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哺乳动物中的核移植:最新进展与未来展望。

Nuclear transfer in mammals: recent developments and future perspectives.

作者信息

Wolf E, Zakhartchenko V, Brem G

机构信息

Lehrstuhl für Molekulare Tierzucht und Haustiergenetik/Genzentrum, Ludwig-Maximilians-Universität, München, Germany.

出版信息

J Biotechnol. 1998 Oct 27;65(2-3):99-110. doi: 10.1016/s0168-1656(98)00132-1.

Abstract

A clone can be defined as a set of genetically identical animals. Small clones of two or occasionally up to four identical animals can be obtained by embryo splitting or blastomere separation. Embryo cloning by nuclear transfer involves the transfer of genetic material from a donor cell (karyoplast) to the cytoplasm of an oocyte or zygote from which the genetic material has been removed (cytoplast). In farm animals, metaphase II oocytes are most widely used as cytoplasts. There are now many factors known to influence the efficiency of embryo cloning by nuclear transfer. These include stage of development and cell cycle of donor cells, the choice of the recipient cell, the methods for activation of oocytes, the cell cycle coordination between donor cell and recipient cytoplast, and the method for fusion between nuclear donor and recipient cytoplast. Recent progress in cloning embryos and animals from cultured cells of embryonic, fetal, or adult origin offers a wide spectrum of potential applications of nuclear transfer, such as the unlimited multiplication of elite embryos or animals from selected matings and the potential for precise genetic modification of farm animals for gene farming or xenotransplantation.

摘要

克隆体可定义为一组基因相同的动物。通过胚胎分割或卵裂球分离可获得由两个或偶尔多达四个相同动物组成的小克隆体。核移植胚胎克隆涉及将遗传物质从供体细胞(核体)转移到已去除遗传物质的卵母细胞或受精卵的细胞质(胞质体)中。在农场动物中,减数分裂II期卵母细胞作为胞质体应用最为广泛。目前已知有许多因素会影响核移植胚胎克隆的效率。这些因素包括供体细胞的发育阶段和细胞周期、受体细胞的选择、卵母细胞的激活方法、供体细胞与受体胞质体之间的细胞周期协调,以及核供体与受体胞质体之间的融合方法。从胚胎、胎儿或成年来源的培养细胞克隆胚胎和动物的最新进展为核移植提供了广泛的潜在应用,例如通过选择交配使优良胚胎或动物无限繁殖,以及对农场动物进行精确基因改造以用于基因养殖或异种移植的可能性。

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