生物
克隆(编程)
胚胎
体细胞
濒危物种
体细胞核移植
犬只
男科
嵌合体(遗传学)
胚胎移植
微卫星
胚胎培养
灰太狼
遗传学
低温保存
胚泡
胚胎发生
基因
医学
生态学
栖息地
计算机科学
等位基因
程序设计语言
古生物学
作者
Min Kyu Kim,Goo Jang,Hyun Ju Oh,Fibrianto Yuda,Hye Jin Kim,Woo Suk Hwang,Mohammad Shamim Hossein,Joung Joo Kim,Nam Shik Shin,Sung Keun Kang,Byeong Chun Lee
出处
期刊:Cloning and Stem Cells
[Mary Ann Liebert, Inc.]
日期:2007-03-26
卷期号:9 (1): 130-137
被引量:178
标识
DOI:10.1089/clo.2006.0034
摘要
Over the world, canine species, including the gray wolf, have been gradually endangered or extinct. Many efforts have been made to recover and conserve these canids. The aim of this study was to produce the endangered gray wolf with somatic cell nuclear transfer (SCNT) for conservation. Adult ear fibroblasts from a female gray wolf (Canis lupus) were isolated and cultured in vitro as donor cells. Because of limitations in obtaining gray wolf matured oocytes, in vivo matured canine oocytes obtained by flushing the oviducts from the isthmus to the infundibulum were used. After removing the cumulus cells, the oocyte was enucleated, microinjected, fused with a donor cell, and activated. The reconstructed cloned wolf embryos were transferred into the oviducts of the naturally synchronized surrogate mothers. Two pregnancies were detected by ultrasonography at 23 days of gestation in recipient dogs. In each surrogate dog, two fetal sacs were confirmed by early pregnancy diagnosis at 23 days, but only two cloned wolves were delivered. The first cloned wolf was delivered by cesarean section on October 18, 2005, 60 days after embryo transfer. The second cloned wolf was delivered on October 26, 2005, at 61 days postembryo transfer. Microsatellite analysis was performed with genomic DNA from the donor wolf, the two cloned wolves, and the two surrogate female recipients to confirm the genetic identity of the cloned wolves. Analysis of 19 microsatellite loci confirmed that the cloned wolves were genetically identical to the donor wolf. In conclusion, we demonstrated live birth of two cloned gray wolves by nuclear transfer of wolf somatic cells into enucleated canine oocyte, indicating that SCNT is a practical approach for conserving endangered canids.
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