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首页> 外文期刊>Development >Expression and function of the empty spiracles gene in olfactory sense organ development of Drosophila melanogaster.
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Expression and function of the empty spiracles gene in olfactory sense organ development of Drosophila melanogaster.

机译:空气孔基因在果蝇嗅觉器官发育中的表达和功能。

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摘要

In Drosophila, the cephalic gap gene empty spiracles plays key roles in embryonic patterning of the peripheral and central nervous system. During postembryonic development, it is involved in the development of central olfactory circuitry in the antennal lobe of the adult. However, its possible role in the postembryonic development of peripheral olfactory sense organs has not been investigated. Here, we show that empty spiracles acts in a subset of precursors that generate the olfactory sense organs of the adult antenna. All empty spiracles-expressing precursor cells co-express the proneural gene amos and the early patterning gene lozenge. Moreover, the expression of empty spiracles in these precursor cells is dependent on both amos and lozenge. Functional analysis reveals two distinct roles of empty spiracles in the development of olfactory sense organs. Genetic interaction studies in a lozenge-sensitized background uncover a requirement of empty spiracles in the formation of trichoid and basiconic olfactory sensilla. MARCM-based clonal mutant analysis reveals an additional role during axonal targeting of olfactory sensory neurons to glomeruli within the antennal lobe. Our findings on empty spiracles action in olfactory sense organ development complement previous studies that demonstrate its requirement in olfactory interneurons and, taken together with studies on the murine homologs of empty spiracles, suggest that conserved molecular genetic programs might be responsible for the formation of both peripheral and central olfactory circuitry in insects and mammals.
机译:在果蝇中,头间隙基因空气泡在外周和中枢神经系统的胚胎模式中起关键作用。在胚胎后发育过程中,它参与了成年人触角叶中央嗅觉回路的发育。但是,尚未研究其在外周嗅觉器官的胚后发育中的可能作用。在这里,我们显示空气孔在生成成人触角的嗅觉器官的前体子集中起作用。所有表达空泡的前体细胞共表达前神经基因amos和早期模式基因锭剂。此外,在这些前体细胞中空气孔的表达依赖于amos和锭剂。功能分析揭示了空气瓶在嗅觉器官发育中的两种不同作用。在锭剂敏感的背景下的遗传相互作用研究揭示了毛状脉络膜和碱性的嗅觉感官形成中需要空的气喘。基于MARCM的克隆突变体分析揭示了嗅觉感觉神经元轴突靶向触角内小球的过程中的其他作用。我们在嗅觉器官发育中空气孔作用的发现补充了先前的研究,证明了它在嗅觉中神经元中的需求,并且与空气孔的鼠同源物的研究一起,表明保守的分子遗传程序可能负责两个外周血的形成。和昆虫和哺乳动物的中央嗅觉回路。

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