Myriapod genomes reveal ancestral horizontal gene transfer and hormonal gene loss in millipedes

Author:

So Wai Lok,Nong WenyanORCID,Xie YichunORCID,Baril Tobias,Ma Hai-yao,Qu Zhe,Haimovitz Jasmine,Swale Thomas,Gaitan-Espitia Juan DiegoORCID,Lau Kwok Fai,Tobe Stephen S.ORCID,Bendena William G.ORCID,Kai Zhen-peng,Hayward AlexanderORCID,Hui Jerome H. L.ORCID

Abstract

AbstractAnimals display a fascinating diversity of body plans. Correspondingly, genomic analyses have revealed dynamic evolution of gene gains and losses among animal lineages. Here we sequence six new myriapod genomes (three millipedes, three centipedes) at key phylogenetic positions within this major but understudied arthropod lineage. We combine these with existing genomic resources to conduct a comparative analysis across all available myriapod genomes. We find that millipedes generally have considerably smaller genomes than centipedes, with the repeatome being a major contributor to genome size, driven by independent large gains of transposons in three centipede species. In contrast to millipedes, centipedes gained a large number of gene families after the subphyla diverged, with gains contributing to sensory and locomotory adaptations that facilitated their ecological shift to predation. We identify distinct horizontal gene transfer (HGT) events from bacteria to millipedes and centipedes, with no identifiable HGTs shared among all myriapods. Loss ofjuvenile hormone O-methyltransferase, a key enzyme in catalysing sesquiterpenoid hormone production in arthropods, was also revealed in all millipede lineages. Our findings suggest that the rapid evolution of distinct genomic pathways in centipede and millipede lineages following their divergence from the myriapod ancestor, was shaped by differing ecological pressures.

Funder

Research Grants Council, University Grants Committee

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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