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The Study on the Gene Expression of Preimplantation IVF Bovine Embryos 被引量:1
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作者 栗雪冰 仓明 Xue-bing 《Agricultural Science & Technology》 CAS 2010年第5期93-95,111,共4页
The cattle different stage embryos obtained from in vitro was studied using the technology of single preimplantation embryo mRNA different display:single 8-cell and blastocyst stage embryos were studied using technolo... The cattle different stage embryos obtained from in vitro was studied using the technology of single preimplantation embryo mRNA different display:single 8-cell and blastocyst stage embryos were studied using technology of mRNA different display and one different fragment was found. The result suggested that this fragment displayed high homology (99%) to cattle mRNA for ribosomal protein L31. Then to detect the expression of RPL31mRNA in 8 cell and blastocyst stage embryos by real-time quantitative PCR,the result showed the relative amount of 8 cells was 3.2 times of blastocyst's. 展开更多
关键词 single preimplantation embryo mRNA different display Cattle embryo Gene Real-time quantitative PCR
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Establishment and transcriptome analysis of single blastomerederived cell lines from zebrafish
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作者 Jia Xu Siqi Liu +3 位作者 Yirui Ai Yunbin Zhang Shifeng Li Yiping Li 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2024年第9期957-969,共13页
Maintaining chromosome euploidy in zebrafish embryonic cells is challenging because of the degradation of genomic integrity during cell passaging.In this study,we report the derivation of zebrafish cell lines from sin... Maintaining chromosome euploidy in zebrafish embryonic cells is challenging because of the degradation of genomic integrity during cell passaging.In this study,we report the derivation of zebrafish cell lines from single blastomeres.These cell lines have a stable chromosome status attributed to BMP4 and exhibit continuous proliferation in vitro.Twenty zebrafish cell lines are successfully established from single blastomeres.Single-cell transcriptome sequencing analysis confirms the fidelity of gene expression profiles throughout long-term culturing of at least 45 passages.The long-term cultured cells are specialized into epithelial cells,exhibiting similar expression patterns validated by integrative transcriptomic analysis.Overall,this work provides a protocol for establishing zebrafish cell lines from single blastomeres,which can serve as valuable tools for in vitro investigations of epithelial cell dynamics in terms of lifeedeath balance and cell fate determination during normal homeostasis. 展开更多
关键词 ZEBRAFISH single embryo Cell lines Sngle-cell RNA sequencing(scRNA-Seq) embryonic epidermis EPITHELIUM
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The Application of Somaclonal Variation in Early Maturity,High Yield and High Quality Improvement in Wheat 被引量:2
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作者 Hu Shanglian, Zeng Hanbing, Li Wenxiong(Wheat Physiol. and Biotech. Lab, Dept. of Agronomy, NEAU, Harbin 150030, PRC) 《Journal of Northeast Agricultural University(English Edition)》 CAS 1996年第2期81-87,共7页
Yield characters, maturity and grain protein content of somaclones derived both from immature embryo of cultivar 77(2)-Spring and single-cell culture of cultivar NE7742 in vitro were studied and the wide variation was... Yield characters, maturity and grain protein content of somaclones derived both from immature embryo of cultivar 77(2)-Spring and single-cell culture of cultivar NE7742 in vitro were studied and the wide variation was found. Somaclones with maturity 8 days earlier than or the same as CK NE 7742 (high yield, early maturity and high quality), combining with high quality (grain protein content 15.5% - 18%) and high yield (the same as 7724 or higher) have been found and selected and now multiplied for 8 generations. The results of cultivar comparison trial in 1995 showed that several somaclones (the yields were significantly higher than CK DN120) could be used directly in wheat production. The studies confirmed that somaclonal variation is one of the effective ways for early maturity, high-yielding and high-quality improvement in wheat. 展开更多
关键词 common wheat (Triticum aestivum L) immature embryo culture single cell culture in vitro somaclonal variation
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