Morphological Characteristics of the Sperm of the Peregrine Falcon (Falco peregrinus) during the Reproductive Season
Abstract
:1. Introduction
2. Materials and Methods
2.1. Reagents and Media
2.2. Animals
2.3. Semen Collection and Analysis
2.4. Statistical Analysis
3. Results
3.1. Description of the Sperm Subpopulations
3.2. Changes in the Sperm Subpopulations during the Breeding Season
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Cramp, S.; Simmons, K.E.L. Handbook of the Birds of Europe the Middle East. and North. Africa; Oxford University Press: Oxford, UK, 1998. [Google Scholar]
- Al-Daraji, H.J.; Al Shemmary, S.A. Effect of breed of falcon on semen quality traits. Int. J. Conserv. Sci. 2016, 7, 725–734. [Google Scholar]
- Cade, T.J. Ecology of the Peregrine and Gyrfalcon populations in Alaska. Univ. Calif. Publ. Zool. 1960, 63, 151–290. [Google Scholar]
- White, C.M.; Clum, N.J.; Cade, T.J.; Hunt, W.G. Peregrine Falcon (Falco peregrinus), 2th ed.; Cornell Lab of Ornithology: Ithaca, NY, USA, 2002. [Google Scholar]
- Gee, G.F.; Bertschinger, H.; Donoghue, A.M.; Blanco, J.; Soley, J. Reproduction in nondomestic birds: Physiology, semen collection, artificial insemination and cryopreservation. Avian. Poult. Biol. Rev. 2014, 15, 47–101. [Google Scholar] [CrossRef]
- Clark, C.F.; Sarakoon, K. Influence of ambient temperature on reproductive traits of male and female chickens. Poult. Sci. 1967, 46, 1093–1098. [Google Scholar] [CrossRef]
- Marshall, A.J. La Photoregulation de La Reproduction Chez Les Oiseaux et Les Mammiferes; Centre National de la Recherche Scientifique: Paris, France, 1970. [Google Scholar]
- Holt, W.V.; Bennet, P.M.; Volobouer, V.; Watson, P.F. Genetic resource banks in wildlife conservation. J. Zool. 1996, 238, 531–544. [Google Scholar] [CrossRef]
- Prieto, M.T.; Sánchez-Calabuig, M.J.; Hildebrandt, T.B.; Saragusty, J. Sperm cryopreservation in wild animals. Eur. J. Wild Res. 2014, 60, 851–864. [Google Scholar] [CrossRef]
- Blesbois, E. Biological features of the avian male gamete and their application to biotechnology of conservation. J. Poult. Sci. 2012, 49, 141–149. [Google Scholar] [CrossRef] [Green Version]
- Blanco, J.M.; Gee, G.; Wildt, D.E.; Donoghue, A.M. Species variation in osmotic, cryoprotectant, and Cooling rate tolerance in poultry, eagle, and peregrine falcon spermatozoa. Biol. Reprod. 2000, 63, 1164–1171. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Villaverde-Morcillo, S.; Soler, A.J.; Esteso, M.C.; Castaño, C.; Miñano-Berna, A.; González, F.; Santiago-Moreno, J. Immature and mature sperm morphometry in fresh and frozen-thawed falcon ejaculates. Theriogenology 2017, 98, 94–100. [Google Scholar] [CrossRef] [PubMed]
- Cardoso, B.; Sánchez-Ajofrín, I.; Castaño, C.; García-Álvarez, O.; Esteso, M.C.; Maroto-Morales, A.; Iniesta-Cuerda, M.; Garde, J.J.; Santiago-Moreno, J.; Soler, A.J. Optimization of Sperm Cryopreservation Protocol for Peregrine Falcon (Falco peregrinus). Animals 2020, 10, 691. [Google Scholar] [CrossRef] [Green Version]
- Weaver, J.D.; Cade, T.J. Falcon Propagation: A Manual on Captative Breeding; Peregrine Fund: Boise, ID, USA, 1983. [Google Scholar]
