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首页> 外文期刊>Neural development >Ultrabithorax confers spatial identity in a context-specific manner in the Drosophila postembryonic ventral nervous system
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Ultrabithorax confers spatial identity in a context-specific manner in the Drosophila postembryonic ventral nervous system

机译:果蝇在胚后腹侧神经系统中以特定环境的方式赋予空间同一性

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Background In holometabolous insects such as Drosophila melanogaster, neuroblasts produce an initial population of diverse neurons during embryogenesis and a much larger set of adult-specific neurons during larval life. In the ventral CNS, many of these secondary neuronal lineages differ significantly from one body segment to another, suggesting a role for anteroposterior patterning genes. Results Here we systematically characterize the expression pattern and function of the Hox gene Ultrabithorax (Ubx) in all 25 postembryonic lineages. We find that Ubx is expressed in a segment-, lineage-, and hemilineage-specific manner in the thoracic and anterior abdominal segments. When Ubx is removed from neuroblasts via mitotic recombination, neurons in these segments exhibit the morphologies and survival patterns of their anterior thoracic counterparts. Conversely, when Ubx is ectopically expressed in anterior thoracic segments, neurons exhibit complementary posterior transformation phenotypes. Conclusion Our findings demonstrate that Ubx plays a critical role in conferring segment-appropriate morphology and survival on individual neurons in the adult-specific ventral CNS. Moreover, while always conferring spatial identity in some sense, Ubx has been co-opted during evolution for distinct and even opposite functions in different neuronal hemilineages.
机译:背景技术在诸如果蝇的果蝇中,成神经细胞在胚胎发生过程中会产生初始的各种神经元种群,而在幼虫的生命过程中则会产生更多的成年特异性神经元。在腹侧中枢神经系统中,许多这些继发性神经元谱系在一个身体部位与另一个身体部位之间存在显着差异,表明其在前后模式基因中的作用。结果在这里,我们系统地表征了所有25个胚胎后谱系中Hox基因Ultrabithorax(Ubx)的表达模式和功能。我们发现Ubx在胸段和腹前段中以段,谱系和半谱系特异性方式表达。当通过有丝分裂重组将Ubx从成神经细胞中移除时,这些节段中的神经元表现出其前胸对应物的形态和存活模式。相反,当Ubx在前胸段异位表达时,神经元表现出互补的后转化表型。结论我们的发现表明,Ubx在赋予成年特异性腹侧中枢神经系统中各个神经元适当的节段形态和存活中起关键作用。而且,尽管总是在某种意义上赋予空间同一性,但在进化过程中人们选择了Ubx来实现不同神经元半衰期中独特甚至相反的功能。

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