Loss of a gluconeogenic muscle enzyme contributed to adaptive metabolic traits in hummingbirds.

Osipova, Ekaterina; Barsacchi, Rico; Brown, Tom; Sadanandan, Keren; Gaede, Andrea H; Monte, Amanda; Jarrells, Julia; Moebius, Claudia et al. · Science · 2023

basic_science · Level V

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Abstract

Hummingbirds possess distinct metabolic adaptations to fuel their energy-demanding hovering flight, but the underlying genomic changes are largely unknown. Here, we generated a chromosome-level genome assembly of the long-tailed hermit and screened for genes that have been specifically inactivated in the ancestral hummingbird lineage. We discovered that <i>FBP2</i> (fructose-bisphosphatase 2), which encodes a gluconeogenic muscle enzyme, was lost during a time period when hovering flight evolved. We show that <i>FBP2</i> knockdown in an avian muscle cell line up-regulates glycolysis and enhances mitochondrial respiration, coincident with an increased mitochondria number. Furthermore, genes involved in mitochondrial respiration and organization have up-regulated expression in hummingbird flight muscle. Together, these results suggest that <i>FBP2</i> loss was likely a key step in the evolution of metabolic muscle adaptations required for true hovering flight.

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