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Kennington, J. W.

Publications and source records attributed to Kennington, J. W..

2 recordsLinked to original sources

Population genetic assessment of marine megafauna using seawater environmental DNA: a case study of whale sharks from the Ningaloo Coast World Heritage Area.

There is a growing need for scalable and cost-effective genetic monitoring tools to support the management of species and populations of conservation importance, driven by the increasing biodiversity loss, need for long-term population data and limitations of invasive genetic sampling. Whale sharks (Rhincodon typus), along with other Endangered, elusive and highly migratory species, spend the majority of their lives in offshore ocean waters. This behaviour poses logistical and ethical challenges to invasive genetic sampling of the species, which is traditionally done via tissue biopsy. Here, we develop a genetic toolkit to study populations of whale sharks from seawater environmental DNA using short segments of nuclear DNA (100-300bp) containing two or more SNPs called "microhaplotypes". Amplifying these markers from seawater collected in 1L bottles behind sharks showed that we can reliably genotype sharks from water samples taken immediately behind the animal. Moreover, we observed a strong relationship between population-level allele frequencies and estimates of genetic diversity between eDNA and tissue-derived samples, demonstrating the capability of eDNA in capturing population-level genetic information with high fidelity. We also analysed a tissue dataset of 72 sharks that attended the Ningaloo Coast World Heritage Area over six-years to showcase the utility of our SNP panel to study temporal processes in these populations. Our data revealed patterns of genetic variation through time that were consistent with whole genome techniques. Contributor estimation from mock environmental samples using various combinations of tissue-derived sequence data to estimate abundance of animals in a mixed DNA sample was shown to accurately identify the number of contributors in mixtures containing [≤] 10 individuals, beyond which biases were too large. Our findings illustrate the viability of using microhaplotype markers from seawater eDNA as a tool to study conservation genetics of whale sharks, with the potential for broader expansion of eDNA-based genetic assessments to other marine megafauna and aquatic species.

genetics↗

Towards population genetic assessments and species abundance from environmental DNA: A case study with zebrafish in controlled aquaria

Developing robust methods for amplifying and analysing highly-polymorphic nuclear genetic markers from environmental samples could assist in the reliable and scalable long-term monitoring of elusive, threatened or invasive species that are otherwise challenging to observe. In this study, we used zebrafish in controlled aquaria to apply forensic science approaches and demonstrate that microhaplotypes, which are short segments of nuclear DNA (100-300bp) containing two or more single nucleotide polymorphisms (SNPs), can be amplified from trace DNA in water samples to accurately estimate population genetic diversity and species abundance. We successfully amplified a panel of 17 microhaplotypes that comprised 69 SNPs which could reliably estimate population-level allele frequencies and genetic diversity estimates from water DNA. The panel of microhaplotypes amplified from water samples from replicate tanks strongly matched allele frequency estimates from corresponding tissue samples, and could also be used for estimating number of contributors from multi-individual samples. Our research demonstrates the effectiveness and potential of amplifying microhaplotype panels from eDNA as a non-invasive and scalable tool for population genetic studies of aquatic species.

ecology↗