Unexpected mutual regulation underlies paralogue functional diversification and promotes epithelial tissue maturation in Tribolium

Author:

Gurska DanielaORCID,Vargas Jentzsch Iris M.,Panfilio Kristen A.ORCID

Abstract

AbstractInsect Hox3/zen genes represent an evolutionary hotspot for changes in function and copy number. Single orthologues are required either for early specification or late morphogenesis of the extraembryonic tissues, which protect the embryo. The tandemly duplicated zen paralogues of the beetle Tribolium castaneum present a unique opportunity to investigate both functions in a single species. We dissect the paralogues’ expression dynamics (transcript and protein) and transcriptional targets (RNA-seq after RNAi) throughout embryogenesis. We identify an unexpected role of Tc-Zen2 in repression of Tc-zen1, generating a negative feedback loop that promotes developmental progression. Tc-Zen2 regulation is dynamic, including within co-expressed multigene loci. We also show that extraembryonic development is the major event within the transcriptional landscape of late embryogenesis and provide a global molecular characterization of the extraembryonic serosal tissue. Altogether, we propose that paralogue mutual regulation arose through multiple instances of zen subfunctionalization, leading to their complementary extant roles.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Springer Science and Business Media LLC

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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1. Tissue-Level Integration Overrides Gradations of Differentiating Cell Identity in Beetle Extraembryonic Tissue;Cells;2024-07-18

2. Advances in genome sequencing reveal changes in gene content that contribute to arthropod macroevolution;Development Genes and Evolution;2023-11-20

3. Evolution of the insect Hox gene cluster: Comparative analysis across 243 species;Seminars in Cell & Developmental Biology;2022-12

4. The extended analogy of extraembryonic development in insects and amniotes;Philosophical Transactions of the Royal Society B: Biological Sciences;2022-10-17

5. Extraembryonic tissue in chelicerates: a review and outlook;Philosophical Transactions of the Royal Society B: Biological Sciences;2022-10-17

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