[1] 翟亚莹,施巧婷,楚秋霞,等.胚胎移植前供体牛与受体牛血浆外泌体miRNA差异表达分析[J].中国畜牧兽医,2022,49(2):641-649.ZHAI Y Y,SHI Q T,CHU Q X,et al.Differential expression analysis of plasma exosomes microRNA between donor and recipient cattle before embryo transfer [J].China Animal Husbandry & Veterinary Medicine,2022,49(2):641-649.(in Chinese) [2] CARVALHO C V D,HERMISDORFF I D C,SOUZA I S,et al.Influence of X-chromosome markers on reproductive traits of beef cattle [J].Livestock Science,2019,220:152-157. [3] LIAO X G,LI Y L,GAO R F,et al.Folate deficiency decreases apoptosis of endometrium decidual cells in pregnant mice via the mitochondrial pathway [J].Nutrients,2015,7(3):1916-1932. [4] 李廷来,祁兴磊,王之保,等.夏南牛新品种培育项目的实施与现状[J].中国牛业科学,2008,5:53-59.LI T L,QI X L,WANG Z B,et al.The implementation and status of Xianan cattle new breed cultivation project [J].China Cattle Science,2008,5:53-59.(in Chinese) [5] 邢珊珊,李鑫,余磊,等.夏南牛SOX6基因克隆、生物信息学分析及组织表达研究[J].中国畜牧兽医,2023,50(7):2651-2660.XING S S,LI X,YU L,et al.Cloning,bioinformatics analysis and tissue expression of SOX6 gene in Xianan cattle [J].China Animal Husbandry & Veterinary Medicine,2023,50(7):2651-2660.(in Chinese) [6] ROTH Z.Heat stress reduces maturation and developmental capacity in bovine oocytes [J].Repreducton Fertility,and Development,2021,33(2):66-75. [7] GÓMEZ-GUZMÁN J A,PARRA-BRACAMONTE G M,VELAZQUEZ M A.Impact of heat stress on oocyte developmental competence and pre-implantation embryo viability in cattle [J].Animals (Basel),2024,14(15):2280. [8] FENG X,LI C,ZHANG H,et al.Heat-stress impacts on developing bovine oocytes:Unraveling epigenetic changes,oxidative stress,and developmental resilience [J].International Journal of Molecular Sciences,2024,25(9):4808. [9] WANG J,LIU Y,SUN W,et al.Plasma exosomes as novel biomarker for the early diagnosis of gastric cancer [J].Cancer Biomarkers,2018,21(4):805-812. [10] SYED S N,BRVNE B.Exosomal and non-exosomal microRNAs:New kids on the block for cancer therapy [J].International Journal of Molecular Sciences,2022,23(9):4493. [11] ZHANG X,ZHU L,WANG X,et al.Advances in the role and mechanism of miRNA in inflammatory pain [J].Biomedicine & Pharmacotherapy,2023,161:114463. [12] MAZZARELLA R,CAÑÓN-BELTRÁN K,CAJAS Y N,et al.Extracellular vesicles-coupled miRNAs from oviduct and uterus modulate signaling pathways related to lipid metabolism and bovine early embryo development [J].Journal of Animal Science and Biotechnology,2024,15(1):51. [13] CHEN C,ZHANG Z,GU X,et al.Exosomes:New regulators of reproductive development [J].Materials Today Bio,2023,19:100608. [14] QIAO F,GE H,MA X,et al.Bovine uterus-derived exosomes improve developmental competence of somatic cell nuclear transfer embryos [J].Theriogenology,2018,114:199-205. [15] 赵乐,杨海丽,张蓉,等.外泌体对哺乳动物妊娠的调控作用[J].畜牧兽医学报,2019,50(12):2371-2378.ZHAO L,YANG H L,ZHANG R,et al.The regulation role of exosomes in mammalian pregnancy [J].Acta Veterinaria et Zootechnica Sinica,2019,50(12):2371-2378.(in Chinese) [16] BERNSTEIN E,KIM S Y,CARMELL M A,et al.Dicer is essential for mouse development [J].Nature Genetics,2003,35(3):215-217. [17] ALISCH R S,JIN P,EPSTEIN M,et al.Argonaute2 is essential for mammalian gastrulation and proper mesoderm formation [J].PLoS Genetics,2007,3(12):e227. [18] GOOSSENS K,MESTDAGH P,LEFEVER S,et al.Regulatory microRNA network identification in bovine blastocyst development [J].Stem Cells and Development,2013,22(13):1907-1920. [19] AOKI S,INOUE Y,SHINOZAWA A,et al.miR-17-5p in bovine oviductal fluid affects embryo development [J].Molecular and Cellular Endocrinology,2022,551:111651. [20] MACKOWIAK S D.Identification of novel and known miRNAs in deep-sequencing data with miRDeep2[J].Current Protocols in Bioinformatics,2011,Chapter 12:12.10.11-12.10.15. [21] DEUTSCH D R,FRÖHLICH T,OTTE K A,et al.Stage-specific proteome signatures in early bovine embryo development [J].Journal of Proteome Research,2014,13(10):4363-4376. [22] ZHAO J,YAO K,YU H,et al.Metabolic remodelling during early mouse embryo development [J].Nature Metabolism,2021,3(10):1372-1384. [23] SUDANO M J,RASCADO T D S,TATA A,et al.Lipidome signatures in early bovine embryo development [J].Theriogenology,2016,86(2):472-484.e471. [24] JORDAENS L,VAN HOECK V,PINTELON I,et al.Altered embryotrophic capacities of the bovine oviduct under elevated free fatty acid conditions:An in vitro embryo-oviduct co-culture model [J].Repreducton Fertility,and Development,2020,32(6):553-563. [25] JUENGEL J L,READER K L,MACLEAN P H,et al.The role of the oviduct environment in embryo survival [J].Repreducton Fertility,and Development,2024,36:RD23171. [26] 方正,董杰,王晓红.