994 resultados para Pleistocene refuges


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Nucleotide sequence data from a mitochondrial gene (16S) and two nuclear genes (c-mos, RAG-1) were used to evaluate the monophyly of the genus Coleodactylus, to provide the first phylogenetic hypothesis of relationships among its species in a cladistic framework, and to estimate the relative timing, of species divergences. Maximum Parsimony, Maximum Likelihood and Bayesian analyses of the combined data sets retrieved Coleodactylus as a monophyletic genus, although weakly Supported. Species were recovered as two genetically and morphological distinct clades, with C. amazonicus populations forming the sister taxon to the meridionalis group (C. brachystoma, C. meridionalis, C. natalensis, and C. septentrionalis). Within this group, C. septentrionalis was placed as the sister taxon to a clade comprising the rest of the species, C. meridionalis was recovered as the sister species to C. brachystoma, and C natalensis was found nested within C. meridionalis. Divergence time estimates based on penalized likelihood and Bayesian dating methods do not Support the previous hypothesis based on the Quaternary rain forest fragmentation model proposed to explain the diversification of the genus. The basal cladogenic event between major lineages of Coleodactylus was estimated to have occurred in the late Cretaceous (72.6 +/- 1.77 Mya), approximately at the same point in time than the other genera of Sphaerodactylinae diverged from each other. Within the meridionalis group, the split between C. septentrionalis and C. brachystoma + C. meridionalis was placed in the Eocene (46.4 +/- 4.22 Mya), and the divergence between C. brachystoma and C. meridionalis was estimated to have occurred in the Oligocene (29.3 +/- 4.33 Mya). Most intraspecific cladogenesis occurred through Miocene to Pliocene, and only for two conspecific samples and for C. natalensis could a Quaternary differentiation be assumed (1.9 +/- 1.3 Mya). (C) 2008 Elsevier Inc. All rights reserved.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Mit dieser Arbeit wird am Beispiel der Gimpel der Gattung Pyrrhula (Aves: Fringillidae) eine vergleichende phylogenetische Methodik angewandt. Der dafür gewählte Untersuchungsansatz beinhaltet v.a. molekulargenetische und morphologische Methoden, deren Ergebnisse vor dem biogeographischen Hintergrund der Gattung analysiert werden. Diese Arbeit bestätigt die traditionelle Abgrenzung der Gimpel gegenüber den anderen Formen der Finkenfamilie. Die Gattung stellt eine monophyletische Gruppe dar und ist sowohl anhand molekulargenetischer als auch morphologischer Merkmale hervorragend umgrenzbar. Eine Vereinigung mit der Schwestergattung Pinicola ist demgegenüber nicht gerechtfertigt. Die mit klassischen Untersuchungsverfahren bestimmten Gruppierungen der Gattung lassen sich auch mit modernen Methoden bestätigen. Pyrrhula besteht aus drei Hauptverwandtschaftsgruppen: „Südostasiatische Gimpel“ (P. nipalensis und P. leucogenis), „Himalayagimpel“ (P. aurantiaca, P. erythaca, P. erythrocephala) und „Eurasische Gimpel“ (P. pyrrhula s.l.). Innerhalb von P. pyrrhula s.l. lassen sich drei genetisch und morphologisch unterschiedlich differenzierte Untergruppierungen mit eigenständige Merkmalskombinationen ausmachen: P. (p.) murina, P. (p.) cineracea und P. (p.) griseiventris. Das Entstehungszentrum von Pyrrhula befand sich vermutlich im südöstlichen Asien. Anhand der molekulargenetischen und biogeographischen Daten lassen sich ungefähre Ausbreitungs- und Diversifizierungsprozesse datieren. Vom Entstehungszentrum ging eine präpleistozäne Ausbreitungswelle aus, die die Aufspaltung der Stammlinienvertreter der Südostasiatischen Gimpel und später die der Himalayagimpel-Stammlinie zur Folge hatten. Etwa zeitgleich begann die Ausbreitung der Vorfahren der Eurasischen Gimpel bis ins westliche Südeuropa. Im frühen Pleistozän spalteten sich die Vorläufer des rezenten P. aurantica ab, gefolgt von der Trennung der südostasiatischen Stammlinie in die Vorfahren von P. nipalensis und P. leucogenis. Daraufhin folgten rasche spätpleistozäne Ausbreitungen und Diversifizierungen, die das Überdauern von Gimpeln in südostchinesischen bzw. mediterranen Glazialrefugien nahelegen. Dabei trennten sich die Stammlinien von P. erythrocephala und P. erythaca ungefähr gleichzeitig mit jenen der Stammlinien von P. pyrrhula s.str., P. (p.) murina und P. (p.) griseiventris. Die P. (p.) cineracea-Stammlinie folgte wiederum etwas später. Die Vorläufer der heutigen P. pyrrhula s.str. nahmen im späten Pleistozän mehrfach ostwärts gerichtete Ausbreitungen vor, während derer sie sich über weite Teile Eurasiens bis nach Kamtschatka verbreiteten. Die morphologischen Differenzierungen der einzelnen Formen wurden wahrscheinlich stark durch die geographischen Verhältnisse beeinflusst. Neben Isolationseffekten auf Inseln (murina) spielten vermutlich auch pleistozäne Refugialgebiete der Mandschurei und Japans für die Entstehung der heutigen griseiventris und das nordmongolische Refugium für cineracea eine große Rolle. Der gefiedermorphologische Geschlechtsmonomorphismus von P. nipalensis und P. leucogenis könnte dabei einen stammesgeschichtlich ancestralen Zustand darstellen, jener von murina ist dagegen sicher eine sekundäre Reduktionserscheinung. Auf Grundlage des Biospezieskonzeptes erlauben die erarbeiteten phylogenetischen Daten, die Gattung Pyrrhula entweder in sechs oder in neun Arten (inkl. zweier Superspezies) zu unterteilen. Der zahlenmäßige Unterschied entsteht dabei durch die unterschiedliche Klassifikation der Formen murina, cineracea und griseiventris, die entweder P. pyrrhula als Subspezies angeschlossen werden oder als Angehörige einer Superspezies P. [pyrrhula] Artrang erhalten.

