Pielage Jan, Steffes Georg, Lau Dan C, Parente Beth A, Crews Stephen T, Strauss Roland, Klämbt Christian
Institut für Neurobiologie, Universität Münster, Badestrasse 9, D-48149 Münster, Germany.
Dev Biol. 2002 Sep 15;249(2):283-99. doi: 10.1006/dbio.2002.0770.
In Drosophila, the development of the midline cells of the embryonic ventral nerve cord depends on the function of the bHLH-PAS transcription factor Single-minded (Sim). The expression domain of sim, however, is also found anterior and posterior to the developing ventral cord throughout the germ band. Indeed, mutations in sim were identified based on their characteristic cuticle phenotype. Eight abdominal segments (A1-A8) can be easily seen in the larval cuticle, while three more can be identified during embryogenesis. Cells located in A8-A10 give rise to the formation of the genital imaginal discs, and a highly modified A11 segment gives rise to the anal pads that flank the anus. sim is expressed in all these segments and is required for the formation of both the anal pads and the genital imaginal discs. A new temperature-sensitive sim allele allowed an assessment of possible postembryonic function(s) of sim. Reduction of sim function below a 50% threshold leads to sterile flies with marked behavioral deficits. Most mutant sim flies were only able to walk in circles. Further analyses indicated that this phenotype is likely due to defects in the brain central complex. This brain region, which has previously been implicated in the control of walking behavior, expresses high levels of nuclear Sim protein in three clusters of neurons in each central brain hemisphere. Additional Sim localization in the medullary and laminar neurons of the optic lobes may correlate with the presence of ectopic axon bundles observed in the optic lobes of sim mutant flies.
在果蝇中,胚胎腹侧神经索中线细胞的发育依赖于bHLH-PAS转录因子单 minded(Sim)的功能。然而,sim的表达域在整个胚带中发育中的腹侧索的前后也有发现。实际上,sim的突变是根据其特征性的表皮表型鉴定出来的。在幼虫表皮中可以很容易地看到八个腹节(A1-A8),而在胚胎发育过程中还可以识别出另外三个腹节。位于A8-A10的细胞会形成生殖成虫盘,高度特化的A11节会形成肛门两侧的肛垫。sim在所有这些节段中都有表达,并且是肛垫和生殖成虫盘形成所必需的。一个新的温度敏感型sim等位基因使得对sim可能的胚后功能进行评估成为可能。将sim功能降低到50%阈值以下会导致不育的果蝇出现明显的行为缺陷。大多数突变的sim果蝇只能转圈行走。进一步的分析表明,这种表型可能是由于脑中央复合体的缺陷所致。这个先前被认为与行走行为控制有关的脑区,在每个脑半球的三簇神经元中表达高水平的核Sim蛋白。Sim在视叶的髓质和层状神经元中的额外定位可能与在sim突变果蝇视叶中观察到的异位轴突束的存在有关。