母胎界面外泌体的生理作用及其参与病理妊娠的研究进展[J].解放军医学院学报,2022,43(7):801-804.FANG Z,DONG J,WNAG X H.Research advances in physiological role of exosomes at maternal-fetal interface and its involvement in pathological pregnancy [J].Academic Journal of Chinese Pla Medical School,2022,43(7):801-804.(in Chinese) [27] 卢永昌,甘建宇,黄思秀,等.外泌体调控胚胎发育的研究进展[J].家畜生态学报,2024,45(2):91-96.LU Y C,GAN J Y,HUANG S X,et al.Research progress on exosomes regulating embryonic development [J].Acta Ecologiae Animalis Domastici,2024,45(2):91-96.(in Chinese) [28] HAMDI M,LOPERA-VASQUEZ R,MAILLO V,et al.Bovine oviductal and uterine fluid support in vitro embryo development [J].Repreducton Fertility,and Development,2018,30(7):935-945. [29] LOPERA-VASQUEZ R,HAMDI M,MAILLO V,et al.Effect of bovine oviductal extracellular vesicles on embryo development and quality in vitro [J].Reproduction,2017,153(4):461-470. [30] ALMIÑANA C,CORBIN E,TSIKIS G,et al.Oviduct extracellular vesicles protein content and their role during oviduct-embryo cross-talk [J].Reproduction,2017,154(3):153-168. [31] LOPERA-VÁSQUEZ R,HAMDI M,FERNANDEZ-FUERTES B,et al.Extracellular vesicles from BOEC in in vitro embryo development and quality [J].PLoS One,2016,11(2):e0148083. [32] BARTON S,ZHOU W,SANTOS L L,et al.miR-23b-3p regulates human endometrial epithelial cell adhesion implying a role in implantation [J].Reproduction,2023,165(4):407-416. [33] 张蓉,赵乐,杨海丽,等.细胞外囊泡调控哺乳动物胚胎附植研究进展[J].畜牧兽医学报,2021,52(5):1154-1162.ZHANG R,ZHAO L,YANG H L,et al.Research progress of extracellular vesicles regulating mammalian embryo implantation [J].Acta Veterinaria et Zootechnica Sinica,2021,52(5):1154-1162.(in Chinese) [34] SUN F,CAI H,TAN L,et al.Placenta-specific miR-125b overexpression leads to increased rates of pregnancy loss in mice [J].International Journal of Molecular Sciences,2022,23(2):943. [35] CHEN X,LIU J,FENG W K,et al.miR-125b protects against ethanol-induced apoptosis in neural crest cells and mouse embryos by targeting Bak1 and PUMA [J].Experimental Neurology,2015,271:104-111. [36] BENEDETTI C,PAVANI K C,GANSEMANS Y,et al.From follicle to blastocyst:microRNA-34c from follicular fluid-derived extracellular vesicles modulates blastocyst quality [J].Journal of Animal Science and Biotechnology,2024,15(1):104. [37] 李斌,郭燕华,徐辉,等.microRNA与细胞信号通路的相互作用[J].生物化学与生物物理进展,2013,40(7):593-602.LI B,GUO Y H,XU H,et al.The reciprocal interactions of microRNA and cell signaling pathways [J].Progress in Biochemistry and Biophysics,2013,40(7):593-602.(in Chinese) [38] TANG C,WANG J,YAO M,et al.Hippo signaling activates hedgehog signaling by Taz-driven Gli3 processing [J].Cell Regeneration,2023,12(1):3. [39] LI H,LI Q,YU H.Molecular characterization of the Hedgehog signaling pathway and its necessary function on larval myogenesis in the pacific oyster Crassostrea gigas [J].Frontiers in Physiology,2018,9:1536. [40] MOK G F,MOXON S,VIAUT C,et al.The myomiR,miR-133,orchestrates myotome formation and embryonic myogenesis via concerted regulation of hedgehog-pathway components [J].Mechanisms of Development,2017,145:S139. [41] NADRI P,ANSARI-MAHYARI S,ZAHMATKESH A,et al.Effects of a sonic Hedgehog agonist on ovine oocyte maturation,epigenetic changes and development of parthenogenetic embryos [J].Small Ruminant Research,2016,141:84-90. [42] WU M Y,HILL C S.TGF-β superfamily signaling in embryonic development and homeostasis [J].Developmental Cell,2009,16(3):329-343. [43] YANG L,WEI Q,LI W,et al.NPR2 is involved in FSH-mediated mouse oocyte meiotic resumption [J].Journal of Ovarian Research,2016,9(1):6. [44] YU W J,CHEN C Z,PENG Y X,et al.Schisanhenol improves early porcine embryo development by regulating the phosphorylation level of MAPK [J].Theriogenology,2021,175:34-43. |