Molecular Characterization and Evolution of Toll-like Receptors in the Reissner Lamprey (Lethenteron reissneri)

Toll-like receptors (TLRs) are evolutionarily conserved sensors of pathogen-associated molecular patterns. The chromosomal organization and post-duplication diversification of the TLR repertoire in Lethenteron reissneri remain incompletely characterized. We combined chromosome-level genome screening with phylogenetic, genomic organization, and transcriptional analyses. We identified 21 TLR and TLR-like genes, including expansions of the TLR2, TLR5, TLR7, TLR14, and TLR21 subfamilies, but detected no orthologs of vertebrate TLR1, TLR4, TLR6, TLR9, or TLR10. Two atypical TIR-only genes, designated TLR-like-a and TLR-like-b, formed a distinct phylogenetic group. Chromosomal mapping revealed local paralog clusters alongside members distributed across separate chromosomes. RT-qPCR revealed treatment-associated transcriptional changes in peripheral blood leukocytes after LPS or Poly(I:C) administration, with paralogs differing in response magnitude and timing. Together, these results characterize a distinctive TLR repertoire in L. reissneri and show that duplicated members differ in protein architecture and stimulus-associated transcription, adding comparative evidence on the early evolution of vertebrate innate immunity.

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Journal
Fishes
Published
2026-10-09
DOI
https://doi.org/10.3390/fishes11100590
Primary Topic
Immune Response and Inflammation
Type
article
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article

Molecular Characterization and Evolution of Toll-like Receptors in the Reissner Lamprey (Lethenteron reissneri)

Fu Huiyi, Ting Zhu, Weiyin Xu, Xinran Wang et al.
Fishes
Immune Response and Inflammation
article

Molecular Characterization and Evolution of Toll-like Receptors in the Reissner Lamprey (Lethenteron reissneri)

Fu Huiyi, Ting Zhu, Weiyin Xu, Xinran Wang, Lutian Wang, Ji Zhao, Guiyao Wang, Qingkui Bai, Ming Geng, Yijie Zhang
article en

Abstract

Toll-like receptors (TLRs) are evolutionarily conserved sensors of pathogen-associated molecular patterns. The chromosomal organization and post-duplication diversification of the TLR repertoire in Lethenteron reissneri remain incompletely characterized. We combined chromosome-level genome screening with phylogenetic, genomic organization, and transcriptional analyses. We identified 21 TLR and TLR-like genes, including expansions of the TLR2, TLR5, TLR7, TLR14, and TLR21 subfamilies, but detected no orthologs of vertebrate TLR1, TLR4, TLR6, TLR9, or TLR10. Two atypical TIR-only genes, designated TLR-like-a and TLR-like-b, formed a distinct phylogenetic group. Chromosomal mapping revealed local paralog clusters alongside members distributed across separate chromosomes. RT-qPCR revealed treatment-associated transcriptional changes in peripheral blood leukocytes after LPS or Poly(I:C) administration, with paralogs differing in response magnitude and timing. Together, these results characterize a distinctive TLR repertoire in L. reissneri and show that duplicated members differ in protein architecture and stimulus-associated transcription, adding comparative evidence on the early evolution of vertebrate innate immunity.

FishesVol. 11(10)
Liaoning Normal University (CN)
Openalex Percentile: Top 19%
Immune Response and Inflammation
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Molecular Characterization and Evolution of Toll-like Receptors in the Reissner Lamprey (Lethenteron reissneri) — Fu Huiyi, Ting Zhu, et al. · Fishes (2026) | TGRS Research Map | TGRS