Linking the genomic signatures of human beat synchronization and learned song in birds

Linking the genomic signatures of human beat synchronization and learned song in birds
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将人类节拍同步的基因组特征与鸟类学习的歌曲联系起来

DOI:
10.1098/rstb.2020.0329
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发表时间:
2021
期刊:
Philosophical Transactions of the Royal Society B: Biological Sciences
影响因子:
--
通讯作者:
Creanza, Nicole
Creanza, Nicole
中科院分区:
--
文献类型:
--
作者:
Gordon, Reyna L.;Ravignani, Andrea;Hyland Bruno, Julia;Robinson, Cristina M.;Scartozzi, Alyssa;Embalabala, Rebecca;Niarchou, Maria;Cox, Nancy J.;Creanza, Nicole

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节律性的发展是人类和许多其他物种交流和社会行为的基础,并且同步机制可能在物种之间保守。本文的目标是通过基因组方法探索将声乐学习和节拍同步联系起来的进化假设,测试鸟类鸣叫的遗传基础也有助于人类与音乐节拍结构相互作用的病因学的预测。我们结合了最先进的基因组数据集,这些数据集解释了这些特征的潜在多基因性:与斑马雀歌唱有关的鸟鸣全基因组转录组学,以及与节拍同步有关的人类全基因组关联研究。竞争基因集分析结果显示,在鸣禽X区(声乐学习的关键核,与人类基底神经节同源)表达的鸟鸣基因显著丰富了人类节拍同步的遗传结构。这些发现补充了发声学习与节拍同步之间关系的行为学和神经学证据,支持了人类和鸣禽(发声学习者的最大进化辐射)这两个进化支系中与节奏相关行为的某种程度的共同基因组底物的框架。讨论了在广泛的进化背景下研究温度同步的遗传基础的未来跨物种方法。这篇文章是主题“同步和节奏互动:从大脑到行为生态学”的一部分。
The development of rhythmicity is foundational to communicative and social behaviours in humans and many other species, and mechanisms of synchrony could be conserved across species. The goal of the current paper is to explore evolutionary hypotheses linking vocal learning and beat synchronization through genomic approaches, testing the prediction that genetic underpinnings of birdsong also contribute to the aetiology of human interactions with musical beat structure. We combined state-of-the-art-genomic datasets that account for underlying polygenicity of these traits: birdsong genome-wide transcriptomics linked to singing in zebra finches, and a human genome-wide association study of beat synchronization. Results of competitive gene set analysis revealed that the genetic architecture of human beat synchronization is significantly enriched for birdsong genes expressed in songbird Area X (a key nucleus for vocal learning, and homologous to human basal ganglia). These findings complement ethological and neural evidence of the relationship between vocal learning and beat synchronization, supporting a framework of some degree of common genomic substrates underlying rhythm-related behaviours in two clades, humans and songbirds (the largest evolutionary radiation of vocal learners). Future cross-species approaches investigating the genetic underpinnings of beat synchronization in a broad evolutionary context are discussed.This article is part of the theme issue ‘Synchrony and rhythm interaction: from the brain to behavioural ecology’.
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