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通过RNA干扰敲低spalt功能会导致卤虫(Artemia franciscana)中Hox基因的去抑制和同源异型转化。

Knockdown of spalt function by RNAi causes de-repression of Hox genes and homeotic transformations in the crustacean Artemia franciscana.

作者信息

Copf Tijana, Rabet Nicolas, Averof Michalis

机构信息

Institute of Molecular Biology and Biotechnology, 711 10 Iraklio Crete, Greece.

出版信息

Dev Biol. 2006 Oct 1;298(1):87-94. doi: 10.1016/j.ydbio.2006.07.024. Epub 2006 Jul 28.

Abstract

Hox genes play a central role in the specification of distinct segmental identities in the body of arthropods. The specificity of Hox genes depends on their restricted expression domains, their interaction with specific cofactors and selectivity for particular target genes. spalt genes are associated with the function of Hox genes in diverse species, but the nature of this association varies: in some cases, spalt collaborates with Hox genes to specify segmental identities, in others, it regulates Hox gene expression or acts as their target. Here we study the role of spalt in the branchiopod crustacean Artemia franciscana. We find that Artemia spalt is expressed in the pre-segmental 'growth zone' and in stripes in each of the trunk (thoracic, genital and post-genital) segments that emerge from this zone. Using RNA interference (RNAi), we show that knocking down the expression of spalt has pleiotropic effects, which include thoracic to genital (T-->G), genital to thoracic (G-->T) and post-genital to thoracic (PG-->T) homeotic transformations. These transformations are associated with a stochastic de-repression of Hox genes in the corresponding segments of RNAi-treated animals (AbdB for T-->G and Ubx/AbdA for G-->T and PG-->T transformations). We discuss a possible role of spalt in the maintenance of Hox gene repression in Artemia and in other animals.

摘要

Hox基因在节肢动物身体不同节段特征的特化过程中发挥着核心作用。Hox基因的特异性取决于其受限的表达结构域、与特定辅因子的相互作用以及对特定靶基因的选择性。spalt基因在不同物种中与Hox基因的功能相关,但这种关联的性质各不相同:在某些情况下,spalt与Hox基因协作来特化节段特征;在其他情况下,它调节Hox基因的表达或作为其靶标。在此,我们研究了spalt在鳃足纲甲壳动物卤虫中的作用。我们发现卤虫spalt在前节段的“生长区”以及从该区域出现的每个躯干(胸、生殖和生殖后)节段的条带中表达。利用RNA干扰(RNAi)技术,我们表明敲低spalt的表达具有多效性作用,其中包括胸到生殖(T→G)、生殖到胸(G→T)以及生殖后到胸(PG→T)的同源异型转变。这些转变与RNAi处理动物相应节段中Hox基因的随机去抑制相关(T→G转变中为AbdB,G→T和PG→T转变中为Ubx/AbdA)。我们讨论了spalt在卤虫及其他动物中维持Hox基因抑制的可能作用。

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