- Abu Hassan Abu, D.; Franken, D.R.; Hoffman, B.; Henkel, R. Accurate sperm morphology assessment predicts sperm function. Andrologia 2012, 44, 571–577. [Google Scholar] [CrossRef]
- Lupold, S.; Calhim, S.; Immler, S.; Birkhead, T.R. Sperm morphology and sperm velocity in passerine birds. Proc. R Soc. 2009, 276, 1175–1181. [Google Scholar] [CrossRef] [Green Version]
- Van der Horst, G.; Maree, L. Sperm form and function in the absence of sperm competition. Mol. Reprod. Dev. 2014, 81, 204–216. [Google Scholar] [CrossRef]
- Lierz, M.; Fuente, J.; Wehrend, A.; Fischer, D. Ejaculate characteristics and semen quality of falcons with special emphasis on fertility rate after artificial insemination. Reprod. Domest. Anim. 2011, 46, 216–217. [Google Scholar]
- Fischer, D.; Wehrend, A.; García de la Fuente, J.; Lierz, M. Ejaculate characteristics and semen quality of falcons with special emphasis on fertility rate after artificial insemination. In Proceedings of the 11th European Association of Avian Veterinarians Conference and 1st European College of Zoological Medicine Meeting, Madrid, Spain, 26–30 April 2011. [Google Scholar]
- Santiago-Moreno, J.; Castaño, C.; Coloma, M.A.; Gomez-Brunete, A.; Toledano-Díaz, A.; Lopez-Sebastian, A.; Campo, J.L. Use of the hypo-osmotic swelling test and aniline blue staining to improve the evaluation of seasonal sperm variation in native Spanish free range poultry. Poult. Sci. 2009, 88, 2661–2669. [Google Scholar] [CrossRef]
- Villaverde-Morcillo, S.; García-Sanchez, R.; Castaño, C.; Rodriguez, E.; González, F.; Esteso, M.; Santiago-Moreno, J. Characterization of natural ejaculates and sperm cryopreservation in a Golden Eagle (Aquila chrysaetos). J. Zoo Wild Med. 2015, 46, 335–338. [Google Scholar] [CrossRef] [PubMed]
- Blanco, J.M.; Wildt, D.E.; Gee, G.F.; Donoghue, A.M. Spermatogonia in eagle and peregrine falcon ejaculates: Interspecies variation, cryopreservation tolerance and implications to cryobanking. In Proceedings of the Eurasian Congress on Raptors, Seville, Spain, 25–29 September 2011. [Google Scholar]
- Rogers, B.J.; Bentwood, B.J.; Van Campen, H.; Helmbrecht, G.; Soderdahl, D.; Hale, R.W. Sperm morphology assessment as an indicator of human fertilizing capacity. J. Androl. 1983, 4, 119–125. [Google Scholar] [CrossRef] [PubMed]
- Mayer, D.T.; Dale Squires, C.; Bogart, R.; Oloufa, M.M. The technique for characterizing mammalian spermatozoa as dead or living. J. Anim. Sci. 1951, 10, 226–235. [Google Scholar] [CrossRef]
- Fischer, D.; Schneider, H.; Failing, K.; Meinecke-Tillmann, S.; Wehrend, A.; Lierz, M. Viability assessment of spermatozoa in large falcons (Falco spp.) using various staining protocols. Reprod. Domest. Anim. 2020, 55, 1383–1392. [Google Scholar] [CrossRef] [PubMed]
- Bird, D.M.; Buckland, R.B. The onset and duration of fertility in the American kestrel. Can. J. Zool. 1976, 54, 595–1597. [Google Scholar] [CrossRef]
- Gee, G.F.; Temple, S.A. Artificial insemination for breeding non-domestic birds. Symp. Zool. Soc. 1978, 43, 51–72. [Google Scholar]
