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揭示喜洞穴居蜘蛛Tegenaria pagana C. L. Koch, 1840(蜘蛛目:漏斗蛛科)的胚胎发生和眼睛发育情况。

Shedding light on the embryogenesis and eye development of the troglophile cave spider Tegenaria pagana C. L. Koch, 1840 (Araneae: Agelenidae).

作者信息

Propistsova Evgenia A, Gainett Guilherme, Chipman Ariel D, Sharma Prashant P, Gavish-Regev Efrat

机构信息

The Department of Ecology, Evolution and Behavior, The Hebrew University of Jerusalem, Jerusalem, Israel.

The National Natural History Collections, The Hebrew University of Jerusalem, Jerusalem, Israel.

出版信息

Evodevo. 2025 Mar 8;16(1):2. doi: 10.1186/s13227-025-00238-6.

Abstract

BACKGROUND

Relatively little is known about the diversity of embryonic development across lineages of spiders, even though the study of embryonic development is a primary step in evo-devo studies and essential for understanding phenotypic evolution. Practically nothing is known about embryogenesis in cave-dwelling spiders, animals which play an important role in cave ecosystems and may have remarkable adaptations to aphotic habitats such as loss of eyes.

RESULTS

Here, we describe embryogenesis and study the expression patterns of several genes of the Retinal Determination Network (RDN) in the troglophile (species that have pre-adaptations to life in caves, and can complete their life cycle in caves, as well as in epigean habitats) eye-bearing funnel-web spider species Tegenaria pagana C. L. Koch, 1840, using fluorescent staining and confocal microscopy. We discuss the characteristic features of T. pagana embryogenesis and key RDN genes. Although in many respects the embryonic development of different species of entelegyne spiders is similar, we found differences in the rate of development, and the details of the opisthosoma, respiratory system, and brain morphogenesis in comparison with established spider model species. Our data supports the hypothesis of a conserved role of sine oculis gene in the eye formation of arachnids.

CONCLUSIONS

Given the recent discovery of congeneric cave species with different degrees of eye reduction throughout Israel, these data sets provide a foundational point of comparison for studying eye reduction and eye loss events in the spider genus Tegenaria.

摘要

背景

尽管胚胎发育研究是进化发育生物学研究的首要步骤,对于理解表型进化至关重要,但我们对蜘蛛各谱系间胚胎发育的多样性了解相对较少。对于穴居蜘蛛的胚胎发生,我们几乎一无所知,而穴居蜘蛛在洞穴生态系统中起着重要作用,并且可能对无光环境有显著适应性,比如眼睛退化。

结果

在此,我们利用荧光染色和共聚焦显微镜描述了喜洞穴生物(对洞穴生活有预适应能力,能在洞穴以及地表栖息地完成其生命周期的物种)——有眼漏斗网蜘蛛Tegenaria pagana C. L. Koch,1840的胚胎发生过程,并研究了视网膜决定网络(RDN)中几个基因的表达模式。我们讨论了T. pagana胚胎发生的特征以及关键的RDN基因。尽管在许多方面,不同类栉足蛛物种的胚胎发育相似,但我们发现与已确立的蜘蛛模式物种相比,其发育速度、腹部、呼吸系统和脑形态发生的细节存在差异。我们的数据支持无眼基因在蛛形纲动物眼睛形成中具有保守作用的假说。

结论

鉴于最近在以色列各地发现了不同程度眼睛退化的同属洞穴物种,这些数据集为研究Tegenaria属蜘蛛的眼睛退化和眼睛缺失事件提供了一个基础比较点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3782/11889846/a5e40b038cb3/13227_2025_238_Fig2_HTML.jpg

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