Comparative Genome Microsynteny Illuminates the Fast Evolution of Nuclear Mitochondrial Segments (NUMTs) in Mammals

Сравнительная микросинтения геномов проливает свет на быструю эволюцию ядерных митохондриальных сегментов (NUMT) у млекопитающих
Marek Uvizl, Sébastien J. Puechmaille, Sarahjane Power, Martin Pippel, Samuel Carthy, Wilfried Haerty, Eugene W. Myers, Emma C. Teeling, Zixia Huang
2023-12-20

genome microsyntenymammalian comparative genomicsnuclear mitochondrial DNA (NUMTs)orthology assignmentphylogenetic inference
The escape of DNA from mitochondria into the nuclear genome (nuclear mitochondrial DNA, NUMT) is an ongoing process. Although pervasively observed in eukaryotic genomes, their evolutionary trajectories in a mammal-wide context are poorly understood. The main challenge lies in the orthology assignment of NUMTs across species due to their fast evolution and chromosomal rearrangements over the past 200 million years. To address this issue, we systematically investigated the characteristics of NUMT insertions in 45 mammalian genomes and established a novel, synteny-based method to accurately predict orthologous NUMTs and ascertain their evolution across mammals. With a series of comparative analyses across taxa, we revealed that NUMTs may originate from nonrandom regions in mtDNA, are likely found in transposon-rich and intergenic regions, and unlikely code for functional proteins. Using our synteny-based approach, we leveraged 630 pairwise comparisons of genome-wide microsynteny and predicted the NUMT orthology relationships across 36 mammals. With the phylogenetic patterns of NUMT presence-and-absence across taxa, we constructed the ancestral state of NUMTs given the mammal tree using a coalescent method. We found support on the ancestral node of Fereuungulata within Laurasiatheria, whose subordinal relationships are still controversial. This study broadens our knowledge on NUMT insertion and evolution in mammalian genomes and highlights the merit of NUMTs as alternative genetic markers in phylogenetic inference.
1
A synteny-based method was developed to accurately identify orthologous NUMTs despite rapid evolution and chromosomal rearrangements across mammals.
2
Analysis of 45 mammalian genomes showed that NUMTs preferentially originate from nonrandom mitochondrial DNA regions and occur mainly in transposon-rich, intergenic nuclear regions.
3
Genome-wide microsynteny comparisons across 36 mammals enabled prediction of NUMT orthology relationships from 630 pairwise comparisons.
4
NUMTs are unlikely to encode functional proteins, suggesting that most mammalian NUMT insertions are noncoding.
5
Phylogenetic reconstruction using NUMT presence–absence patterns supported the ancestral node of Fereuungulata within Laurasiatheria, demonstrating NUMTs’ potential as alternative phylogenetic markers.

Nuclear mitochondrial DNA segments (NUMTs) in mammalian genomes

The evolutionary trajectories, insertion characteristics, orthology, and phylogenetic patterns of NUMTs across mammals

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2023-12-20
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Marek Uvizl
Sébastien J. Puechmaille
Sarahjane Power
Martin Pippel
Samuel Carthy
Wilfried Haerty
Eugene W. Myers
Emma C. Teeling
Zixia Huang
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