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  5. Biogeography in the deep: Hierarchical population genomic structure of two beaked whale species

Biogeography in the deep: Hierarchical population genomic structure of two beaked whale species

Resource type
Journal article
Creator (person)
Onoufriou, Aubrie B
Gaggiotti, Oscar E
Aguilar de Soto, Natacha
McCarthy, Morgan L
Morin, Phillip A
more
Date published
December 2022
Abstract

The deep sea is the largest ecosystem on Earth, yet little is known about the processes driving patterns of genetic diversity in its inhabitants. Here, we investigated the macro- and microevolutionary processes shaping genomic population structure and diversity in two poorly understood, globally distributed, deep-sea predators: Cuvier’s beaked whale (Ziphius cavirostris) and Blainville’s beaked whale (Mesoplodon densirostris). We used double-digest restriction associated DNA (ddRAD) and whole mitochondrial genome (mitogenome) sequencing to characterise genetic patterns using phylogenetic trees, cluster analysis, isolation-by-distance, genetic diversity and differentiation statistics. Single nucleotide polymorphisms (SNPs; Blainville’s n = 43 samples, SNPs=13988; Cuvier’s n = 123, SNPs= 30479) and mitogenomes (Blainville’s n = 27; Cuvier’s n = 35) revealed substantial hierarchical structure at a global scale. Both species display significant genetic structure between the Atlantic, Indo-Pacific and in Cuvier’s, the Mediterranean Sea. Within major ocean basins, clear differentiation is found between genetic clusters on the east and west sides of the North Atlantic, and some distinct patterns of structure in the Indo-Pacific and Southern Hemisphere. We infer that macroevolutionary processes shaping patterns of genetic diversity include biogeographical barriers, highlighting the importance of such barriers even to highly mobile, deep-diving taxa. The barriers likely differ between the species due to their thermal tolerances and evolutionary histories. On a microevolutionary scale, it seems likely that the balance between resident populations displaying site fidelity, and transient individuals facilitating gene flow, shapes patterns of connectivity and genetic drift in beaked whales. Based on these results, we propose management units to facilitate improved conservation measures for these elusive species.

Organisational unit
Natural Sciences
Journal title
Global Ecology and Conservation
Volume
40
Article number
e02308
Publisher
Elsevier BV
ISSN
2351-9894
Date accepted
October 13, 2022
Official URL
https://doi.org/10.1016/j.gecco.2022.e02308
Related URL
https://www.nms.ac.uk/collections-research/collections-departments/natural-sciences/meet-the-team/dr-andrew-kitchener/
https://linkinghub.elsevier.com/retrieve/pii/S2351989422003109
Rights statement
In Copyright
Licence
CC BY 4.0
DOI
10.1016/j.gecco.2022.e02308
Alternate identifier
S2351989422003109
e02308
Keywords
Ziphiidae
Mitogenome sequencing
Mesoplodon densirostris
DdRAD sequencing
Phylogenomics
Ziphius cavirostris
Library of Congress classification
CS
QL
AI
GC
AC
GE
Additional information
Full text available via the official URL
Managed by the British Library and supported by the AHRC

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