锌指转录因子Sp6-9在蜘蛛中的表达及功能研究。

IF 0.8 3区 生物学 Q4 CELL BIOLOGY
Development Genes and Evolution Pub Date : 2017-11-01 Epub Date: 2017-11-07 DOI:10.1007/s00427-017-0595-2
Tatiana Königsmann, Natascha Turetzek, Matthias Pechmann, Nikola-Michael Prpic
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引用次数: 0

摘要

Sp6-9组锌指转录因子在所有后生动物中都是进化保守的,在肢体形成和心脏发育等方面具有重要功能。sp6 -9相关基因的功能已经在许多脊椎动物和无脊椎动物中得到了研究,但迄今为止还缺乏螯合动物(蜘蛛及其盟友)的数据。从普通家蛛蛛蛛(Parasteatoda tepidariorum)和巢蛛Pholcus phalangioides中分离出Sp6-9同源基因。我们发现这些蜘蛛物种的Sp6-9基因在发育中的附属物中表达,从而表明在肢体形成中起保守作用。事实上,带Sp6-9的RNAi在P. tepidariorum中不仅会导致严重的肢体缺陷,而且在更严重的受影响动物中也会导致身体部分的缺失和头部缺陷。结合早期胚胎中一个新的表达域,这些数据表明Sp6-9具有双重作用。其他节肢动物在头和身体节段形成中的早期作用尚不清楚,但在肢体形成中的作用在进化上是高度保守的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Expression and function of the zinc finger transcription factor Sp6-9 in the spider Parasteatoda tepidariorum.

Zinc finger transcription factors of the Sp6-9 group are evolutionarily conserved in all metazoans and have important functions in, e.g., limb formation and heart development. The function of Sp6-9-related genes has been studied in a number of vertebrates and invertebrates, but data from chelicerates (spiders and allies) was lacking so far. We have isolated the ortholog of Sp6-9 from the common house spider Parasteatoda tepidariorum and the cellar spider Pholcus phalangioides. We show that the Sp6-9 gene in these spider species is expressed in the developing appendages thus suggesting a conserved role in limb formation. Indeed, RNAi with Sp6-9 in P. tepidariorum leads not only to strong limb defects, but also to the loss of body segments and head defects in more strongly affected animals. Together with a new expression domain in the early embryo, these data suggest that Sp6-9 has a dual role P. tepidariorum. The early role in head and body segment formation is not known from other arthropods, but the role in limb formation is evolutionarily highly conserved.

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来源期刊
Development Genes and Evolution
Development Genes and Evolution 生物-发育生物学
CiteScore
4.30
自引率
0.00%
发文量
13
审稿时长
>12 weeks
期刊介绍: Development Genes and Evolution publishes high-quality reports on all aspects of development biology and evolutionary biology. The journal reports on experimental and bioinformatics work at the systemic, cellular and molecular levels in the field of animal and plant systems, covering key aspects of the following topics: Embryological and genetic analysis of model and non-model organisms Genes and pattern formation in invertebrates, vertebrates and plants Axial patterning, embryonic induction and fate maps Cellular mechanisms of morphogenesis and organogenesis Stem cells and regeneration Functional genomics of developmental processes Developmental diversity and evolution Evolution of developmentally relevant genes Phylogeny of animals and plants Microevolution Paleontology.
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