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1.
Mar Pollut Bull ; 176: 113434, 2022 Mar.
Article in English | MEDLINE | ID: mdl-35183025

ABSTRACT

Exposure risk is assessed based on modeling suitable habitat of large pelagic fish and oil spill scenarios originating at three wells located in the western GM's deep waters. Since the fate of the oil depends on the oceanographic conditions present during the accident, as well as the magnitude and duration of the spill, which are not known a priori, the scenarios used are a statistical representation of the area in which oil spilled from the well could be found, given all possible outcomes. The ecological vulnerability assessment identified a subset of bony fish with low-medium vulnerability and elasmobranchs with medium-high vulnerability. The oiling probability and exposure risk of both bony fish and elasmobranchs hotspots vary by well analyzed. Thus, these results provide essential information for a risk management plan for the assessed species and others with economic or conservation importance distributed in the GM and worldwide.


Subject(s)
Petroleum Pollution , Animals , Ecosystem , Fishes , Gulf of Mexico , Probability
2.
J Fish Biol ; 90(3): 889-905, 2017 Mar.
Article in English | MEDLINE | ID: mdl-27861871

ABSTRACT

Samples of the shovelnose guitarfish Pseudobatos productus were collected on board a vessel and at landings of artisanal commercial fisheries in the Gulf of California from May 2004 to June 2007. Samples of 650 females, 2047 embryos and 484 uterine eggs were examined. The reproductive cycle is annual, ovulation and parturition occur in July, the uterine eggs are in diapause for 9 months (July-March) before an accelerated growth of embryos of 3 months. Histological analyses of the uterine wall of pregnant females suggested that no secretions were used for embryo nourishment. The standard percentage of water content was 48·6% in fertilized eggs and 80·75% in full-term embryos. Dry mass loss during embryonic development was 16·3% and the chemical balance of development was 0·84. This indicates that P. productus is a strictly lecithotrophic, viviparous species, that makes no maternal contribution of nutrients during embryonic development.


Subject(s)
Embryo, Nonmammalian/physiology , Ovoviviparity/physiology , Ovum/physiology , Skates, Fish/physiology , Animals , California , Embryonic Development/physiology , Female , Ovulation , Pacific Ocean
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