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首页> 外文期刊>PLoS Biology >Lineage Analysis of Drosophila Lateral Antennal Lobe Neurons Reveals Notch-Dependent Binary Temporal Fate Decisions
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Lineage Analysis of Drosophila Lateral Antennal Lobe Neurons Reveals Notch-Dependent Binary Temporal Fate Decisions

机译:果蝇侧后叶神经元的血统分析揭示了缺口依赖的二进制时间命运决定。

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Binary cell fate decisions allow the production of distinct sister neurons from an intermediate precursor. Neurons are further diversified based on the birth order of intermediate precursors. Here we examined the interplay between binary cell fate and birth-order-dependent temporal fate in the Drosophila lateral antennal lobe (lAL) neuronal lineage. Single-cell mapping of the lAL lineage by twin-spot mosaic analysis with repressible cell markers (ts-MARCM) revealed that projection neurons (PNs) and local interneurons (LNs) are made in pairs through binary fate decisions. Forty-five types of PNs innervating distinct brain regions arise in a stereotyped sequence; however, the PNs with similar morphologies are not necessarily born in a contiguous window. The LNs are morphologically less diverse than the PNs, and the sequential morphogenetic changes in the two pairs occur independently. Sanpodo-dependent Notch activity promotes and patterns the LN fates. By contrast, Notch diversifies PN temporal fates in a Sanpodo-dispensable manner. These pleiotropic Notch actions underlie the differential temporal fate specification of twin neurons produced by common precursors within a lineage, possibly by modulating postmitotic neurons' responses to Notch-independent transcriptional cascades.
机译:二元细胞命运决定允许从中间前体产生不同的姐妹神经元。根据中间前体的出生顺序,神经元进一步多样化。在这里,我们检查了果蝇外侧触角叶(lAL)神经元谱系中的二元细胞命运和依赖于出生顺序的暂时命运之间的相互作用。通过具有可抑制细胞标记物(ts-MARCM)的双点镶嵌分析对lAL谱系进行单细胞作图,揭示了投射神经元(PNs)和局部中间神经元(LNs)通过二元命运决定成对形成。支配不同大脑区域的四十五种PN以定型顺序出现。但是,具有相似形态的PN不一定会出生在连续的窗口中。 LNs在形态上不如PNs多样化,并且两对中的顺序形态发生变化独立发生。依赖Sanpodo的Notch活性促进LN命运并为LN命运提供模式。相比之下,Notch以Sanpodo可分配的方式使PN时间命运多样化。这些多效的Notch动作可能是通过调节有丝分裂后神经元对Notch无关的转录级联反应的,是由沿袭中的常见前体产生的双神经元的时空差异。

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