From Egg to Adult: A Developmental Table of the Ant Monomorium pharaonis

IF 1.8 3区 生物学 Q3 DEVELOPMENTAL BIOLOGY Journal of experimental zoology. Part B, Molecular and developmental evolution Pub Date : 2024-11-25 DOI:10.1002/jez.b.23278
Arjuna Rajakumar, Luigi Pontieri, Ruyan Li, Rasmus Stenbak Larsen, Angelly Vásquez-Correa, Johanne K. L. Frandsen, Ab Matteen Rafiqi, Guojie Zhang, Ehab Abouheif
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Abstract

Ants are one of the most ecologically and evolutionarily successful groups of animals and exhibit a remarkable degree of phenotypic diversity. This success is largely attributed to the fact that all ants are eusocial and live in colonies with a reproductive division of labor between morphologically distinct queen and worker castes. Yet, despite over a century of studies on caste determination and evolution in ants, we lack a complete ontogenetic series from egg to adult for any ant species. We, therefore, present a developmental table for the Pharaoh ant Monomorium pharaonis, a species whose colonies simultaneously produce reproductive queens and completely sterile workers. In total, M. pharaonis embryonic, larval, and pupal development lasts 45 days. During embryogenesis, the majority of developmental events are conserved between M. pharaonis and the fruit fly Drosophila melanogaster. We discovered, however, two types of same-stage embryos before gastrulation: (1) embryos with internalized germ cells; and (2) embryos with germ cells outside of the blastoderm at the posterior pole. Moreover, we also found two-types of embryos following germ band extension: (1) embryos with primordial germ cells that will develop into reproductive queens; and (2) embryos with no germ cells that will develop into completely sterile workers. Together, these data show that queen and worker castes are already determined and differentiated by early embryogenesis. During larval development, we confirmed that reproductive and worker larvae proceed through three larval instars. Using anatomical and developmental markers, we can further discern the development of gyne (unmated queen) larvae, male larvae, and worker larvae as early as the 1st instar. Overall, we hope that the ontogenetic series we present here will serve as a blueprint for the generation of future ant developmental tables.

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从卵到成虫:蚂蚁 Monomorium pharaonis 的发育表
蚂蚁是生态学和进化论上最成功的动物群体之一,表现出显著的表型多样性。这种成功在很大程度上要归功于所有的蚂蚁都是雌雄同体的,它们生活在蚁群中,形态各异的蚁后和工蚁之间进行着生殖分工。然而,尽管对蚂蚁的种性决定和进化进行了一个多世纪的研究,我们仍然缺乏任何蚂蚁物种从卵到成虫的完整的个体发育序列。因此,我们为法老蚁 Monomorium pharaonis 制作了一个发育表。法老蚁的胚胎、幼虫和蛹的发育总共持续 45 天。在胚胎发育过程中,法老蝠和黑腹果蝇的大部分发育过程都是相同的。然而,我们发现在胃形成之前有两种同阶段胚胎:(1) 胚胎内部有生殖细胞;(2) 胚胎后极胚泡外有生殖细胞。此外,我们还发现胚带延伸后有两种类型的胚胎:(1)具有原始生殖细胞的胚胎,它们将发育成具有生殖能力的皇后;(2)没有生殖细胞的胚胎,它们将发育成完全不育的工蜂。这些数据共同表明,在早期胚胎发育过程中,蜂王和工蜂种群已经确定并分化。在幼虫发育过程中,我们证实生殖幼虫和工蜂幼虫经历了三个幼虫龄期。利用解剖学和发育标记,我们可以进一步分辨雌幼虫(未交配的王后)、雄幼虫和工蜂幼虫的发育过程,最早可追溯到第一龄。总之,我们希望我们在这里展示的本体发育系列能够成为未来蚂蚁发育表的蓝图。
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来源期刊
CiteScore
4.80
自引率
9.10%
发文量
63
审稿时长
6-12 weeks
期刊介绍: Developmental Evolution is a branch of evolutionary biology that integrates evidence and concepts from developmental biology, phylogenetics, comparative morphology, evolutionary genetics and increasingly also genomics, systems biology as well as synthetic biology to gain an understanding of the structure and evolution of organisms. The Journal of Experimental Zoology -B: Molecular and Developmental Evolution provides a forum where these fields are invited to bring together their insights to further a synthetic understanding of evolution from the molecular through the organismic level. Contributions from all these branches of science are welcome to JEZB. We particularly encourage submissions that apply the tools of genomics, as well as systems and synthetic biology to developmental evolution. At this time the impact of these emerging fields on developmental evolution has not been explored to its fullest extent and for this reason we are eager to foster the relationship of systems and synthetic biology with devo evo.
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Issue Information From Egg to Adult: A Developmental Table of the Ant Monomorium pharaonis The Buds of Oscarella lobularis (Porifera, Homoscleromorpha): A New Convenient Model for Sponge Cell and Evolutionary Developmental Biology Issue Information In the Spotlight—Postdoc
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