Cite

Boquest A.C., Day B.N., Prather R.S.(1999). Flow cytometric cell cycle analysis of cultured porcine fetal fibroblast cells. Biol. Reprod., 60: 1013–1019. Search in Google Scholar

Borges A.A., Pereira A.F.(2019). Potential role of intraspecific and interspecific cloning in the conservation of wild mammals. Zygote, 27: 111–117. Search in Google Scholar

Borges A.A., Lima G.L., Queiroz Neta L.B., Santos M.V.O., Oliveira M.F., Sil-va A.R., Pereira A.F. (2017). Conservation of somatic tissue derived from collared peccaries (Pecari tajacu Linnaeus, 1758) using direct or solid-surface vitrification techniques. Cytotechnology, 69: 643–654. Search in Google Scholar

Borges A.A., Lira G.P.O., Nascimento L.E., Queiroz Neta L.B., Santos M.V.O., Oli-veira M.F., Silva A.R., Pereira A.F. (2018 a). Influence of cryopreservation solution on the in vitro culture of skin tissues derived from collared peccary (Pecari tajacu Linnaeus, 1758). Biopreserv. Biobank., 16: 77–81.10.1089/bio.2017.0090590672329215303 Search in Google Scholar

Borges A.A., Santos M.V.O., Queiroz Neta L.B., Oliveira M.F., Silva A.R., Perei-ra A.F. (2018 b). In vitro maturation of collared peccary (Pecari tajacu) oocytes after different incubation times. Pesq. Vet. Bras., 38: 1863–1868.10.1590/1678-5150-pvb-5471 Search in Google Scholar

Borges A.A., Lira G.P.O., Nascimento L.E., Santos M.V.O., Oliveira M.F., Silva A.R., Pereira A.F. (2020 a). Isolation, characterization, and cryopreservation of collared peccary skinderived fibroblast cell lines. Peer J., 8: e9136.10.7717/peerj.9136727568232547858 Search in Google Scholar

Borges A.A., Santos M.V.O., Nascimento L.E., Lira G.P.O., Praxedes E.A., Olivei-ra M.F., Silva A.R., Pereira A.F. (2020 b). Production of collared peccary (Pecari tajacu Linnaeus, 1758) parthenogenic embryos following different oocyte chemical activation and in vitro maturation conditions. Theriogenology, 142: 320–327.10.1016/j.theriogenology.2019.10.01631711691 Search in Google Scholar

Briceño-Méndez M., Naranjo E., Mandujano S., Altricher M., Reyna-Hurta-do R. (2016). Responses of two sympatric species of peccaries (Tayassu pecari and Pecari tajacu) to hunting in Calakmul, Mexico. Trop. Conserv. Sci., 9: 1940082916667331. Search in Google Scholar

Caamaño J.N., Rodriguez A., Salas A., Munoz M., Diez C., Prather R., Gomez E. (2008). Flow cytometric cell cycle analysis of cultured brown bear fibroblast cells. Cell Biol. Int., 32: 855–859. Search in Google Scholar

Coller H.A.(2007). What’s taking so long? S-phase entry from quiescence versus proliferation. Nat. Rev. Mol. Cell Biol., 8: 667–670. Search in Google Scholar

Dalman A., Eftekhari-Yazdi P., Valojerdi M.R., Shahverdi A., Gourabi H., Jan-zamin E., Fakheri R., Sadeghian F., Hasani F. (2010). Synchronizing cell cycle of goat fibroblasts by serum starvation causes apoptosis. Reprod. Domest. Anim., 45: 46–53. Search in Google Scholar

Desbiez A.L., Keuroghlian A.(2009). Can bite force be used as a basis for niche separation between native peccaries and introduced feral pigs in the Brazilian Pantanal? Mammalia, 73: 369–372.10.1515/MAMM.2009.049 Search in Google Scholar

Desbiez A.L.J., Keuroghlian A., Beisiegel B.M., Medici E.P., Gatti A., Pon-tes A.R.M., Pinho G.M. (2012). Avaliação do risco de extinção do cateto Pecari tajacu Linnaeus, 1758, no Brasil. Biodivers. Bras., 3: 74–83. Search in Google Scholar

Goissis M.D., Caetano H.V.A., Marques M.G., Barros F.R.O., Feitosa W.B., Milaz-zotto M.P., Binelli M., Assumpção M.E.O.A., Visintin J.A. (2007). Effects of serum deprivation and cycloheximide on cell cycle of low and high passage porcine fetal fibroblasts. Reprod. Domest. Anim., 42: 660–663. Search in Google Scholar