- Penfold, L.M.; Wildt, D.E.; Herzog, T.L.; Lynch, W.; Ware, L.; Derrickson, S.E.; Monfort, S.L. Seasonal patterns of LH, testosterone and semen quality in the Northern pintail duck (Anas acuta). Reprod. Fertil. Dev. 2000, 12, 229–235. [Google Scholar] [CrossRef] [Green Version]
- Blanco, J.M.; Gee, G.F.; Wildt, D.E.; Donoghue, A.M. Producing progeny from endangered birds of rey: Treatment of urine-contaminated semen and a novel intramagnal insemination approach. J. Zoo Wild Med. 2002, 33, 1–7. [Google Scholar]
- Sahjara, K.; Takemura, N. Application of artificial insemination technique to eupyrene and/or apyrene sperm in Bombyx mori. J. Exp. Zool. 2003, 297, 196–200. [Google Scholar] [CrossRef] [Green Version]
- Baker, R.R.; Bellis, M.A. Human Sperm Competition: Copulation, Masturbation and Infidelity; Springer: Berlin, Germany, 1995. [Google Scholar]
- Henkel, R.R. The impact of oxidants on sperm function. Andrologia 2005, 37, 205–206. [Google Scholar] [CrossRef]
- Lamirande, E.; Lamothe, G. Free radical-induced free radical production during human sperm activation. Free Radic. Biol. Med. 2009, 46, 502–510. [Google Scholar]
- Bailey, T.; Holt, W.V.; Bennett, P.; Barton, N.; Fox, N. The management of small populations of falcons in captivity and the results of a pilot study to cryopreserve semen from Falconidae using field techniques. Falco 2008, 32, 27–32. [Google Scholar]
- du Plessis, L.; Malecki, I.; Bonato, M.; Smith, M.; Cloete, S.; Soley, J. A morphological classification of sperm defects in the ostrich (Struthio camelus). Anim. Reprod. Sci. 2014, 150, 130–138. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- du Plessis, L.; Soley, J.T. Incidence, structure and morphological classification of abnormal sperm in the emu (Dromaius novaehollandiae). Theriogenology 2011, 75, 589–601. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Alkan, S.; Baran, A.; Özadas, Ö.B.; Evecev, M. Morphological defects in turkey semen. Turk. J. Vet. Anim. Sci. 2002, 26, 1087–1092. [Google Scholar]
- Rakha, B.A.; Ansari, M.S.; Hussain, I.; Malik, M.F.; Akhter, S.; Blesbois, E. Semen characteristics of the Indian Red Jungle Fowl (Gallus gallus murghi). Eur. J. Wildl. Res. 2015, 61, 379–386. [Google Scholar] [CrossRef]
- Korn, N.; Thurston, R.J.; Pooser, B.P.; Scott, T.R. Ultrastructure of spermatozoa from Japanese quail. Poult. Sci. 2000, 79, 86–93. [Google Scholar] [CrossRef] [Green Version]
- Mažeika, K.; Sutkeviciene, N.; Žilinskas, H.; Riškevičiene, V.; Aniuliene, A.; Juodziukyniene, N. Relationship between sperm quality and testicular lesions in culled AI boars. Vet. Zootec. 2012, 59, 52–57. [Google Scholar]
- Lorenzini, F.; Filho, R.T.; Gomes, R.P.X.; Martino-Andrade, A.J.; Erdmann, T.R.; Matias, J.E.F. Long term effects of the testicular torsion on the spermatogenesis of the contralateral testis and the preventive value of the twisted testis orchidectomy. Acta Cir. Bras. 2012, 27, 388–395. [Google Scholar] [CrossRef] [Green Version]
- Maretta, M. Ultrastructure of double and multiple sperm tails in drakes. Vet. Med. 1979, 24, 679–689. [Google Scholar]
- Lindsay, C.; Staines, H.J.; McCormick, P.; McCullum, C.; Choulani, F.; Wishart, G.J. Variability in the size of the nucleus in spermatozoa from the Houbara bustards, Chlamydotis undulate undulate. J. Reprod. Fertil. 1999, 117, 307–313. [Google Scholar] [CrossRef] [PubMed]
