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      Deep genetic divergence in the Southern kingcroaker Menticirrhus americanus in its southernmost distribution

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          Marine biodiversity: Patterns, threats and conservation needs.

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            Fine-scale genetic structure, estuarine colonization and incipient speciation in the marine silverside fish Odontesthes argentinensis.

            The identification of incipient ecological species represents an opportunity to investigate current evolutionary process where adaptive divergence and reproductive isolation are associated. In this study we analysed the genetic structure of marine and estuarine populations of the silverside fish Odontesthes argentinensis using nine microsatellite loci and 396 bp of the mitochondrial DNA (mtDNA) control region. Our main objective was to investigate the relationship among estuarine colonization, divergent selection and speciation in silversides. Significant genetic structure was detected among all marine and estuarine populations. Despite the low phylogeographic structure in mtDNA haplotypes, there was clear signal of local radiations of haplotypes in more ancient populations. Divergence among marine populations was interpreted as a combined result of homing behaviour, isolation by distance and drift. On the other hand, ecological shifts due to the colonization of estuarine habitats seem to have promoted rapid adaptive divergence and reproductive isolation in estuarine populations, which were considered as incipient ecological species. This conclusion is supported by the existence of a set of environmental factors required for successful reproduction of estuarine ecotypes. The pattern of genetic structure indicates that phenotypic and reproductive divergence evolved in the face of potential gene flow between populations. We suggest that the 'divergence-with-gene-flow' model of speciation may account for the diversification of estuarine populations. The approach used can potentially identify 'incipient estuarine species', being relevant to the investigation of the evolutionary relationships of silversides in several coastal regions of the world.
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              Isolation by environmental distance in mobile marine species: molecular ecology of franciscana dolphins at their southern range.

              The assessment of population structure is a valuable tool for studying the ecology of endangered species and drafting conservation strategies. As we enhance our understanding about the structuring of natural populations, it becomes important that we also understand the processes behind these patterns. However, there are few rigorous assessments of the influence of environmental factors on genetic patterns in mobile marine species. Given their dispersal capabilities and localized habitat preferences, coastal cetaceans are adequate study species for evaluating environmental effects on marine population structure. The franciscana dolphin, a rare coastal cetacean endemic to the Western South Atlantic, was studied to examine these issues. We analysed genetic data from the mitochondrial DNA and 12 microsatellite markers for 275 franciscana samples utilizing frequency-based, maximum-likelihood and Bayesian algorithms to assess population structure and migration patterns. This information was combined with 10 years of remote sensing environmental data (chlorophyll concentration, water turbidity and surface temperature). Our analyses show the occurrence of genetically isolated populations within Argentina, in areas that are environmentally distinct. Combined evidence of genetic and environmental structure suggests that isolation by distance and a process here termed isolation by environmental distance can explain the observed correlations. Our approach elucidated important ecological and conservation aspects of franciscana dolphins, and has the potential to increase our understanding of ecological processes influencing genetic patterns in other marine species.
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                Author and article information

                Contributors
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Journal
                bjoce
                Brazilian Journal of Oceanography
                Braz. j. oceanogr.
                Universidade de São Paulo, Instituto Oceanográfico (São Paulo, SP, Brazil )
                1982-436X
                September 2017
                : 65
                : 3
                : 515-519
                Affiliations
                [1] Montevideo Montevideo orgnameUniversidad de la República orgdiv1Facultad de Ciencias orgdiv2UMEB-NSAT Uruguay
                [3] Montevideo orgnameDINARA-MGAP orgdiv1Laboratorio de Genética Uruguay
                [4] Rio de Janeiro Rio de Janeiro orgnameUniversidade do Estado do Rio de Janeiro orgdiv1Laboratório de Genética Pesqueira e da Conservação Brazil
                [5] Montevideo Montevideo orgnameUniversidad de la República orgdiv1Facultad de Ciencias orgdiv2Departamento de Ecología y Evolución Uruguay
                [2] Rio de Janeiro Rio de Janeiro orgnameUniversidade Federal do Rio de Janeiro orgdiv1Laboratório de Biodiversidade Molecular Brazil
                Article
                S1679-87592017000300515
                10.1590/s1679-87592017140406503
                35d26cca-a820-40a5-9acb-08a6e54f4527

                This work is licensed under a Creative Commons Attribution 4.0 International License.

                History
                : 11 May 2017
                : 28 October 2016
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 25, Pages: 5
                Product

                SciELO Brazil


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