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Aim Our aim was to clarify the lineage-level relationships for Melomys cervinipes and its close relatives and investigate whether the patterns of divergence observed for these wet-forest-restricted mammals may be associated with recognized biogeographical barriers. Location Mesic closed forest along the east coast of Australia, from north Queensland to mid-eastern New South Wales. Methods To enable rigorous phylogenetic reconstruction, divergence-date estimation and phylogeographical inference, we analysed DNA sequence and microsatellite data from 307 specimens across the complete distribution of M. cervinipes (45 localities). Results Three divergent genetic lineages were found within M. cervinipes, corresponding to geographically delineated northern, central and southern clades. Additionally, a fourth lineage, comprising M. rubicola and M. capensis, was identified and was most closely related to the northern M. cervinipes lineage. Secondary contact of the northern and central lineages was identified at one locality to the north of the Burdekin Gap. Main conclusions Contemporary processes of repeated habitat fragmentation and contraction, local extinction events and subsequent re-expansion across both small and large areas, coupled with the historical influence of the Brisbane Valley Barrier, the St Lawrence Gap and the Burdekin Gap, have contributed to the present phylogeographical structure within M. cervinipes. Our study highlights the need to sample close to the periphery of putative biogeographical barriers or risk missing vital phylogeographical information that may significantly alter the interpretation of biogeographical hypotheses.

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Marine sediments around volcanic islands contain an archive of volcaniclastic deposits, which can be used to reconstruct the volcanic history of an area. Such records hold many advantages over often incomplete terrestrial datasets. This includes the potential for precise and continuous dating of intervening sediment packages, which allow a correlatable and temporally-constrained stratigraphic framework to be constructed across multiple marine sediment cores. Here, we discuss a marine record of eruptive and mass-wasting events spanning ~250 ka offshore of Montserrat, using new data from IODP Expedition 340, as well as previously collected cores. By using a combination of high-resolution oxygen isotope stratigraphy, AMS radiocarbon dating, biostratigraphy of foraminifera and calcareous nannofossils and clast componentry, we identify five major events at Soufriere Hills volcano since 250 ka. Lateral correlation of these events across sediment cores collected offshore of the south and south west of Montserrat, have improved our understanding of the timing, extent and associations between events in this area. Correlations reveal that powerful and potentially erosive density-currents travelled at least 33 km offshore, and demonstrate that marine deposits, produced by eruption-fed and mass-wasting events on volcanic islands, are heterogeneous in their spatial distribution. Thus, multiple drilling/coring sites are needed to reconstruct the full chronostratigraphy of volcanic islands. This multidisciplinary study will be vital to interpreting the chaotic records of submarine landslides at other sites drilled during Expedition 340 and provides a framework that can be applied to the stratigraphic analysis of sediments surrounding other volcanic islands.

