The recent invasion of the lionfish Pterois miles to the Mediterranean draws major concerns to the fate of the indigenous ecosystem, based on previous knowledge of the species' detrimental capabilities as an introduced species in the Western Atlantic Ocean. In order to determine invasive patterns in the Eastern Mediterranean, we compared the genetic divergence of two mtDNA markers, the COI and D-loop, between and within the introduced Levantine and native range Red Sea populations of the lionfish. COI region presented a remarkably shallow genealogy, and both genes have failed to show a definite geographic population structure, with non-significant AMOVA and low pairwise F values. A shared haplotype across all localities in the D-loop provided probable confirmation for the Red Sea origin of the invasive population, and a number of introduced haplotypes indicated that the Mediterranean populations are a product of multiple invasion events. Finally, we observed large haplotype diversity in the Red Sea samples that were absent from the introduced localities, implying a possible future enforcement to the invasive genetic pool in the Mediterranean Sea.
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http://dx.doi.org/10.1080/24701394.2018.1482284 | DOI Listing |
Environ Sci Pollut Res Int
December 2024
Department of Chemistry and Biology "Adolfo Zambelli", University of Salerno, Via Giovanni Paolo II, 132, 84084, Fisciano, SA, Italy.
Anthropogenic pressures affect large stretches of Mediterranean coastal environments, determining alterations, including chemical pollution, able to impair ecosystem functioning and services. Among the pollutants of major concern for their toxicity and persistence, there are polycyclic aromatic hydrocarbons (PAHs), which can be effectively monitored through bioaccumulation approaches. However, the main biomonitor of PAHs in the Mediterranean Sea, Posidonia oceanica, is currently undergoing extensive regressions due to anthropogenic pressures, forcing the search for alternative biomonitors.
View Article and Find Full Text PDFToxins (Basel)
December 2024
Aix Marseille Univ, APHM, INSERM, IRD, SESSTIM, Hôpital Sainte Marguerite, Clinical Pharmacology and Poison Control Centre, 13274 Marseille, France.
Objective: In some regions of the globe, accidental food confusion regarding plants can cause severe poisoning events and deaths. The aim of this study was to report on those confusions from the Marseille Poison Control Centre's (PCC) experience from 2002 to 2023.
Results: Over 22 years, 2197 food confusion events were managed with 321 different species.
Mar Drugs
December 2024
G.B. Elyakov Pacific Institute of Bioorganic Chemistry, Far-Eastern Branch of the Russian Academy of Sciences, 690022 Vladivostok, Russia.
Liposomal drug delivery systems are successfully used in various fields of medicine for external and systemic applications. Marine organisms contain biologically active substances that have a unique structure and exhibit a wide range of biological activities. Polysaccharide of red seaweed (carrageenan (CRG)), and water-insoluble sea urchin pigment (echinochrome (Ech)) interact with each other and form a stable complex.
View Article and Find Full Text PDFMicrobiol Spectr
December 2024
National Center for Polar and Ocean Research, Ministry of Earth Sciences, Vasco-da-Gama, Goa, India.
Deep sea microbial communities play a significant role in global biogeochemical processes. However, the depth-wise metabolic potential of microbial communities in hydrothermally influenced Central Indian Ridge (CIR) and Southwest Indian Ridge (SWIR) remains elusive. In this study, a comprehensive functional microarray-based approach was used to understand factors influencing the metabolic potential of microbial communities and depth-driven differences in microbial functional gene composition in CIR and SWIR.
View Article and Find Full Text PDFFront Public Health
December 2024
Stansile Research Organization, Kigali, Rwanda.
Background: Rift Valley Fever (RVF) is a mosquito-borne zoonotic disease that poses a serious threat to both humans and livestock across various regions, particularly in Africa, the Arabian Peninsula, and parts of the Indian Ocean Islands. This study seeks to analyze the spatial and temporal distribution and trends of RVF outbreaks within the East African Community (EAC) countries, offering insights into the patterns and progression of these outbreaks in the region.
Methods: We conducted a retrospective analysis of the Program for Monitoring Emerging Diseases (ProMed), a digital, event-based disease surveillance system, to identify reports of outbreak events in Uganda, Kenya, Rwanda, Burundi, Tanzania, and South Sudan from 2010 to 2024.
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