ラクダとチベットレイヨウの体細胞を核移植したウサギ卵子の発生能
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概要
- 論文の詳細を見る
This study was designed to examine the ability of rabbit metaphase II oocyte cytoplasm to support the development of interspecies nuclear transfer embryos reconstructed using donor nuclei from different species. Skin fibroblast cells from a camel and Tibetan antelope were used as donor nuclei. As a first step, we investigated the efficiency of different activation protocols by comparing the parthenogenetic development of rabbit oocytes. The protocol that yielded the highest blastocyst rate was used to activate the reconstructed embryos in nuclear transfer experiments. In addition, the effect of donor cell serum starvation on the development of the reconstructed embryo was also examined. More than half of the karyoplast-cytoplast couplets could be fused, and about one third of the reconstructed embryos were capable of completing first cleavage, regardless of the species of donor nuclei. Some of the cleaving reconstructed embryos were even capable of progressing further and developing to the blastocyst stage (1.4-8.7% for the Tibetan antelope and 0-7.5% for the camel, respectively). Our results suggest that the mechanisms regulating early embryo development may be conserved among mammalian species and some factors existing in rabbit oocyte cytoplasm for somatic nucleus reprogramming and dedifferentiation may not be species-specific. Rabbit oocyte cytoplasm can reprogram donor nuclei regardless of the origin of the nucleus and support in vitro development to an advanced stage.
- 日本繁殖生物学会の論文
- 2006-06-01
著者
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Song Xiang-fen
State Key Lab. Of Reproductive Biology Inst. Of Zoology
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CHEN Da-Yuan
State Key Laboratory of Reproductive Biology, Institute of Zoology, The Chinese Academy of Sciences
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SUN Qing-Yuan
State Key Laboratory of Reproductive Biology, Institute of Zoology, The Chinese Academy of Sciences
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Chen D‐y
State Key Laboratory Of Reproductive Biology Institute Of Zoology Chinese Academy Of Sciences
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Chen Da-yuan
State Key Laboratory Of Reproductive Biology Institute Of Zoology
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Nan Chang-Long
State Key Laboratory of Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences
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Lei Zi-Li
State Key Laboratory of Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences
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Zhao Zhen-Jun
State Key Laboratory of Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences
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OUYANG Ying-Chun
State Key Laboratory of Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences
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Sun Qing-yuan
State Key Laboratory Of Reproductive Biology Institute Of Zoology Chinese Academy Of Sciences
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Sun Q‐y
Inst. Zoology Chinese Acad. Sci. Beijing Chn
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Sun Qing-yuan
Developmental Biology Department National Institute Of Agrobiological Sciences
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Chen Da-yuan
中華人民共和国
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Ouyang Ying-chun
中華人民共和国
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Sun Qing-yuan
State Key Laboratory Of Reproductive Biology Institute Of Zoology
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Lei Zi-li
State Key Laboratory Of Reproductive Biology Institute Of Zoology Chinese Academy Of Sciences
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Ouyang Ying-chun
State Key Laboratory Of Reproductive Biology Institute Of Zoology Chinese Academy Of Sciences
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Nan Chang-long
State Key Laboratory Of Reproductive Biology Institute Of Zoology Chinese Academy Of Sciences
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Zhao Zhen-jun
State Key Laboratory Of Reproductive Biology Institute Of Zoology Chinese Academy Of Sciences
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Song Xiang-fen
State Key Laboratory Of Reproductive Biology Institute Of Zoology Chinese Academy Of Sciences
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SUN Qing-Yuan
State Key Laboratory of Reproduction Biology, Institute of Zoology, Chinese Academy of Science
関連論文
- マウス卵母細胞の成熟、受精および初期胚発生におけるγチューブリンの局在
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- ラクダとチベットレイヨウの体細胞を核移植したウサギ卵子の発生能
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- Calcium-Independent, Egg Age-Dependent Parthenogenic Activation of Mouse Eggs by Staurosporine
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