Ancient fish lineages illuminate toll-like receptor diversification in early vertebrate evolution

生物 脊椎动物 进化生物学 克莱德 谱系(遗传) 获得性免疫系统 系统发育树 先天免疫系统 系统发育学 基因家族 脊索动物 基因 免疫系统 遗传学 基因组
作者
Kara B. Carlson,Cameron Nguyen,Dustin J. Wcisel,Jeffrey A. Yoder,Alex Dornburg
出处
期刊:Immunogenetics [Springer Science+Business Media]
卷期号:75 (5): 465-478 被引量:3
标识
DOI:10.1007/s00251-023-01315-7
摘要

Since its initial discovery over 50 years ago, understanding the evolution of the vertebrate RAG- mediated adaptive immune response has been a major area of research focus for comparative geneticists. However, how the evolutionary novelty of an adaptive immune response impacted the diversity of receptors associated with the innate immune response has received considerably less attention until recently. Here, we investigate the diversification of vertebrate toll-like receptors (TLRs), one of the most ancient and well conserved innate immune receptor families found across the Tree of Life, integrating genomic data that represent all major vertebrate lineages with new transcriptomic data from Polypteriformes, the earliest diverging ray-finned fish lineage. Our analyses reveal TLR sequences that reflect the 6 major TLR subfamilies, TLR1, TLR3, TLR4, TLR5, TLR7, and TLR11, and also currently unnamed, yet phylogenetically distinct TLR clades. We additionally recover evidence for a pulse of gene gain coincident with the rise of the RAG-mediated adaptive immune response in jawed vertebrates, followed by a period of rapid gene loss during the Cretaceous. These gene losses are primarily concentrated in marine teleost fish and synchronous with the mid Cretaceous anoxic event, a period of rapid extinction for marine species. Finally, we reveal a mismatch between phylogenetic placement and gene nomenclature for up to 50% of TLRs found in clades such as ray-finned fishes, cyclostomes, amphibians, and elasmobranchs. Collectively, these results provide an unparalleled perspective of TLR diversity and offer a ready framework for testing gene annotations in non-model species.
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