Temerario Letizia, Cicirelli Vincenzo, Martino Nicola Antonio, Carbonari Alice, Burgio Matteo, Frattina Lorenza, Lacalandra Giovanni Michele, Rizzo Annalisa, Dell'Aquila Maria Elena
Department of Biosciences, Biotechnologies & Environment, University of Bari Aldo Moro, Strada per Casamassima km 3, 70010 Valenzano, Italy.
Department of Veterinary Medicine, University of Bari Aldo Moro, km 3 Strada per Casamassima, 70010 Valenzano, Italy.
Animals (Basel). 2024 Mar 5;14(5):807. doi: 10.3390/ani14050807.
Reproductive biotechnologies can be used as a supporting tool, through gamete conservation and in vitro embryo production, in the preservation of invaluable and irreplaceable animal genetic resources. In the present study, immature mouflon cumulus-oocyte complexes (COCs) collected from ovariectomized female ovaries underwent short- or long-term conservation (24 h maintained in Earle's/Hank's (EH) medium or vitrification) under field conditions and afterwards transported to the laboratory where they were cultured for in vitro maturation (IVM) and assessed for oocyte meiotic competence and bioenergetic-oxidative status. Utilization of both storage techniques led to COC morphology preservation, as well as cumulus expansion and oocyte meiotic resumption after the IVM procedure. Quantitative bioenergetic-oxidative parameters were reduced in vitrified oocytes compared with EH ones. Immature COC storage needs to be optimized in both domesticated and non-domesticated sheep as a part of the strategy to avoid the loss of valuable genotypes of these animal species.
生殖生物技术可作为一种辅助工具,通过配子保存和体外胚胎生产,来保护珍贵且不可替代的动物遗传资源。在本研究中,从切除卵巢的雌性绵羊卵巢中采集的未成熟摩弗伦羊卵丘-卵母细胞复合体(COCs),在野外条件下进行短期或长期保存(在Earle's/Hank's(EH)培养基中保存24小时或玻璃化),之后转运至实验室进行体外成熟(IVM)培养,并评估卵母细胞的减数分裂能力和生物能量-氧化状态。两种保存技术的应用均使COC形态得以保留,并且在IVM程序后出现卵丘扩展和卵母细胞减数分裂恢复。与EH保存的卵母细胞相比,玻璃化处理的卵母细胞的生物能量-氧化定量参数降低。作为避免这些动物物种珍贵基因型丢失策略的一部分,未成熟COC的保存需要在驯养和非驯养绵羊中进行优化。