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Arick, M.

Publications and source records attributed to Arick, M..

2 recordsLinked to original sources

Assessment of the Genetic Diversity of Atlantic Bottlenose Dolphin (Tursiops truncatus) Strandings in the Mississippi Sound (USA)

The common bottlenose dolphin (Tursiops truncatus) is a key marine mammal species in the northern Gulf of Mexico, playing an essential role as a top predator. This study focuses on the genetic diversity and population structure of bottlenose dolphins stranded in the Mississippi Sound from 2010 to 2021. A total of 511 tissue samples (muscle, liver, lung, kidney, and brain) were collected from stranded dolphins, and mitochondrial DNA (mtDNA) was extracted for analysis. Using high-throughput sequencing methods, 417 samples were successfully amplified and sequenced, producing 386 complete mitogenomes. Genetic diversity metrics, such as nucleotide and haplotype diversity, were calculated, and population structure was inferred for both mitochondrial control region (mtCR) and whole mitogenome sequences. Using the whole mitogenome, the study identified four genetically distinct populations within the Mississippi Sound, demonstrating regional variation in dolphin populations. Notably, some individuals likely originated from populations outside the sampled area. The use of whole mitogenomes allowed for improved resolution of genetic diversity and population differentiation compared to previous studies using partial mtDNA sequences. These findings provide critical insights into the genetic structure of bottlenose dolphins in the region and highlight the value of using stranded animals for population genetic studies.

genomics↗

Innovations in double digest restriction-site associated DNA sequencing (ddRAD-Seq) method for more efficient SNP identification

We present an improved ddRAD-Seq protocol for identifying single nucleotide polymorphisms (SNPs). It utilizes optimally sized restriction enzyme digestion fragments, quick acting ligases that are neutral with the restriction enzyme buffer eliminating buffer exchange steps, and adapters designed to be compatible with Illumina index primers. Library amplification and barcoding are completed in one PCR step, and magnetic beads are used to purify the genomic fragments from the ligation and library generation steps. Our protocol increases the efficiency and decreases the time to complete a ddRAD-Seq experiment. To demonstrate its utility, we compared SNPs from our protocol with those from whole genome resequencing data from Gossypium herbaceum and Gossypium arboreum. Principal component analysis demonstrated that the variability of the combined data was explained by the genotype (PC1) and methodology applied (PC2). Phylogenetic analysis showed that the SNPs from our method clustered with SNPs from the resequencing data of the corresponding genotype. Sequence alignments illustrated that for homozygous loci, more than 90% of the SNPs from the resequencing data were discovered by our method. Our analyses suggest that our ddRAD-Seq method is reliable in identifying SNPs suitable for phylogenetic and association genetic studies while reducing cost and time over known methods.

genomics↗