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在狗鲨(Scyliorhinus canicula)精子发生过程中的阶段特异性基因表达。

Stage-specific gene expression during spermatogenesis in the dogfish (Scyliorhinus canicula).

机构信息

UMR M100 Ifremer, Physiologie et Ecophysiologie des Mollusques Marins, IFR 146 ICORE, Université de Caen Basse-Normandie, 14032 Caen, France.

出版信息

Reproduction. 2010 Jul;140(1):57-71. doi: 10.1530/REP-10-0021. Epub 2010 Apr 27.

Abstract

In the dogfish testis, the cystic arrangement and polarization of germ cell stages make it possible to observe all stages of spermatogenesis in a single transverse section. By taking advantage of the zonation of this organ, we have used suppressive subtractive libraries construction, real-time PCR, and in situ hybridization to identify 32 dogfish genes showing differential expressions during spermatogenesis. These include homologs of genes already known to be expressed in the vertebrate testis, but found here to be specifically expressed either in pre-meiotic and/or meiotic zones (ribosomal protein S8, high-mobility group box 3, ubiquitin carboxyl-terminal esterase L3, 20beta-hydroxysteroid dehydrogenase, or cyclophilin B) or in post-meiotic zone (speriolin, Soggy, zinc finger protein 474, calreticulin, or phospholipase c-zeta). We also report, for the first time, testis-specific expression patterns for dogfish genes coding for A-kinase anchor protein 5, ring finger protein 152, or F-box only protein 7. Finally, the study highlights the differential expression of new sequences whose identity remains to be assessed. This study provides the first molecular characterization of spermatogenesis in a chondrichthyan, a key species to gain insight into the evolution of this process in gnathostomes.

摘要

在星鲨睾丸中,生殖细胞阶段的囊状排列和极化使得在单个横切面上观察精子发生的所有阶段成为可能。利用该器官的分区,我们已经使用抑制性消减文库构建、实时 PCR 和原位杂交技术来鉴定 32 个在精子发生过程中表现出差异表达的星鲨基因。这些基因包括已经在脊椎动物睾丸中表达的基因的同源物,但在这里发现它们专门在减数分裂前期和/或减数分裂区(核糖体蛋白 S8、高迁移率族盒 3、泛素羧基末端酯酶 L3、20β-羟固醇脱氢酶或亲环素 B)或在减数分裂后期区(精子鞘蛋白、Soggy、锌指蛋白 474、钙网蛋白或磷脂酶 C-ζ)表达。我们还首次报道了编码 A-激酶锚蛋白 5、环指蛋白 152 或仅 F -box 蛋白 7 的星鲨基因的睾丸特异性表达模式。最后,该研究强调了新序列的差异表达,其身份仍有待评估。这项研究提供了软骨鱼类精子发生的首次分子特征描述,这是一种关键物种,可以深入了解该过程在颌类动物中的进化。

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