Pathways to polar adaptation in fishes revealed by long-read sequencing

被引:10
|
作者
Hotaling, Scott [1 ]
Desvignes, Thomas [2 ]
Sproul, John S. [3 ]
Lins, Luana S. F. [4 ]
Kelley, Joanna L. [1 ]
机构
[1] Washington State Univ, Sch Biol Sci, Pullman, WA 99164 USA
[2] Univ Oregon, Inst Neurosci, Eugene, OR 97403 USA
[3] Univ Nebraska, Dept Biol, Omaha, NE 68182 USA
[4] CSIRO, Australian Natl Insect Collect, Canberra, ACT, Australia
关键词
antifreeze proteins; cold adaptation; extremophile; genome biology; polar fish; Southern Ocean; ANTIFREEZE PROTEINS; THERMAL ADAPTATION; FUNCTIONAL DIVERSIFICATION; TRANSPOSABLE ELEMENTS; PHYLOGENETIC ANALYSIS; GENOME SEQUENCE; OCEAN POUT; EVOLUTION; HEMOGLOBIN; GENE;
D O I
10.1111/mec.16501
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Long-read sequencing is driving a new reality for genome science in which highly contiguous assemblies can be produced efficiently with modest resources. Genome assemblies from long-read sequences are particularly exciting for understanding the evolution of complex genomic regions that are often difficult to assemble. In this study, we utilized long-read sequencing data to generate a high-quality genome assembly for an Antarctic eelpout, Ophthalmolycus amberensis, the first for the globally distributed family Zoarcidae. We used this assembly to understand how O. amberensis has adapted to the harsh Southern Ocean and compared it to another group of Antarctic fishes: the notothenioids. We showed that selection has largely acted on different targets in eelpouts relative to notothenioids. However, we did find some overlap; in both groups, genes involved in membrane structure, thermal tolerance and vision have evidence of positive selection. We found evidence for historical shifts of transposable element activity in O. amberensis and other polar fishes, perhaps reflecting a response to environmental change. We were specifically interested in the evolution of two complex genomic loci known to underlie key adaptations to polar seas: haemoglobin and antifreeze proteins (AFPs). We observed unique evolution of the haemoglobin MN cluster in eelpouts and related fishes in the suborder Zoarcoidei relative to other Perciformes. For AFPs, we identified the first species in the suborder with no evidence of afpIII sequences (Cebidichthys violaceus) in the genomic region where they are found in all other Zoarcoidei, potentially reflecting a lineage-specific loss of this cluster. Beyond polar fishes, our results highlight the power of long-read sequencing to understand genome evolution.
引用
收藏
页码:1381 / 1397
页数:17
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