- Mafunda, P.S.; Maree, L.; Kotze, A.; van der Horst, G. Sperm structure and sperm motility of the African and Rockhopper penguins with special reference to multiple axonemes of the flagellum. Theriogenology 2017, 99, 1–9. [Google Scholar] [CrossRef]
- Kopp, C.; Sukura, A.; Tuunainen, E.; Gustavsson, I.; Parvinen, M.; Anderson, M. Multinuclear- multiflagellar sperm defect in a bull: A new sterilizing sperm defect. Reprod. Domest. Anim. 2007, 42, 208–213. [Google Scholar] [CrossRef] [PubMed]
- Prakash, S.; Prithiviraj, E.; Suresh, S.; Lakshmi, N.V.; Ganesh, M.K.; Anuradha, M.; Ganesh, L.; Dinesh, P. Morphological diversity of sperm: A mini review. Iran. J. Reprod. Med. 2014, 12, 239–242. [Google Scholar]
- Santos, M.N.S.; Azevedo, C. Biflagellate spermatozoon structure of the hermaphrodite fish Satanoperca jurupari (Teleostei, Cichlidae) from the Amazon River. Rev. Bras. Biol. 2002, 62, 847–852. [Google Scholar]
- Komaru, A.; Konishi, K. Ultrastructure of biflagellate spermatozoa in the freshwater clam (Corbicula leana). Invertebr. Reprod. Dev. 1996, 29, 193–197. [Google Scholar] [CrossRef]
- Komaru, A.; Konishi, K.; Nakayama, I.; Kobayashi, T.; Sakai, H.; Kawamura, K. Hermaphroditic freshwater clams in the genus Corbicula produce non-reductional spermatozoa with somatic DNA content. Biol. Bull. 1997, 193, 320–323. [Google Scholar] [CrossRef] [PubMed]
- Hemmings, N.; Birkhead, T.R. Polyspermy in birds: Sperm numbers and embryo survival. Proc. R Soc. 2015, 282, 61–82. [Google Scholar] [CrossRef] [PubMed] [Green Version]
Sperm Defects | |||||||
---|---|---|---|---|---|---|---|
Stage Season | Normal Sperm | Immature Sperm | Head | Midpiece | Tail | Cytoplasmic Droplets | Multiple |
Initial | 543 a (44%) | 266 (21.5%) | 256 a (20.7%) | 58 (4.7%) | 69 a (5.6%) | 33 (2.7%) | 10 (0.8%) |
Middle | 307 b (33.4%) | 204 (22.3%) | 266 a (28.9%) | 56 (6.1%) | 42 a (4.6%) | 28 (3%) | 16 (1.7%) |
Later | 285 b (25.8%) | 207 (18.8%) | 420 b (38%) | 58 (5.3%) | 85 b (7.7%) | 34 (3.1%) | 15 (1.4%) |
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Oliveira, A.; Martínez, F.; Gil, L.; Luño, V. Morphological Characteristics of the Sperm of the Peregrine Falcon (Falco peregrinus) during the Reproductive Season. Vet. Sci. 2021, 8, 169. https://doi.org/10.3390/vetsci8090169
Oliveira A, Martínez F, Gil L, Luño V. Morphological Characteristics of the Sperm of the Peregrine Falcon (Falco peregrinus) during the Reproductive Season. Veterinary Sciences. 2021; 8(9):169. https://doi.org/10.3390/vetsci8090169
Chicago/Turabian StyleOliveira, Andrea, Felisa Martínez, Lydia Gil, and Victoria Luño. 2021. "Morphological Characteristics of the Sperm of the Peregrine Falcon (Falco peregrinus) during the Reproductive Season" Veterinary Sciences 8, no. 9: 169. https://doi.org/10.3390/vetsci8090169
APA StyleOliveira, A., Martínez, F., Gil, L., & Luño, V. (2021). Morphological Characteristics of the Sperm of the Peregrine Falcon (Falco peregrinus) during the Reproductive Season. Veterinary Sciences, 8(9), 169. https://doi.org/10.3390/vetsci8090169