Genetic Diversity and Environmental Adaptation Signatures of the Great Seahorse (Hippocampus kelloggi) in the Coastal Regions of the Indo-Pacific as Revealed by Whole-Genome Re-Sequencing
Wen-Xin Hao, Ying-Yi Zhang, Xin Wang, Meng Qu, Shi-Ming Wan, Qiang Lin

TL;DR
This study uses whole-genome sequencing to explore the genetic diversity and adaptation of the great seahorse across three Indo-Pacific regions.
Contribution
The study identifies genetic differentiation and candidate genes for environmental adaptation in the great seahorse using whole-genome re-sequencing.
Findings
Three H. kelloggi populations show high genetic differentiation with minimal gene flow.
The SCS population experienced a dramatic bottleneck during the Last Glacial Maximum followed by recovery.
21 candidate genes, including myo5a and hps4, are linked to environmental adaptation in the SCS population.
Abstract
The great seahorse (Hippocampus kelloggi) is one of the larger species within the seahorse group and is widely distributed in coastal areas of the Indo-Pacific. However, the natural resources of this species continue to decrease, rendering it a vulnerable species that faces a high risk of extinction. Therefore, there is an urgent need to conduct research on the genetic diversity of this species to protect its genetic resources. In this study, we conducted whole-genome re-sequencing (WGRS) on three H. kelloggi populations from the Red Sea (RS, n = 30), the Andaman Sea (AS, n = 13), and the South China Sea (SCS, n = 13), and a total of 1,398,936 high-quality single-nucleotide polymorphisms (SNPs) were identified. The results indicate that the average observed heterozygosity (Ho) and the average expected heterozygosity (He) for the RS, AS, and SCS populations are 0.2031 and 0.1987, 0.1914…
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Taxonomy
TopicsAquatic life and conservation · Fish Biology and Ecology Studies · Identification and Quantification in Food
