Spermatogonial stem cells specific marker identification in channel catfish, Ictalurus punctatus and blue catfish, I. furcatus

被引:0
|
作者
Mei Shang
Baofeng Su
Elizabeth A. Lipke
Dayan A. Perera
Chao Li
Zhenkui Qin
Yun Li
David A. Dunn
Sehriban Cek
Eric Peatman
Rex A. Dunham
机构
[1] Auburn University,School of Fisheries, Aquaculture, and Aquatic Sciences
[2] Auburn University,Department of Chemical Engineering
[3] Chinese Academy of Fishery Sciences,Key Laboratory of Freshwater Aquatic Biotechnology and Genetic Breeding, Heilongjiang Fisheries Research Institute
[4] Ministry of Agriculture,Gus R. Douglass Land
[5] West Virginia State University,Grant Institute
[6] Qingdao Agricultural University,Marine Science and Engineering College
[7] Mustafa Kemal University,Faculty of Marine Science and Technology
[8] State University of New York at Oswego,Department of Biological Sciences
来源
Fish Physiology and Biochemistry | 2015年 / 41卷
关键词
Catfish; Spermatogonia stem cell; Density gradient centrifugation; Gene expression; Marker gene;
D O I
暂无
中图分类号
学科分类号
摘要
Testicular germ cells of channel catfish, Ictalurus punctatus, and blue catfish, I. furcatus were separated into four layers with Percoll density gradient centrifugation, containing different cell types (40 % in the first layer were spermatogonial stem cells, SSCs). Expression of seventeen genes was analyzed for cells from different layers by real-time quantitative PCR. Pfkfb4, Urod, Plzf, Integrin6, IntegrinV, Thy1 and Cdh1 genes showed the same expression change pattern in both channel and blue catfish as these genes were down-regulated in the spermatocytes and even more so in spermatids. Plzf and Integrin6 had especially high expression in SSCs and can be used as SSCs specific markers. Sox2 gene was up-regulated in spermatocytes and even more highly up-regulated in spermatids, which indicated it could be a spermatid marker. In contrast to channel catfish, Id4, Smad5 and Prdm14 gene expressions were strongly down-regulated in spermatocyte cells, but up-regulated in spermatid cells in blue catfish. Smad5 gene was down-regulated in spermatocytes, but up-regulated in both spermatogonia and spermatids, allowing identification as a marker for spermatocytes in blue catfish. Oct4, Id4, Gfrα2, Pum2 and Prdm14 genes showed different expression patterns in the testicular germ cells of channel and blue catfish. This may be a partial explanation to the differing responses of channel catfish and blue catfish to induced spawning technologies. The SSCs specific markers can be used for further SSCs labeling, which can increase the SSCs sorting efficiency and be applied in various studies involving SSCs and other germ cells.
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页码:1545 / 1556
页数:11
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