Gómez N.A., Ramírez M.M., Ruiz-Cortés Z.T.(2018). Primary fibroblast cell cycle synchronization and effects on handmade cloned (HMC) bovine embryos. Ciênc. Anim. Bras., 19: 1–17. Search in Google Scholar

Gongora J., Biondo C., Cooper J.D., Taber A., Keuroghlian A., Altrichter M., Nascimento F.F., Chong A.Y., Miyaki C.Y., Bodmer R., Mayor P., González S. (2011). Revisiting the species status of Pecari maximus van Roosmalen et al., 2007 (Mammalia) from the Brazilian Amazon. Bonn Zoolog. Bull., 60: 95–101. Search in Google Scholar

Guo Z., Lv L., Liu D., Fu B.(2018). Effects of trichostatin A on pig SCNT blastocyst formation rate and cell number: a meta-analysis. Res. Vet. Sci., 117: 161–166. Search in Google Scholar

Hashem M.A., Bhandari D.P., Kang S.K., Lee B.C., Suk H.W.(2006). Cell cycle analysis of in vitro cultured goral (Naemorhedus caudatus) adult skin fibroblasts. Cell Biol. Int., 30: 698–703. Search in Google Scholar

Jin L., Guo Q., Zhang G.L., Xing X.X., Xuan M.F., Luo Q.R., Luo Z.B., Wang J.X., Yin X.J., Kang J.D. (2018). The histone deacetylase inhibitor, CI994, improves nuclear reprogramming and in vitro developmental potential of cloned pig embryos. Cell. Reprogram., 20: 205–213. Search in Google Scholar

Koo O.J., Hossein M.S., Hong S.G., Martinez-Conejero J.A., Lee B.C.(2009). Cell cycle synchronization of canine ear fibroblasts for somatic cell nuclear transfer. Zygote, 17: 37–43. Search in Google Scholar

Kosmider B., Zyner E., Osiecka R., Ochocki J.(2004). Induction of apoptosis and necrosis in A549 cells by the cis-Pt (II) complex of 3-aminoflavone in comparison with cis-DDP. Mutat. Res., 563: 61–70. Search in Google Scholar

Kretz R., Wendt L., Wongkanoun S., Luangsa-Ard J.J., Surup F., Helaly S.E., Noumeur S.R., Stadler M., Stradal T.E. (2019). The effect of cytochalasans on the actin cytoskeleton of eukaryotic cells and preliminary structure – activity relationships. Biomolecules, 9: 73–87. Search in Google Scholar

Kues W., Anger M., Carnwath J., Paul D., Motlik J., Niemann H.(2000). Cell cycle synchronization of porcine fetal fibroblasts: effects of serum deprivation and reversible cell cycle inhibitors. Biol. Reprod., 62: 412–419. Search in Google Scholar

Lee J.H., Chun J.L., Ki K.J., Kim E.Y., Kim D.H., Lee B.M., Han K.W., Park K.S., Lee K.B., Kim M.K. (2016). Effect of acteoside as a cell protector to produce a cloned dog. PloS One, 11: e0159330. Search in Google Scholar

Lee Y., Shim J., Ko N., Kim H.J., Park J.K., Kwak K., Choi K.(2019). Effect of alanine supplementation during in vitro maturation on oocyte maturation and embryonic development after parthenogenesis and somatic cell nuclear transfer in pigs. Theriogenology, 127: 80–87. Search in Google Scholar

Lee J., Lee Y., Lee G.S., Lee S.T., Lee E.(2019 a). Comparative study of the developmental competence of cloned pig embryos derived from spermatogonial stem cells and fetal fibroblasts. Reprod. Domest. Anim., 54: 1258–1264.10.1111/rda.1350731283039 Search in Google Scholar

Lee J.Y., Kim S.H., Yoon J.T.(2019 b). Identifying biomarkers of autophagy and apoptosis in transfected nuclear donor cells and transgenic cloned pig embryos. Ann. Anim. Sci., 19: 127–146.10.2478/aoas-2018-0046 Search in Google Scholar

Lira G.P.O., Borges A.A., Nascimento M.B., Aquino L.V.C., Oliveira M.F., Sil-va A.R., Pereira A.F. (2020). Cryopreservation of collared peccary (Pecari tajacu Linnaeus, 1758) somatic cells is improved by sucrose and high concentrations of fetal bovine serum. CryoLetters, 41: 271–279. Search in Google Scholar

