Mishra Abhishek Kumar, Bargmann Bastiaan O R, Tsachaki Maria, Fritsch Cornelia, Sprecher Simon G
Institute of Cell and Developmental Biology, Department of Biology, University of Fribourg, Chemin du Musée 10, 1700 Fribourg, Switzerland.
Cibus US LLC, 6455 Nancy Ridge Drive, San Diego, CA 92121, USA.
Dev Biol. 2016 Feb 15;410(2):164-177. doi: 10.1016/j.ydbio.2015.12.026. Epub 2016 Jan 6.
Sensory perception of light is mediated by specialized Photoreceptor neurons (PRs) in the eye. During development all PRs are genetically determined to express a specific Rhodopsin (Rh) gene and genes mediating a functional phototransduction pathway. While the genetic and molecular mechanisms of PR development is well described in the adult compound eye, it remains unclear how the expression of Rhodopsins and the phototransduction cascade is regulated in other visual organs in Drosophila, such as the larval eye and adult ocelli. Using transcriptome analysis of larval PR-subtypes and ocellar PRs we identify and study new regulators required during PR differentiation or necessary for the expression of specific signaling molecules of the functional phototransduction pathway. We found that the transcription factor Krüppel (Kr) is enriched in the larval eye and controls PR differentiation by promoting Rh5 and Rh6 expression. We also identified Camta, Lola, Dve and Hazy as key genes acting during ocellar PR differentiation. Further we show that these transcriptional regulators control gene expression of the phototransduction cascade in both larval eye and adult ocelli. Our results show that PR cell type-specific transcriptome profiling is a powerful tool to identify key transcriptional regulators involved during several aspects of PR development and differentiation. Our findings greatly contribute to the understanding of how combinatorial action of key transcriptional regulators control PR development and the regulation of a functional phototransduction pathway in both larval eye and adult ocelli.
光的感官感知由眼睛中的特殊光感受器神经元(PRs)介导。在发育过程中,所有PRs在基因上都被决定表达特定的视紫红质(Rh)基因以及介导功能性光转导途径的基因。虽然PR发育的遗传和分子机制在成年复眼中已有详细描述,但在果蝇的其他视觉器官中,如幼虫眼和成虫单眼,视紫红质的表达和光转导级联反应是如何调控的仍不清楚。通过对幼虫PR亚型和单眼PRs进行转录组分析,我们鉴定并研究了PR分化过程中所需的新调控因子,或功能性光转导途径中特定信号分子表达所必需的调控因子。我们发现转录因子Krüppel(Kr)在幼虫眼中富集,并通过促进Rh5和Rh6的表达来控制PR分化。我们还确定Camta、Lola、Dve和Hazy是在单眼PR分化过程中起作用的关键基因。此外,我们表明这些转录调控因子控制幼虫眼和成虫单眼中光转导级联反应的基因表达。我们的结果表明,PR细胞类型特异性转录组分析是一种强大的工具,可用于识别参与PR发育和分化多个方面的关键转录调控因子。我们 的发现极大地有助于理解关键转录调控因子的组合作用如何控制PR发育以及幼虫眼和成虫单眼中功能性光转导途径的调控。