生物
收敛演化
蜂鸟
遗传学
进化生物学
基因
己糖激酶
调节器
基因组
适应(眼睛)
系统发育学
系统发育树
序列(生物学)
花蜜
序列比对
分子进化
DNA测序
自然选择
选择(遗传算法)
遗传变异
保守序列
比较基因组学
调节顺序
基因表达调控
表型
全基因组测序
序列分析
适应性进化
作者
Ekaterina Osipova,Meng‐Ching Ko,Konstantin M. Petricek,Simon Yung Wa Sin,Thomas F. Brown,Sylke Winkler,Martin Pippel,Julia Jarrells,Susanne Weiche,Mai‐Britt Mosbech,Fanny Taborsak-Lines,Chuan Wang,Orlando Contreras-Lopez,Remi‐André Olsen,Philip Ewels,Daniel Mendez-Aranda,Andrea H. Gaede,Keren R. Sadanandan,Gabriel W. Low,Amanda Monte
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-02-26
卷期号:391 (6788): eadt1522-eadt1522
被引量:4
标识
DOI:10.1126/science.adt1522
摘要
High-sugar diets cause human metabolic diseases, yet several bird lineages convergently adapted to feeding on sugar-rich nectar or fruits. We investigated the underlying molecular mechanisms in hummingbirds, parrots, honeyeaters, and sunbirds by generating nine new genomes and 90 tissue-specific transcriptomes. Comparative screens revealed an excess of repeated selection in both protein-coding and regulatory sequences in sugar-feeding birds, suggesting reuse of genetic elements. Sequence or expression changes in sugar-feeders affect genes involved in blood pressure regulation and lipid, amino acid, and carbohydrate metabolism, with experiments showing functional changes in honeyeater hexokinase 3. MLXIPL , a key regulator of sugar and lipid homeostasis, showed convergent sequence and regulatory changes across all sugar-feeding clades; experiments revealed enhanced sugar-induced transcriptional activity of hummingbird MLXIPL , highlighting its adaptive role in high-sugar diets.
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