Loi P., Modlinski J.A., Ptak G.(2011). Interspecies somatic cell nuclear transfer: a salvage tool seeking first aid. Theriogenology, 76: 217–228. Search in Google Scholar

Mahesh Y.U., Rao B.S., Katari V.C., Komjeti S., Christo D., Lakshmikantan U., Pawar R.M., Shivaji S. (2012). Cell cycle synchronization of bison (Bos gaurus) fibroblasts derived from ear piece collected post-mortem. Reprod. Domest. Anim., 47: 799–805. Search in Google Scholar

Opiela J., Samiec M., Bochenek M., Lipiński D., Romanek J., Wilczek P.(2013). DNA aneuploidy in porcine bone marrow-derived mesenchymal stem cells undergoing osteogenic and adipogenic in vitro differentiation. Cell. Reprogram., 15: 425–434. Search in Google Scholar

Opiela J., Samiec M., Romanek J.(2017). In vitro development and cytological quality of inter- species (porcine→bovine) cloned embryos are affected by trichostatin A-dependent epigenomic modulation of adult mesenchymal stem cells. Theriogenology, 97: 27–33. Search in Google Scholar

Park H., Koo O., Kwon D., Kang J., Jang G., Lee B.(2010). Effect of roscovitine-treated donor cells on development of porcine cloned embryos. Reprod. Domest. Anim., 45: 1082–1088. Search in Google Scholar

Queiroz Neta L.B., Lira G.P.O., Borges A.A., Santos M.V.O., Silva M.B., Olivei-ra L.R.M., Silva A.R., Oliveira M.F., Pereira A.F. (2018). Influence of storage time and nutrient medium on recovery of fibroblast-like cells from refrigerated collared peccary (Pecari tajacu Linnaeus, 1758) skin. In Vitro Cell. Dev. Biol. Anim., 54: 486–495. Search in Google Scholar

Roth V.(2006). Doubling time computing [Program for calculation]. Retrieved from www.doublingtime.com/compute.php. Accessed 08 September 2019. Search in Google Scholar

Samiec M.(2005 a). The role of mitochondrial genome (mtDNA) in somatic and embryo cloning of mammals. A review. J. Anim. Feed Sci., 14: 213–233.10.22358/jafs/67008/2005 Search in Google Scholar

Samiec M.(2005 b). The effect of mitochondrial genome on architectural remodelling and epigenetic reprogramming of donor cell nuclei in mammalian nuclear transfer-derived embryos. J. Anim. Feed Sci., 14: 393–422.10.22358/jafs/67034/2005 Search in Google Scholar

Samiec M., Skrzyszowska M.(2010 a). Preimplantation developmental capability of cloned pig embryos derived from different types of nuclear donor somatic cells. Ann. Anim. Sci., 10: 385–398. Search in Google Scholar

Samiec M., Skrzyszowska M.(2010 b). The use of different methods of oocyte activation for generation of porcine fibroblast cell nuclear-transferred embryos. Ann. Anim. Sci. 10: 399–411. Search in Google Scholar

Samiec M., Skrzyszowska M.(2012 a). Roscovitine is a novel agent that can be used for the activation of porcine oocytes reconstructed with adult cutaneous or fetal fibroblast cell nuclei. Theriogenology, 78: 1855–1867.10.1016/j.theriogenology.2012.06.02922979963 Search in Google Scholar

Samiec M., Skrzyszowska M.(2012 b). High developmental capability of porcine cloned embryos following trichostatin A-dependent epigenomic transformation during in vitro maturation of oocytes pre-exposed to R-roscovitine. Anim. Sci. Pap. Rep. 30: 383–393. Search in Google Scholar

Samiec M., Skrzyszowska M.(2013). Assessment of in vitro developmental capacity of porcine nuclear-transferred embryos reconstituted with cumulus oophorus cells undergoing vital diagnostics for apoptosis detection. Ann. Anim. Sci., 13: 513–529. Search in Google Scholar

Samiec M., Skrzyszowska M.(2014). Biological trans complementary activation as a novel and effective strategy applied to the generation of porcine somatic cell cloned embryos. Reprod. Biol., 14: 128–139. Search in Google Scholar

Samiec M., Skrzyszowska M.(2018 a). Intrinsic and extrinsic molecular determinants or modulators for epigenetic remodelling and reprogramming of somatic cell-derived genome in mammalian nuclear-transferred oocytes and resultant embryos. Pol. J. Vet. Sci., 21: 217–227. Search in Google Scholar

