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扁虫干细胞与生殖系:大吻涡虫中macvasa表达的发育及进化意义

Flatworm stem cells and the germ line: developmental and evolutionary implications of macvasa expression in Macrostomum lignano.

作者信息

Pfister Daniela, De Mulder Katrien, Hartenstein Volker, Kuales Georg, Borgonie Gaetan, Marx Florentine, Morris Joshua, Ladurner Peter

机构信息

University of Innsbruck, Institute of Zoology, Technikerstrasse 25, A-6020 Innsbruck, Austria.

出版信息

Dev Biol. 2008 Jul 1;319(1):146-59. doi: 10.1016/j.ydbio.2008.02.045. Epub 2008 Mar 6.

Abstract

We have isolated and identified the vasa homologue macvasa, expressed in testes, ovaries, eggs and somatic stem cells of the flatworm Macrostomum lignano. Molecular tools such as in situ hybridization and RNA interference were developed for M. lignano to study gene expression and function. Macvasa expression was followed during postembryonic development, regeneration and in starvation experiments. We were able to follow gonad formation in juveniles and the reformation of gonads from stem cells after amputation by in situ hybridization and a specific Macvasa antibody. Expression of macvasa in the germ cells was highly affected by feeding conditions and correlated with the decrease and regrowth of the gonads. RNA interference showed specific down-regulation of macvasa mRNA and protein. The absence of Macvasa did not influence gonad formation and stem cell proliferation. Our results corroborate the exclusive nature of the flatworm stem cell system but challenge the concept of a solely postembryonic specification of the germ line in Platyhelminthes. We address the transition of somatic stem cells to germ cells and speculate on Macrostomum as a system to unravel the mechanisms of preformation or epigenesis in the evolution of germ line specification from somatic stem cells.

摘要

我们已经分离并鉴定出了瓦萨同源物macvasa,它在扁形动物利氏大口涡虫的睾丸、卵巢、卵子和体细胞干细胞中表达。我们为利氏大口涡虫开发了诸如原位杂交和RNA干扰等分子工具,以研究基因表达和功能。在胚胎后发育、再生过程以及饥饿实验中,我们追踪了macvasa的表达情况。通过原位杂交和一种特异性的Macvasa抗体,我们能够追踪幼体性腺的形成以及截肢后性腺从干细胞的重新形成。macvasa在生殖细胞中的表达受到进食条件的高度影响,并与性腺的减少和再生相关。RNA干扰显示出macvasa mRNA和蛋白质的特异性下调。Macvasa的缺失并不影响性腺的形成和干细胞增殖。我们的结果证实了扁形动物干细胞系统的独特性质,但对扁形动物中生殖系仅在胚胎后确定的概念提出了挑战。我们探讨了体细胞干细胞向生殖细胞的转变,并推测大口涡虫作为一个系统,可用于揭示在从体细胞干细胞进化出生殖系确定过程中预成或后生的机制。

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