The functional evolution of collembolan Ubx on the regulation of abdominal appendage formation.

IF 0.8 3区 生物学 Q4 CELL BIOLOGY
Development Genes and Evolution Pub Date : 2024-12-01 Epub Date: 2024-07-09 DOI:10.1007/s00427-024-00718-0
Yan Liang, Yun-Xia Luan
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引用次数: 0

Abstract

Folsomia candida is a tiny soil-living arthropod belonging to the Collembola, which is an outgroup to Insecta. It resembles insects as having a pair of antennae and three pairs of thorax legs, while it also possesses three abdominal appendages: a ventral tube located in the first abdominal segment (A1), a retinaculum in A3, and a furca in A4. Collembolan Ubx and AbdA specify abdominal appendages, but they are unable to repress appendage marker gene Dll. The genetic basis of collembolan appendage formation and the mechanisms by which Ubx and AbdA regulate Dll transcription and appendage development remains unknown. In this study, we analysed the developmental transcriptomes of F. candida and identified candidate appendage formation genes, including Ubx (FcUbx). The expression data revealed the dominance of Dll over Ubx during the embryonic 3.5 and 4.5 days, suggesting that Ubx is deficient in suppressing Dll at early appendage formation stages. Furthermore, via electrophoretic mobility shift assays and dual luciferase assays, we found that the binding and repression capacity of FcUbx on Drosophila Dll resembles those of the longest isoform of Drosophila Ubx (DmUbx_Ib), while the regulatory mechanism of the C-terminus of FcUbx on Dll repression is similar to that of the crustacean Artemia franciscana Ubx (AfUbx), demonstrating that the function of collembolan Ubx is intermediate between that of Insecta and Crustacea. In summary, our study provides novel insights into collembolan appendage formation and sheds light on the functional evolution of Ubx. Additionally, we propose a model that collembolan Ubx regulates abdominal segments in a context-specific manner.

Abstract Image

脐带虫 Ubx 在调控腹部附属物形成方面的功能演化。
念珠藻是一种生活在土壤中的微小节肢动物,属于鞘翅目,是昆虫纲的外群。它与昆虫相似,有一对触角和三对胸腿,同时还拥有三个腹部附属物:位于第一腹节(A1)的腹管、A3 的retinaculum 和 A4 的 furca。鞘翅目昆虫 Ubx 和 AbdA 指定了腹部附属物,但它们无法抑制附属物标记基因 Dll。鞘翅目附肢形成的遗传基础以及 Ubx 和 AbdA 调节 Dll 转录和附肢发育的机制仍不清楚。在这项研究中,我们分析了念珠藻的发育转录组,并确定了包括 Ubx(FcUbx)在内的候选附肢形成基因。表达数据显示,在胚胎 3.5 天和 4.5 天期间,Dll 比 Ubx 占优势,这表明 Ubx 在早期附肢形成阶段抑制 Dll 的能力不足。此外,通过电泳迁移实验和双荧光素酶实验,我们发现 FcUbx 对果蝇 Dll 的结合和抑制能力与果蝇 Ubx 的最长异构体(DmUbx_Ib)相似、而FcUbx的C端对Dll抑制的调控机制与甲壳类Artemia franciscana Ubx(AfUbx)相似,这表明同翅目Ubx的功能介于昆虫和甲壳类之间。总之,我们的研究为鞘翅目昆虫附肢的形成提供了新的见解,并揭示了 Ubx 的功能进化。此外,我们还提出了一个模型,即同翅目 Ubx 以特定的方式调节腹部节段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Development Genes and Evolution
Development Genes and Evolution 生物-发育生物学
CiteScore
4.30
自引率
0.00%
发文量
13
审稿时长
>12 weeks
期刊介绍: Development Genes and Evolution publishes high-quality reports on all aspects of development biology and evolutionary biology. The journal reports on experimental and bioinformatics work at the systemic, cellular and molecular levels in the field of animal and plant systems, covering key aspects of the following topics: Embryological and genetic analysis of model and non-model organisms Genes and pattern formation in invertebrates, vertebrates and plants Axial patterning, embryonic induction and fate maps Cellular mechanisms of morphogenesis and organogenesis Stem cells and regeneration Functional genomics of developmental processes Developmental diversity and evolution Evolution of developmentally relevant genes Phylogeny of animals and plants Microevolution Paleontology.
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