Chanut F, Heberlein U
Department of Neurology, University of California San Francisco, 94110, USA.
Development. 1997 Jan;124(2):559-67. doi: 10.1242/dev.124.2.559.
Morphogenesis in the Drosophila retina initiates at the posterior margin of the eye imaginal disc by an unknown mechanism. Upon initiation, a wave of differentiation, its forward edge marked by the morphogenetic furrow (MF), proceeds anteriorly across the disc. Progression of the MF is driven by hedgehog (hh), expressed by differentiating photoreceptor cells. The TGF-beta homolog encoded by decapentaplegic (dpp) is expressed at the disc's posterior margin prior to initiation and in the furrow, under the control of hh, during MF progression. While dpp has been implicated in eye disc growth and morphogenesis, its precise role in retinal differentiation has not been determined. To address the role of dpp in initiation and progression of retinal differentiation we analyzed the consequences of reduced and increased dpp function during eye development. We find that dpp is not only required for normal MF initiation, but is sufficient to induce ectopic initiation of differentiation. Inappropriate initiation is normally inhibited by wingless (wg). Loss of dpp function is accompanied by expansion of wg expression, while increased dpp function leads to loss of wg transcription. In addition, dpp is required to maintain, and sufficient to induce, its own expression along the disc's margins. We postulate that dpp autoregulation and dpp-mediated inhibition of wg expression are required for the coordinated regulation of furrow initiation and progression. Finally, we show that in the later stages of retinal differentiation, reduction of dpp function leads to an arrest in MF progression.
果蝇视网膜的形态发生通过未知机制在眼成虫盘的后缘起始。起始后,分化波以形态发生沟(MF)为前缘向前穿过成虫盘。MF的推进由分化的光感受器细胞表达的刺猬因子(hh)驱动。由脱壳蛋白(dpp)编码的TGF-β同源物在起始前在成虫盘后缘表达,并在MF推进过程中,在hh的控制下在沟中表达。虽然dpp与眼成虫盘的生长和形态发生有关,但其在视网膜分化中的精确作用尚未确定。为了研究dpp在视网膜分化起始和推进中的作用,我们分析了眼发育过程中dpp功能降低和增加的后果。我们发现dpp不仅是正常MF起始所必需的,而且足以诱导异位分化起始。正常情况下,不适当的起始受到无翅基因(wg)的抑制。dpp功能丧失伴随着wg表达的扩展,而dpp功能增加则导致wg转录丧失。此外,dpp对于沿成虫盘边缘维持其自身表达是必需的,并且足以诱导其自身表达。我们推测,dpp的自我调节和dpp介导的对wg表达的抑制是沟起始和推进协调调节所必需的。最后,我们表明,在视网膜分化的后期,dpp功能的降低导致MF推进停滞。