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We examine the structure and phylogeography of the pig-eye shark (Carcharhinus amboinensis) common in shallow coastal environments in northern Australia using two types of genetic markers, two mitochondrial (control region and NADH hydrogenase 4) and two nuclear (microsatellite and Rag 1) DNA. Two populations were defined within northern Australia on the basis of mitochondrial DNA evidence, but this result was not supported by nuclear microsatellite or Rag 1 markers. One possibility for this structure might be sex-specific behaviours such as female philopatry, although we argue it is doubtful that sufficient time has elapsed for any potential signatures from this behaviour to be expressed in nuclear markers. It is more likely that the observed pattern represents ancient populations repeatedly isolated and connected during episodic sea level changes during the Pleistocene epoch, until current day with restricted contemporary gene flow maintaining population genetic structure. Our results show the need for an understanding of both the history and ecology of a species in order to interpret patterns in genetic structure.

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The purpose of this study was to establish the palaeoenvironmental conditions during the late Quaternary in Murchisonfjorden, Nordaustlandet, based on foraminiferal assemblage compositions, and to determine the onset and termination of the Weichselian glaciations. The foraminiferal assemblage compositions were studied in marine sediments from three different archives, from sections next to the present shoreline in the Bay of Isvika, from a core in the Bay of Isvika and from a core from Lake Einstaken. OSL and AMS 14C age determinations were performed on samples from the three archives, and the results show deposition of marine sediments during ice-free periods of the Early Weichselian, the Middle Weichselian and the Late Weichselian, as well as during the Holocene in the investigated area. Marine sediments from the Early and Middle Weichselian were sampled from isostatically uplifted sections along the present shoreline.Sediments from the transition from the Late Weichselian to early Holocene time intervals were found in the bottom of the core from Lake Einstaken. Holocene sediments were investigated in the sections and in the core from the Bay of Isvika. The marine sediments from the sections are comprised of five benthic foraminiferal assemblages. The Early Weichselian is represented by two foraminiferal assemblages, the Middle Weichselian, the early and the late Holocene each by one. All five foraminiferal assemblages were deposited in glacier-distal shallow-water environments, which had a connection to the open ocean. Changes in the composition of the assemblages can be ascribed to differences in the bottom-water currents and changes in the salinity. The Middle Weichselian assemblage is of special importance, because it is the first foraminiferal assemblage to be described from this time interval from Svalbard. Four benthic foraminiferal assemblages were deposited shortly before the marine to lacustrine transition at the boundary between the Late Weichselian and Holocene in Lake Einstaken. The foraminiferal assemblages show a change from a high-arctic, normal marine shallow-water environment to an even shallower environment with highly fluctuating salinity. The analyses of the core from 100 m water depth in the Bay of Isvika resulted in the determination of four foraminiferal assemblages. These indicated changes from a glacier-proximal environment during deglaciation, to a more glacier-distal environment during the Early Holocene. This was followed by a period with a marked change to a considerably cooler environment and finally to a closed fjord environment in the middle and late Holocene times. Additional sedimentological analyses of the marine and glacially derived sediments from the uplifted sections, as well as observations of multiple striae on the bedrock, observations of deeply weathered bedrock and findings of tills interlayered with marine sediments complete the investigations in the study area. They indicate weak glacial erosion in the study area. It can be concluded that marine deposition occurred in the investigated area during three time intervals in the Weichselian and during most of the Holocene. The foraminiferal assemblages in the Holocene are characterized by a transition from glacier-proximal to glacier-distal faunas. The palaeogeographical change from an open fjord to a closed fjord environment is a result of the isostatic uplift of the area after the LGM and is clearly reflected in the foraminiferal assemblages. Another influencing factor on the foraminiferal assemblage composition are changes in the inflow of warmer Atlantic waters to the study area.