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Expression and function of scalloped during Drosophila development

机译:果蝇发育期间扇贝的表达和功能

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Background: The scalloped (sd) and vestigial (vg) genes function together in Drosophila wing development. Little is known about sd protein (SD) expression during development, or whether sd and vg interact in other developing tissues. To begin to address these questions, we generated an anti-SD antibody. Results: During embryogenesis, SD is expressed in both central and peripheral nervous systems, and the musculature. SD is also expressed in developing flight appendages. Despite SD expression herein, the peripheral nervous system, musculature, and dorsal limb primordia appeared generally normal in the absence of sd function. SD is also expressed in subsets of ventral nerve cord cells, including neuroblast 1-2 descendants and ventral unpaired median motor neurons (mVUMs). While sd function is not required to specify these neurons, it is necessary for the correct innervation of somatic muscles by the mVUMs. We also show that SD and vg protein (VG) are co-expressed in overlapping and distinctive subsets of cells in embryonic and larval tissues. Conclusions: We describe the full breadth of SD expression during Drosophila embryogenesis, and identify a requirement for sd function in a subset of motor neurons. This work provides the necessary foundation for functional studies regarding the roles of sd during Drosophila development. Developmental Dynamics 242:874-885, 2013.
机译:背景:扇贝(sd)和残留(vg)基因在果蝇翅膀发育中共同起作用。关于发育过程中sd蛋白(SD)的表达,或者sd和vg是否在其他发育组织中相互作用,人们知之甚少。为了解决这些问题,我们产生了抗SD抗体。结果:在胚胎发生过程中,SD在中枢和周围神经系统以及肌肉组织中表达。 SD在飞行附件中也有表达。尽管在此表达了SD,但在没有sd功能的情况下,周围神经系统,肌肉组织和背肢原基通常看起来是正常的。 SD还表达于腹神经索细胞的子集中,包括成神经细胞1-2后代和腹不成对的中位运动神经元(mVUM)。尽管不需要sd功能来指定这些神经元,但mVUM才能正确地支配体肌。我们还显示,SD和vg蛋白(VG)在胚胎和幼虫组织中重叠且独特的细胞亚群中共表达。结论:我们描述了果蝇胚胎发生过程中SD表达的全部宽度,并确定了运动神经元子集对sd功能的需求。这项工作为功能研究有关果蝇发育过程中sd的作用提供了必要的基础。发展动态242:874-885,2013。

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