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The Schmidtea mediterranea database as a molecular resource for studying platyhelminthes, stem cells and regeneration.

机译:Schmidtea Mediterraterranea数据库是研究侧柏,干细胞和再生的分子资源。

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Platyhelminthes are excellent models for the study of stem cell biology, regeneration and the regulation of scale and proportion. In addition, parasitic forms infect millions of people worldwide. Therefore, it is puzzling that they remain relatively unexplored at the molecular level. We present the characterization of approximately 3000 non-redundant cDNAs from a clonal line of the planarian Schmidtea mediterranea. The obtained cDNA sequences, homology comparisons and high-throughput whole-mount in situ hybridization data form part of the S. mediterranea database (SmedDb; http://planaria.neuro.utah.edu). Sixty-nine percent of the cDNAs analyzed share similarities with sequences deposited in GenBank and dbEST. The remaining gene transcripts failed to match sequences in other organisms, even though a large number of these ( approximately 80%) contained putative open reading frames. Taken together, the molecular resources presented in this study, along with the ability of abrogating gene expression in planarians using RNA interference technology, pave the way for a systematic study of the remarkable biological properties displayed by Platyhelminthes.
机译:侧柏是研究干细胞生物学,再生以及规模和比例调节的出色模型。此外,寄生虫形式还感染了全球数百万人。因此,令人迷惑的是它们在分子水平上仍然相对未被开发。我们提出了从3000虫Schmidtea mediterranea的克隆系中大约3000非冗余cDNA的表征。获得的cDNA序列,同源性比较和高通量全量原位杂交数据构成了地中海假单胞菌数据库(SmedDb; http://planaria.neuro.utah.edu)的一部分。分析的百分之六十九的cDNA与GenBank和dbEST中保存的序列具有相似性。其余的基因转录物未能与其他生物中的序列匹配,即使其中许多(约80%)包含推定的开放阅读框。综上所述,本研究中提供的分子资源,以及使用RNA干扰技术消除平面虫基因表达的能力,为系统研究侧柏展示的非凡生物学特性铺平了道路。

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