Samiec M., Skrzyszowska M.(2018 b). Can reprogramming of overall epigenetic memory and specific parental genomic imprinting memory within donor cell-inherited nuclear genome be a major hindrance for the somatic cell cloning of mammals? – a review. Ann. Anim. Sci., 18: 623–638.10.2478/aoas-2018-0015 Search in Google Scholar

Samiec M., Skrzyszowska M., Opiela J.(2013 a). Creation of cloned pig embryos using contact-inhibited or serum-starved fibroblast cells analysed intravitam for apoptosis occurrence. Ann. Anim. Sci., 13: 275–293.10.2478/aoas-2013-0009 Search in Google Scholar

Samiec M., Skrzyszowska M., Bochenek M.(2013 b). In vitro development of porcine nuclear-transferred embryos derived from fibroblast cells analysed cytometrically for apoptosis incidence and accuracy of cell cycle synchronization at the G0/G1 stages. Ann. Anim. Sci., 13: 735–752.10.2478/aoas-2013-0049 Search in Google Scholar

Samiec M., Romanek J., Lipiński D., Opiela J.(2019). Expression of pluripotency-related genes is highly dependent on trichostatin A-assisted epigenomic modulation of porcine mesenchymal stem cells analysed for apoptosis and subsequently used for generating cloned embryos. Anim. Sci. J., 90: 1127–1141. Search in Google Scholar

Seaby R., Alexander B., King W., Mastromonaco G.(2013). In vitro development of bison embryos using interspecies somatic cell nuclear transfer. Reprod. Domest. Anim., 48: 881–887. Search in Google Scholar

Song X., Liu Z., He H., Wang J., Li H., Li J., Li F., Jiang Z., Huan Y.(2017). Dnmt1s in donor cells is a barrier to SCNT-mediated DNA methylation reprogramming in pigs. Oncotarget, 8: 34980–34991. Search in Google Scholar

St John J.C., Moffatt O., D’Souza N.(2005). Aberrant heteroplasmic transmission of mtDNA in cloned pigs arising from double nuclear transfer. Mol. Reprod. Dev., 72: 450–460. Search in Google Scholar

Takeda K., Tasai M., Iwamoto M., Akita T., Tagami T., Nirasawa K., Hanada H., Onishi A. (2006). Transmission of mitochondrial DNA in pigs and progeny derived from nuclear transfer of Meishan pig fibroblast cells. Mol. Reprod. Dev., 73: 306–312. Search in Google Scholar

Veraguas D., Gallegos P., Castro F., Alvarez L.R.(2017). Cell cycle synchronization and analysis of apoptosis-related gene in skin fibroblasts from domestic cat (Felis silvestris catus) and kodkod (Leopardus guigna). Reprod. Domest. Anim., 52: 881–889. Search in Google Scholar

Wang H., Cui W., Meng C., Zhang J., Li Y., Qian Y., Xing G., Zhao D., Cao S.(2018). MC1568 enhances histone acetylation during oocyte meiosis and improves development of somatic cell nuclear transfer embryos in pig. Cell. Reprogram., 20: 55–65. Search in Google Scholar

Wittayarat M., Thongphakdee A., Saikhun K., Chatdarong K., Otoi T., Techa-kumphu M. (2013). Cell cycle synchronization of skin fibroblast cells in four species of family Felidae. Reprod. Domest. Anim., 48: 305–310. Search in Google Scholar

Wu C.F., Zhang D.F., Zhang S., Sun L., Liu Y., Dai J.J.(2019). Optimizing treatment of DNA methyltransferase inhibitor RG108 on porcine fibroblasts for somatic cell nuclear transfer. Reprod. Domest. Anim., 54: 1604–1611. Search in Google Scholar

Yang S., Hwang S., Jang J., Kim M., Gwak J., Jeong S.M.(2018). PGC1α is required for the induction of contact inhibition by suppressing ROS. Biochem. Biophys. Res. Commun., 501: 739–744. Search in Google Scholar

Zhang Y., Qu P., Ma X., Qiao F., Ma Y., Qing S., Zhang Y., Wang Y., Cui W.(2018). Tauroursodeoxycholic acid (TUDCA) alleviates endoplasmic reticulum stress of nuclear donor cells under serum starvation. PLoS One, 13: e0196785. Search in Google Scholar

Zhao Q., Wu Y., Shan Z., Bai G., Wang Z., Hu J., Liu L., Li T., Shen J., Lei L.(2016). Serum starvation-induced cell cycle synchronization stimulated mouse rDNA transcription reactivation during somatic cell reprogramming into iPSCs. Stem Cell Res. Ther., 7: 112–122. Search in Google Scholar

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