重组胚胎和后代线粒体失配的功能后果

K. Takeda
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引用次数: 11

摘要

动物克隆技术已经发展到产生与给定供体细胞基因相同的后代。然而,在核移植方案中,受体卵母细胞为后代提供了可遗传的线粒体基因组(mtDNA)背景。此外,在此过程中,少量供体细胞来源的线粒体伴随着转移的细胞核;因此,两种来源的mtdna在重组卵母细胞的细胞质(异质性)中混合。在此,我想介绍一些我们之前的结果,涉及与动物克隆相关的五个关键因素,包括:体细胞核移植(SCNT)动物的mtDNA异质性,mtDNA异质性在SCNT牛和猪后代中的传递变化,mtDNA序列差异对SCNT牛和猪线粒体蛋白的影响,体细胞线粒体导入受体卵母细胞对胚胎发育的影响,以及种间/种内核移植胚胎mtDNA异质性的改变。
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Functional consequences of mitochondrial mismatch in reconstituted embryos and offspring
Animal cloning technology has been developed to produce progenies genetically identical to a given donor cell. However, in nuclear transfer protocols, the recipient oocytes contribute a heritable mitochondrial genomic (mtDNA) background to the progeny. Additionally, a small amount of donor cell-derived mitochondria accompanies the transferred nucleus in the process; hence, the mtDNAs of two origins are mixed in the cytoplasm (heteroplasmy) of the reconstituted oocyte. Herein, I would like to introduce some of our previous results concerning five key considerations associated with animal cloning, including: mtDNA heteroplasmy in somatic cell nuclear transferred (SCNT) animals, the variation in the transmission of mtDNA heteroplasmy to subsequent generations SCNT cows and pigs, the influence of mtDNA sequence differences on mitochondrial proteins in SCNT cows and pigs, the effects of the introduction of mitochondria derived from somatic cells into recipient oocytes on embryonic development, and alterations of mtDNA heteroplasmy in inter/intraspecies nuclear transfer embryos.
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