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Delta/Notch 信号在蟋蟀 Gryllus bimaculatus 体节和附肢形成中的祖先功能。

Ancestral functions of Delta/Notch signaling in the formation of body and leg segments in the cricket Gryllus bimaculatus.

机构信息

Department of Life Systems, Institute of Technology and Science, The University of Tokushima, 2-1 Minami-Jyosanjima-cho, Tokushima City, 770-8506 Japan.

出版信息

Development. 2011 Sep;138(17):3823-33. doi: 10.1242/dev.060681.

Abstract

Delta/Notch signaling controls a wide spectrum of developmental processes, including body and leg segmentation in arthropods. The various functions of Delta/Notch signaling vary among species. For instance, in Cupiennius spiders, Delta/Notch signaling is essential for body and leg segmentation, whereas in Drosophila fruit flies it is involved in leg segmentation but not body segmentation. Therefore, to gain further insight into the functional evolution of Delta/Notch signaling in arthropod body and leg segmentation, we analyzed the function of the Delta (Gb'Delta) and Notch (Gb'Notch) genes in the hemimetabolous, intermediate-germ cricket Gryllus bimaculatus. We found that Gb'Delta and Gb'Notch were expressed in developing legs, and that RNAi silencing of Gb'Notch resulted in a marked reduction in leg length with a loss of joints. Our results suggest that the role of Notch signaling in leg segmentation is conserved in hemimetabolous insects. Furthermore, we found that Gb'Delta was expressed transiently in the posterior growth zone of the germband and in segmental stripes earlier than the appearance of wingless segmental stripes, whereas Gb'Notch was uniformly expressed in early germbands. RNAi knockdown of Gb'Delta or Gb'Notch expression resulted in malformation in body segments and a loss of posterior segments, the latter probably due to a defect in posterior growth. Therefore, in the cricket, Delta/Notch signaling might be required for proper morphogenesis of body segments and posterior elongation, but not for specification of segment boundaries.

摘要

Delta/Notch 信号通路控制着广泛的发育过程,包括节肢动物的身体和附肢分段。Delta/Notch 信号通路在不同物种中的各种功能有所不同。例如,在狼蛛中,Delta/Notch 信号通路对于身体和附肢分段是必需的,而在果蝇中,它参与附肢分段但不参与身体分段。因此,为了深入了解 Delta/Notch 信号通路在节肢动物身体和附肢分段中的功能进化,我们分析了半变态、中胚层蟋蟀 Gryllus bimaculatus 中的 Delta(Gb'Delta)和 Notch(Gb'Notch)基因的功能。我们发现 Gb'Delta 和 Gb'Notch 在发育中的附肢中表达,并且 Gb'Notch 的 RNAi 沉默导致附肢长度显著减少,关节缺失。我们的结果表明, Notch 信号通路在半变态昆虫中的附肢分段中的作用是保守的。此外,我们发现 Gb'Delta 在生殖带的后生长区和节段条纹中比无翅节段条纹更早地短暂表达,而 Gb'Notch 在早期生殖带中均匀表达。Gb'Delta 或 Gb'Notch 表达的 RNAi 敲低导致身体节段畸形和后段缺失,后者可能是由于后生长缺陷所致。因此,在蟋蟀中,Delta/Notch 信号通路可能需要身体节段和后段伸长的正常形态发生,但不需要节段边界的指定。

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