Automated Author Profile

Kyne, Peter M.

Charles Darwin University

Current S-Index

1.8

Sum of Dataset Indices for all datasets

Average Dataset Index per Dataset

0.9

Average Dataset Index per dataset

Total Datasets

2

Total datasets for this author

Average FAIR Score

76.9%

Average FAIR Score per dataset

Total Citations

4

Total citations to the author's datasets

Total Mentions

0

Total mentions of the author's datasets

S-Index Interpretation

S-Index Over Time

Cumulative Citations Over Time

Cumulative Mentions Over Time

Datasets

Data for: From rivers to ocean basins: The role of ocean barriers and philopatry in the genetic structuring of a cosmopolitan coastal predator (Version: 6)

The Bull Shark (Carcharhinus leucas) faces varying levels of exploitation around the world due to its coastal distribution. Information regarding population connectivity is crucial to evaluate its conservation status and local fishing impacts. In this study, we sampled 922 putative Bull Sharks from 19 locations in the first global assessment of population structure of this cosmopolitan species. Using a recently developed DNA-capture approach (DArTcap), samples were genotyped for 3,400 nuclear markers. Additionally, full mitochondrial genomes of 384 Indo-Pacific samples were sequenced. Reproductive isolation was found between and across ocean basins (eastern Pacific, western Atlantic, eastern Atlantic, Indo-West Pacific) with distinct island populations in Japan and Fiji. Bull Sharks appear to maintain gene flow using shallow coastal waters as dispersal corridors, whereas large oceanic distances and historical land-bridges act as barriers. Females tend to return to the same area for reproduction, making them more susceptible to local threats and an important focus for management actions. Given these behaviours, the exploitation of Bull Sharks from insular populations, such as Japan and Fiji, may instigate local decline that cannot readily be replenished by immigration, which can in turn affect ecosystem dynamics and functions. These data also supported the development of a genetic panel to ascertain the population of origin, which will be useful in monitoring the trade of fisheries products and assessing population-level impacts of this harvest.

Authors

  • Devloo-Delva, Floriaan ;
  • Burridge, Christopher P. ;
  • Kyne, Peter M. ;
  • Brunnschweiler, Juerg M. ;
  • Chapman, Demian D. ;
  • Charvet, Patricia ;
  • Chen, Xiao ;
  • Cliff, Geremy ;
  • Daly, Ryan ;
  • Drymon, J. Marcus ;
  • Espinoza, Mario ;
  • Fernando, Daniel ;
  • Garcia Barcia, Laura ;
  • Glaus, Kerstin ;
  • González‐Garza, Blanca Idalia ;
  • Grant, Michael I ;
  • Gunasekera, Rasanthi M. ;
  • Hernandez, Sebastian I. ;
  • Hyodo, Susumu ;
  • Jabado, Rima W. ;
  • Jaquemet, Sébastien ;
  • Johnson, Grant ;
  • Ketchum, James T. ;
  • Magalon, Hélène ;
  • Marthick, James R. ;
  • Mollen, Frederik H. ;
  • Mona, Stefano ;
  • Naylor, Gavin J.P. ;
  • Nevill, John E.G. ;
  • Phillips, Nicole M. ;
  • Pillans, Richard D. ;
  • Postaire, Bautisse D. ;
  • Smoothey, Amy F. ;
  • Tachihara, Katsunori ;
  • Tillet, Bree J. ;
  • Valerio, Jorge ;
  • Feutry, Pierre
3 Citations0 Mentions77% FAIR1.4 Dataset Index
10.5061/dryad.4qrfj6qdg2023

Data from: Inferring contemporary and historical genetic connectivity from juveniles (Version: 1)

Measuring population connectivity is a critical task in conservation biology. While genetic markers can provide reliable long-term historical estimates of population connectivity, scientists are still limited in their ability to determine contemporary patterns of gene flow, the most practical time frame for management. Here, we tackled this issue by developing a new approach that only requires juvenile sampling at a single time period. To demonstrate the usefulness of our method, we used the Speartooth shark (Glyphis glyphis), a critically endangered species of river sharks found only in tropical northern Australia and southern Papua New Guinea. Contemporary adult and juvenile shark movements, estimated with the spatial distribution of kin pairs across and within three river systems, was contrasted with historical long-term connectivity patterns, estimated from mitogenomes and genome-wide SNP data. We found strong support for river fidelity in juveniles with the within-cohort relationship analysis. Male breeding movements were highlighted with the cross-cohort relationship analysis and female reproductive philopatry to the river systems was revealed by the mitogenomic analysis. We show that accounting for juvenile river fidelity and female philopatry is important in population structure analysis and that targeting sampling in nurseries and juveniles aggregation should be included in the genomic toolbox of threatened species management.

Authors

  • Feutry, Pierre ;
  • Berry, Oliver ;
  • Kyne, Peter M. ;
  • Pillans, Richard D. ;
  • Hillary, Rich ;
  • Grewe, Peter M. ;
  • Marthick, James R. ;
  • Johnson, Grant ;
  • Gunasekera, Rasanthi M. ;
  • Bax, Nicholas J. ;
  • Bravington, Mark ;
  • Hillary, Richard M.
1 Citation0 Mentions77% FAIR0.8 Dataset Index
10.5061/dryad.86mh82016