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无翅在三化螟腿部远侧和腹侧模式形成中的可分功能。

Separable functions of wingless in distal and ventral patterning of the Tribolium leg.

机构信息

Johann-Friedrich-Blumenbach-Institut für Zoologie und Anthropologie, Georg-August-Universität Göttingen, Abteilung Entwicklungsbiologie, GZMB Ernst-Caspari-Haus, Justus-von-Liebig-Weg 11, 37077, Göttingen, Germany.

出版信息

Dev Genes Evol. 2009 Oct;219(9-10):469-79. doi: 10.1007/s00427-009-0310-z. Epub 2009 Dec 19.

Abstract

The gene wingless (wg) in Drosophila is an important factor in leg development. During embryonic development wg is involved in the allocation of the limb primordia. During imaginal disk development wg is involved in distal development and it has a separate role in ventral development. The expression pattern of wg is highly conserved in all arthropods (comprising data from insects, myriapods, crustaceans, and chelicerates), suggesting that its function in leg development is also conserved. However, recent work in other insects (e.g. the milkweed bug Oncopeltus fasciatus) argued against a role of wg in leg development. We have studied the role of wg in leg development of the flour beetle Tribolium castaneum. Using stage-specific staggered embryonic RNAi in wild-type and transgenic EGFP expressing enhancer trap lines we are able to demonstrate separable functions of Tribolium wg in distal and in ventral leg development. The distal role affects all podomeres distal to the coxa, whereas the ventral role is restricted to cells along the ventral midline of the legs. In addition, severe leg defects after injection into early embryonic stages are evidence that wg is also involved in proximal development and limb allocation in Tribolium. Our data suggest that the roles of wg in leg development are highly conserved in the holometabolous insects. Further studies will reveal the degree of conservation in other arthropod groups.

摘要

果蝇中的基因 wingless (wg) 是腿部发育的重要因素。在胚胎发育过程中,wg 参与肢体原基的分配。在成虫盘发育过程中,wg 参与远端发育,并且在腹侧发育中具有单独的作用。wg 的表达模式在所有节肢动物中高度保守(包含来自昆虫、多足类、甲壳类和螯肢动物的数据),表明其在腿部发育中的功能也保守。然而,最近在其他昆虫(例如乳草盲蝽 Oncopeltus fasciatus)中的研究工作表明 wg 在腿部发育中不起作用。我们研究了 wg 在粉斑螟 Tribolium castaneum 腿部发育中的作用。使用针对特定阶段的、在野生型和表达 EGFP 的转基因增强子陷阱系中的胚胎 RNAi ,我们能够证明 Tribolium wg 在远端和腹侧腿部发育中具有可分离的功能。远端作用影响到 coxa 远端的所有足段,而腹侧作用仅限于腿部腹侧中线的细胞。此外,在早期胚胎阶段注射后出现严重的腿部缺陷表明 wg 也参与 Tribolium 的近端发育和肢体分配。我们的数据表明,wg 在腿部发育中的作用在完全变态昆虫中高度保守。进一步的研究将揭示 wg 在其他节肢动物群中的保守程度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86c2/2811246/cd631084dab2/427_2009_310_Fig1_HTML.jpg

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