Search results for " Molecular systematics"

showing 4 items of 4 documents

Species identification of the psammophilous tenebrionid beetles Phaleria acuminata Juster, 1852 and Phaleria bimaculata (Linnaeus, 1767) from central…

2013

Dominating global arid environments, from desert to coastal dunes, most Tenebrionidae are highly specific in their habitat preferences and display limited dispersal potential, thus exhibiting a remarkable degree of regional genetic and morphological differentiation. The tenebrionid genus Phaleria is speciose and widely distributed, with P. acuminata and P. bimaculata having a wide Mediterranean distribution, with numerous morphological differentiations at population level, often described as different taxa of doubtful taxonomical significance. In order to investigate the variability of the central Mediterranean populations of P. bimaculata and P. acuminata and to compare the results obtaine…

Mediterranean climateMorphometricsEcologyPhaleria bimaculataSettore BIO/05 - ZoologiaSandy beaches Phaleria spp. Central Mediterranean Species delimitation Molecular systematics Geometric morphometricsBiologyPhaleriabiology.organism_classificationTaxonGenusMolecular phylogeneticsBiological dispersalAnimal Science and ZoologyDevelopmental Biology
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Differences in gene flow in a twofold secondary contact zone of pond turtles in southern Italy (Testudines: Emydidae:Emys orbicularis galloitalica,E.…

2015

Using virtually range-wide sampling for three pond turtle taxa (Emys orbicularis galloitalica, E. o. hellenica, E. trinacris), we analyse gene flow across their southern Italian contact zone. Based on population genetic analyses of 15 highly polymorphic microsatellite loci and a mitochondrial marker, we show that the general genetic pattern matches well with the current taxon delimitation. Yet, single individuals with conflicting genetic identity suggest translocation of turtles by humans. In addition, we identify in south-western France and the vicinity of Rome populations being heavily impacted by introduced turtles. Cline analyses reveal that the major genetic break between E. o. galloit…

education.field_of_studybiologyEmys orbicularisEcologyPopulationSettore BIO/05 - ZoologiaZoologyCline (biology)EmydidaeSubspeciesbiology.organism_classificationGene flowIntergradationTaxonGeneticsAnimal Science and ZoologyeducationMolecular BiologyEcology Evolution Behavior and SystematicsEmys spp. Phylogeography Molecular systematics
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Molecular evolution of the metazoan protein kinase C multigene family

1996

Protein kinases C (PKCs) comprise closely related Ser/Thr kinases, ubiquitously present in animal tissues ; they respond to second messengers, e.g., Ca2+ and/or diacylglycerol, to express their activities. Two PKCs have been sequenced from Geodia cydonium, a member of the lowest multicellular animals, the sponges (Porifera). One sponge G. cydonium PKC, GCPKC1, belongs to the ''novel'' (Ca2+-independent) PKC (nPKC) subfamily while the second one, GCPKC2, has the hall-marks of the ''conventional'' (Ca2+-dependent) PKC (cPKC) subfamily. The alignment of the Ser/Thr catalytic kinase domains, of the predicted aa sequences for these cDNAs with respective segments from previously reported sequence…

SubfamilyMolecular Sequence DataProtein Serine-Threonine KinasesHomology (biology)CatalysisEvolution MolecularGeneticsAnimalssponges ; Geodia cydonium ; serine/threonine kinases ; phylogeny ; molecular systematics ; molecular evolutionAmino Acid SequenceMolecular BiologyEcology Evolution Behavior and SystematicsProtein kinase CPhylogenyProtein Kinase CGeneticsProtein-Serine-Threonine KinasesbiologyBase SequenceSequence Homology Amino AcidKinaseCyclin-dependent kinase 2PKCSCell biologyPoriferaenzymes and coenzymes (carbohydrates)Protein kinase domainMultigene Familybiology.proteinbiological phenomena cell phenomena and immunity
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Molecular systematics of two Mediterranean blenniid species from the genus Salaria (Perciformes, Blenniidae): Salaria basilisca and S. pavo

2016

SalariaMolecular SystematicsSettore BIO/05 - ZoologiaSalaria; Blenniidae; Molecular SystematicsBlenniidae
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