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Biology subjects

Charvet, P.

Publications and source records attributed to Charvet, P..

4 recordsLinked to original sources

Hidden Diversity of Threatened Sharks and Rays in the Global Meat Trade

International wildlife trade is a major source of biodiversity loss, yet many species lie hidden within aggregated data that conceals trade impacts. We overcome this problem for the largest vertebrate wildlife trade globally - shark and ray meat - comprising 438 538 mt yr-1 across more than 150 species, 76% of which are Threatened. Revealed trade contains greater quantities of skates (+10%), hammerheads (+8%), and smoothhounds, dogfishes & tope (+5%), and fewer pelagic sharks (-38%) than previously known. Shorttail yellownose skate, smoothound, silky, mako, and blue sharks are the most underreported meat species, due to aggregated landings from China, Argentina, Japan, and Indonesia, demonstrating international trade in shark and ray meat as a diverse, pervasive, and previously hidden source of fishing mortality for many threatened species.

ecology↗

Geographical variation in mitogenomes of the largetooth sawfish Pristis pristis: challenges and perspectives for conservation efforts

Sawfishes (Pristidae) have been severely impacted by coastal development and unregulated fisheries and are considered Critically Endangered by the IUCN Red List. Environmental DNA (eDNA) analyses have shown potential for monitoring elasmobranch species, with various studies focusing on using species-specific approaches to detect Pristis species. However positive detection using existing probes has not been confirmed in some geographic regions where they would be expected. Here, we aimed to test whether mutations at key sites have been detrimental to species-specific detection of P. pristis (Linnaeus, 1758) using the existing probe set. To test this hypothesis mitogenomes were assembled that were found to follow the typical pattern of vertebrate mitogenomic organization. Phylogenetic trees showed similar topologies and confirmed geographic mitochondrial variation in P. pristis. Mismatches for the published 12S species-specific probe set for P. pristis were identified that prevent amplification of positive control samples from Brazil. However, ddPCR detection of the positive control was possible using a newly designed species-specific probe set. This study highlights how geographical variation can severely impact the success of generally applying species-specific detection systems developed based on data from only one geographical region. The new mitogenomes and species-specific probe set developed here may also contribute to improving the potential to map and monitor these Critically Endangered species across the globe. O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=109 SRC="FIGDIR/small/639618v1_ufig1.gif" ALT="Figure 1"> View larger version (16K): org.highwire.dtl.DTLVardef@1fb30fborg.highwire.dtl.DTLVardef@4cd3a8org.highwire.dtl.DTLVardef@1dbd985org.highwire.dtl.DTLVardef@a5d7d3_HPS_FORMAT_FIGEXP M_FIG O_FLOATNOGraphical abstractC_FLOATNO C_FIG

ecology↗

Molecular identification of whole squids and calamari at fairs and markets in regions of Latin America

In recent decades, the commercial importance of cephalopods has increased considerably, being an important fishing resource around the world. However, during the preparation for commercialization of those species, especially those sold in markets, they suffer the process known as "calamari" which includes removing and separating the head, arm, skin or even having the body structure cut into rings, which ends up making it difficult or often prevents the identification of the species, which can lead to replacements. In this sense, the present study aimed to use the large ribosomal region, rrnL (also known as 16S rDNA) to genetically identify cephalopod species sold in markets and fairs in Latin America. Whole and processed samples were collected from supermarkets and directly from local fishers the approximate collection location. Each generated sequence was submitted to the website Genbank for molecular comparison and included in the database for subsequent genetic identification. Comparison of sequences using the Blastn revealed the presence of eight species that are widely traded in the Latin American region. Our results indicate labeling errors in samples from the State of Para that contained the species Dosidicus gigas (d Orbigny, 1823) found only in the Pacific Ocean and were generically labeled as "National Lula". No type of substitution was found among the samples that were being sold at fairs and markets, only labeling errors. Thus, our results demonstrate the effectiveness of the rrnL for identifying species and evaluating labeling errors.

genetics↗

Extinction risk, reconstructed catches, and management of chondrichthyan fishes in the Western Central Atlantic Ocean

Chondrichthyan fishes are among the most threatened vertebrates on the planet because many species have slow life histories that are outpaced by intense fishing. The Western Central Atlantic Ocean, which includes the greater Caribbean, is a hotspot of chondrichthyan biodiversity and abundance, but is historically characterized by extensive shark and ray fisheries and a lack of sufficient data for effective management and conservation. To inform future research and management decisions, we analyzed patterns in chondrichthyan extinction risk, reconstructed catches, and regulations in this region. We summarized the extinction risk of 180 sharks, rays, and chimaeras using contemporary IUCN Red List assessments and found that over one-third (35.6%) were assessed as Vulnerable, Endangered, or Critically Endangered largely due to fishing. Reconstructed catches from 1950 to 2016 reached their peak in 1992, then declined by 40.2% through the end of the series. The United States, Venezuela, and Mexico were responsible for most catches and hosted large proportions of the regional distributions of threatened species; these countries therefore held the greatest responsibility for chondrichthyan management. The abundance and resolution of fisheries landings data were poor in much of the region, and national-level regulations varied widely across jurisdictions. Deepwater fisheries represent an emerging threat, although many deepwater chondrichthyans currently find refuge beyond the depths of most fisheries. Regional collaboration as well as effective and enforceable management informed by more complete fisheries data, particularly from small-scale fisheries, are required to protect and recover threatened species and ensure sustainable fisheries.

ecology↗