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Data from: Brain-wide cellular resolution imaging of Cre transgenic zebrafish lines for functional circuit-mapping
负责人:
关键词:
y495;y494;y571;y493;y570;y371;y492;y490;y459;y458;y457;y379;y456;y378;y574;y528;y526;y484;y483;y481;y480;y569;y524;y568;y523;y445;y489;y488;y521;y487;y520;y486;y485;y519;Cre;y559;y550;Danio rerio;y558;y461-hoxb1a;y557;y479;y556;y478;y555;y454-eltC;y554;y553;y552;y551;y549;y548;y455-dr16;y385;y384;y383;y382;y381;y380;y547;y546;y545;y544;y543;y465;y542;y541;y466-hoxa2;Zebrafish
DOI:
doi:10.5061/dryad.tk467n8
摘要:
Decoding the functional connectivity of the nervous system is facilitated by transgenic methods that express a genetically encoded reporter or effector in specific neurons; however, most transgenic lines show broad spatiotemporal and cell-type expression. Increased specificity can be achieved using intersectional genetic methods which restrict reporter expression to cells that co-express multiple drivers, such as Gal4 and Cre. To facilitate intersectional targeting in zebrafish, we have generated more than 50 new Cre lines, and co-registered brain expression images with the Zebrafish Brain Browser, a cellular resolution atlas of 264 transgenic lines. Lines labeling neurons of interest can be identified using a web-browser to perform a 3D spatial search (zbbrowser.com). This resource facilitates the design of intersectional genetic experiments and will advance a wide range of precision circuit-mapping studies.

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