Cerny Alexander C, Grossmann Daniela, Bucher Gregor, Klingler Martin
Department of Biology, Section Developmental Biology, Friedrich-Alexander-University Erlangen, Staudtstrasse 5, 91058 Erlangen, Germany.
Dev Biol. 2008 Sep 1;321(1):284-94. doi: 10.1016/j.ydbio.2008.05.527. Epub 2008 May 20.
Segment formation in the long germ insect Drosophila is dominated by overlapping gap gene domains in the syncytial blastoderm. In the short germ beetle Tribolium castaneum abdominal segments arise from a cellular growth zone, implying different patterning mechanisms. We describe here the single Tribolium ortholog of the Drosophila genes knirps and knirps-related (called Tc-knirps). Tc-knirps expression is conserved during head patterning and at later stages. However, posterior Tc-knirps expression in the ectoderm is limited to a stripe in A1, instead of a broad abdominal domain covering segment primordia A2-A5 as in Drosophila. Tc-knirps RNAi yields only mild defects in the abdomen, at a position posterior to the abdominal Tc-knirps domain. In addition, Tc-knirps RNAi larvae lack the antennal and mandibular segments. These defects are much more severe than the head defects caused by combined inactivation of Dm-knirps and Dm-knirps-related. Our findings support the notion that the role of gap gene homologs in abdominal segmentation differs fundamentally in long and short germ insects. Moreover, the pivotal role of Tc-knirps in the head suggests an ancestral role for knirps as head patterning gene. Based on this RNAi analysis, Tc-knirps functions neither in the head nor the abdomen as a canonical gap gene.
长胚昆虫果蝇的体节形成在合胞体胚盘阶段由重叠的缺口基因结构域主导。而在短胚甲虫赤拟谷盗中,腹部体节起源于一个细胞生长区,这意味着存在不同的模式形成机制。我们在此描述果蝇基因knirps和knirps相关基因(称为Tc-knirps)在赤拟谷盗中的单一直系同源基因。Tc-knirps的表达在头部模式形成过程及后期阶段是保守的。然而,外胚层中Tc-knirps在后部的表达仅限于A1中的一条带,而不像在果蝇中那样是覆盖A2 - A5体节原基的广泛腹部区域。RNA干扰Tc-knirps仅在腹部Tc-knirps结构域后方的位置产生轻微缺陷。此外,RNA干扰Tc-knirps的幼虫缺少触角节和下颚节。这些缺陷比果蝇中knirps和knirps相关基因联合失活所导致的头部缺陷严重得多。我们的研究结果支持这样一种观点,即缺口基因同源物在长胚和短胚昆虫腹部体节形成中的作用存在根本差异。此外,Tc-knirps在头部的关键作用表明knirps作为头部模式形成基因具有祖先功能。基于这种RNA干扰分析,Tc-knirps在头部和腹部都不发挥典型缺口基因的功能。