Dear Marmam colleagues,

I I trust this message finds you well.

In behalf of my co-authors, I pleased to share a new paper on “Persistent Organic Pollutants and Mercury in Genetically Identified Inner Estuary Bottlenose Dolphin (Tursiops truncatus) Residents of the Guayaquil Gulf, Ecuador: Ecotoxicological Science in Support of Pollutant Management and Cetacean Conservation,” which is the first contribution on the ecotoxicological assessment of persistent organic pollutants (POPs) and mercury in a small cetacean species in Ecuador’s continental coast, and one of the first ones along the Pacific coast of South America.

 

This article is an Open Access paper and can be found at the following links;

https://www.frontiersin.org/articles/10.3389/fmars.2020.00122/full

https://www.frontiersin.org/article/10.3389/fmars.2020.00122

 

Full details and abstract:

Citation: Alava JJ*, Calle P, Tirapé A, Biedenbach G, Alvarado Cadena O, Maruya K, Lao W, Aguirre W, Jiménez PJ, Domínguez GA, Bossart GD and Fair PA (2020) Persistent Organic Pollutants and Mercury in Genetically Identified Inner Estuary Bottlenose Dolphin (Tursiops truncatus) Residents of the Guayaquil Gulf, Ecuador: Ecotoxicological Science in Support of Pollutant Management and Cetacean Conservation. Front. Mar. Sci. 7:122. doi: 10.3389/fmars.2020.00122

 

*Correspondence: Juan José Alava, j.alava@oceans.ubc.ca; jalavasa@sfu.ca

 

Published: 20 March 2020.

 

Abstract

The bottlenose dolphin is one of the most common cetaceans found in the coastal waters, estuaries, and mangroves of Ecuador. However, its population size is gradually declining in the Gulf of Guayaquil, and anthropogenic factors including habitat degradation, uncontrolled dolphin watching, dredging activities, increasing maritime traffic, underwater noise, bycatch, and marine pollution have been implicated in their decline. Very little is known about contamination by persistent organic pollutants (POPs) and mercury in bottlenose dolphins from the Pacific coast of South America. To address this research gap, the first assessment of total mercury (THg) and POPs, including polychlorinated biphenyls (PCBs), organochlorine pesticides (OCPs), and polybrominated diphenyl ethers (PBDEs), in free-ranging bottlenose dolphins in mangroves (El Morro Mangrove Wildlife Refuge) of the Gulf of Guayaquil, was conducted in Ecuador in 2018. Dolphin samples (i.e., skin and blubber; n = 9), were obtained using dart biopsy field methods for contaminant analysis. POP concentrations ranged from 0.56 to 13.0 mg/kg in lipid weight, while THg ranged from 1.92 to 3.63 mg/kg in dry weight. The predominant POPs were OCPs (50% of ΣPOP), followed by PCBs (46%) and PBDEs (6.0%); particularly, p,p′-DDE, the main DDT metabolite and a potent anti-androgenic, accounting for 42% of ΣPOP, ranging from 0.12 to 7.0 mg/kg lw, followed by PCB 153 (8.0%) and PCB 180 (5.0%). PBDE 47 accounted for 2.0% of ΣPOP. While the POP concentrations are lower than those found in dolphins from many other regions of the world, some of the THg concentrations are within the concentration range found in dolphins from the southeastern coast of the United States. The ecotoxicological risk assessment showed that some of the sampled dolphins are exposed to immunotoxic and endocrine disruption effects by POPs and mercury. The low genetic diversity of this distinctive dolphin population, likely exhibiting genetic isolation and a unique evolutionary heritage, could be lost if the population continues to decline in the face of anthropogenic threats, including chemical pollution. Our finding shows that bottlenose dolphins in coastal Ecuador are exposed to environmental contaminants and can be used as sentinel species for ecosystem health to monitor pollution in the region and to support ecotoxicological risk assessment and regional pollutant management.


Keywords: contaminants, POPs, organic mercury, marine mammals, toxicological risk assessment, mangroves, Gulf of Guayaquil, South America

 

Wishing you all well and stay safe.

Juan Jose Alava
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Juan Jose Alava, PhD.
Research Associate, Nippon Foundation-Ocean Litter Project
Principal Investigator, Ocean Pollution Research Unit (OPRU)
Institute for the Oceans and Fisheries
Faculty of Science, The University of British Columbia
AERL 2202 Main Mall | Vancouver, BC V6T 1Z4 Canada
http://oceans.ubc.ca/juan-jose-alava/  
https://www.researchgate.net/profile/Juan_Jose_Alava/contributions?ev=prf_act


Adjunct Professor
Resource and Environmental Management, Faculty of Environment,
Simon Fraser University
8888 University Drive,
Burnaby, British Columbia V5A 1S6,Canada
E-mail: jalavasa@sfu.ca