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最近进化出的阶段特异性基因在果蝇的生命阶段转变中富集。

Recently Evolved, Stage-Specific Genes Are Enriched at Life-Stage Transitions in Flies.

作者信息

Remmel Andreas, Käther Karl K, Stadler Peter F, Lemke Steffen

机构信息

Institute of Biology, University of Hohenheim, Stuttgart, Germany.

Department of Computer Science, Interdisciplinary Center for Bioinformatics, University of Leipzig, Leipzig, Germany.

出版信息

J Exp Zool B Mol Dev Evol. 2025 Jul 15. doi: 10.1002/jez.b.23317.

Abstract

Understanding how genomic information is selectively utilized across different life stages is essential for deciphering the developmental and evolutionary strategies of metazoans. In holometabolous insects, the dynamic expression of genes enables distinct functional adaptations at embryonic, larval, pupal, and adult stages, likely contributing to their evolutionary success. While Drosophila melanogaster (D. melanogaster) has been extensively studied, less is known about the evolutionary dynamics that could govern stage-specific gene expression. To address this question, we compared the distribution of stage-specific genes, that is, genes expressed in temporally restricted developmental stages, across the development of D. melanogaster and Aedes aegypti (A. aegypti). Using tau-scoring, a computational method to determine gene expression specificity, we found that, on average, a large proportion of genes (20%-30% of all protein-coding genes) in both species exhibit restricted expression to specific developmental stages. Phylostratigraphy analysis, a method to date the age of genes, further revealed that stage-specific genes fall into two major categories: highly conserved and recently evolved. Notably, many of the recently evolved and stage-specific genes identified in A. aegypti and D. melanogaster are restricted to Diptera order (20%-35% of all stage-specific genes), highlighting ongoing evolutionary processes that continue to shape life-stage transitions. Overall, our findings underscore the complex interplay between gene evolutionary age, expression specificity, and morphological transformations in development. These results suggest that the attraction of genes to critical life-stage transitions is an ongoing process that may not be constant across evolutionary time or uniform between different lineages, offering new insights into the adaptability and diversification of dipteran genomes.

摘要

了解基因组信息如何在不同生命阶段被选择性利用,对于解读后生动物的发育和进化策略至关重要。在全变态昆虫中,基因的动态表达使得在胚胎、幼虫、蛹和成虫阶段能够实现不同的功能适应,这可能是它们进化成功的原因之一。虽然黑腹果蝇(D. melanogaster)已得到广泛研究,但对于可能控制阶段特异性基因表达的进化动态了解较少。为了解决这个问题,我们比较了黑腹果蝇和埃及伊蚊(A. aegypti)发育过程中阶段特异性基因(即在时间上受限的发育阶段表达的基因)的分布情况。使用tau评分(一种确定基因表达特异性的计算方法),我们发现,平均而言,这两个物种中很大一部分基因(占所有蛋白质编码基因的20%-30%)在特定发育阶段表现出受限表达。系统发育地层学分析(一种确定基因年龄的方法)进一步揭示,阶段特异性基因分为两大类:高度保守的和最近进化的。值得注意的是,在埃及伊蚊和黑腹果蝇中鉴定出的许多最近进化的阶段特异性基因仅限于双翅目(占所有阶段特异性基因的20%-35%),突出了持续塑造生命阶段转变的进化过程仍在进行。总体而言,我们的研究结果强调了基因进化年龄、表达特异性和发育过程中形态转变之间的复杂相互作用。这些结果表明,基因对关键生命阶段转变的吸引力是一个持续的过程,在进化时间上可能并非恒定,在不同谱系之间也不一致,这为双翅目基因组的适应性和多样性提供了新的见解。

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