M., Jankowski J., Dietrich G.J., Karol H., Liszewska E., Glogowski J., Kozłowski K., Sartowska K., Ciereszko A. (2011). Effect of organic and inorganic forms of selenium in diets on turkey semen quality. Poult. Sci., 90: 181–190.]Search in Google Scholar
[Słowinska M., Liszewska E., Judycka S., Konopka M., Ciereszko A. (2018). Mitochondrial membrane potential and reactive oxygen species in liquid stored and cryopreserved turkey (Meleagris gallopavo) spermatozoa. Poult. Sci., 97: 3709–3717.]Search in Google Scholar
[Spitze A.R., Wong D.L., Rogers Q.R., Fascetti A.J. (2003). Taurine concentrations in animal feed ingredients; cooking influences taurine content. J. Anim. Physiol. Anim. Nutr., 87: 251–262.]Search in Google Scholar
[Surai P.F., Blesbois E., Grasseau I., Chalah T., Brillard J.P., Wishart G.J., Cerolini, S., Sparks N.H.C. (1998). Fatty acid composition, glutathione peroxidase and superoxide dismutase activity and total antioxidant activity of avian semen. Comp. Biochem. Physiol. B, 120: 527–533.]Search in Google Scholar
[Surai P.F., Earle-Payne K., Kidd M.T. (2021). Taurine as a natural antioxidant: From direct antioxidant effects to protective action in various toxicological models. Antioxidants, 10: 1876. Thananurak P., Chuaychu-Noo N., Thélie A., Phasuk Y., Vongpralub T., Blesbois E. (2020). Different concentrations of cysteamine, ergothioneine, and serine modulate quality and fertilizing ability of cryopreserved chicken sperm. Poult. Sci., 99: 1185–1198.]Search in Google Scholar
[Thomas C.A., Garner D.L., De Jarnette J.M., Marshall C.E. (1998). Effect of cryopreservation of bovine sperm organelle function and viability as determined by flow cytometry. Biol. Reprod., 58: 786–793.]Search in Google Scholar
[Thurston R.J., Hess R.A., Biellier H.V., Adldinger H.K., Solorzano R.F. (1975). Ultrastructural studies of semen abnormalities and herpesvirus associated with cultured testicular cells from domestic turkeys. J. Reprod. Fertil., 45: 235–241.]Search in Google Scholar
[Thurston R.J., Hess R.A., Froman D.P. (1982). Elevated seminal plasma protein: A characteristic of yellow turkey semen. Poult. Sci., 61: 1905–1911.]Search in Google Scholar
[Thurston R.J., Rogoff M.S., Scott T.R., Korn N. (1994). Perfluoro-chemical emulsions as turkey semen diluents: effects of varying aeration treatments and aqueous phase on fertilizing capacity of semen stored for twenty-four hours. Poult. Sci., 73: 724–732.]Search in Google Scholar
[Trzcińska M., Bryła M. (2015). Apoptotic-like changes of boar spermatozoa in freezing media supplemented with different antioxidants. Pol. J. Vet. Sci., 18: 473–480.]Search in Google Scholar
[Wu H., Zhang X., Yang J., Feng T., Chen Y., Feng R., Wang H., Qian Y. (2022). Taurine and its transporter TAUT positively affect male reproduction and early embryo development. Hum. Reprod., 37: 1229–1243.]Search in Google Scholar
[Yang J., Wu G., Feng Y., Lv Q., Lin S., Hu J. (2010). Effects of taurine on male reproduction in rats of different ages. J. Biomed., 17: S9.]Search in Google Scholar
[Zullo G., Albero G., Neglia G., De Canditiis C., Bifulco G., Campanile G., Gasparrini B. (2016). L-Ergothioneine supplementation during culture improves quality of bovine in vitro-produced embryos. Theriogenology, 85: 688–697.]Search in Google Scholar