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1.
PLoS One ; 18(7): e0287977, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-37467197

RESUMO

Footprints of human activities identified in the sedimentary sequence of submerged historical saltpans can reveal the history of the site and can indicate the relative sea level during its operational period. Saltpans are man-made constructions used continuously for salt production in the Mediterranean at least for the last 2000 years. The east Adriatic coast contains many such submerged remains, preserved and well-dated by historical archives. Sedimentological, microfossil and geochemical analyses of the sediments from cores drilled in the saltwork area at Brbinj, Dugi Otok, Croatia, enable the reconstruction of various past environmental conditions. The current study aims to: a) identify the anthropogenic unit in the sedimentary sequence deposited over time, b) determine its age, and c) use it as past sea-level limiting points. Basal units made of terra rossa soil materials were identified in the sedimentary records. These layers are located -120 ±7 cm below mean sea level next to the separation wall and -125 ±7 cm and -135 ±7 cm, respectively, in the inner pools, most likely representing a man-made pavement. The terra rossa layer is overlaid by a unit rich in faunal remains dominated by euryhaline foraminifera and ostracod species such as Ammonia veneta and Cyprideis torosa, representing the saltworks unit. The flooding of the saltpans by the rising sea is manifested by the deposition of an upper sedimentary unit dominated by remains of marine species. The base and the top of the saltwork unit are dated by Optically Stimulated Luminescence to 1040±50 CE and to 1390±30 CE, respectively. The study presents a new approach for obtaining footprints of human activities in ancient, submerged saltpans, by identifying and dating the indicative anthropogenic layers and using these for the reconstruction of paleo sea-level. The described method can be applied all around the Mediterranean.


Assuntos
Foraminíferos , Sedimentos Geológicos , Humanos , Sedimentos Geológicos/análise , Croácia , Monitoramento Ambiental
2.
Sci Data ; 10(1): 354, 2023 06 03.
Artigo em Inglês | MEDLINE | ID: mdl-37270659

RESUMO

Planktonic Foraminifera are unique paleo-environmental indicators through their excellent fossil record in ocean sediments. Their distribution and diversity are affected by different environmental factors including anthropogenically forced ocean and climate change. Until now, historical changes in their distribution have not been fully assessed at the global scale. Here we present the FORCIS (Foraminifera Response to Climatic Stress) database on foraminiferal species diversity and distribution in the global ocean from 1910 until 2018 including published and unpublished data. The FORCIS database includes data collected using plankton tows, continuous plankton recorder, sediment traps and plankton pump, and contains ~22,000, ~157,000, ~9,000, ~400 subsamples, respectively (one single plankton aliquot collected within a depth range, time interval, size fraction range, at a single location) from each category. Our database provides a perspective of the distribution patterns of planktonic Foraminifera in the global ocean on large spatial (regional to basin scale, and at the vertical scale), and temporal (seasonal to interdecadal) scales over the past century.


Assuntos
Foraminíferos , Censos , Mudança Climática , Oceanos e Mares , Plâncton
3.
Eur J Protistol ; 85: 125911, 2022 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-35988528

RESUMO

The foraminiferal order Carterinida is characterized by agglutinated tests consisting of calcareous spicules. Four species have so far been described from the tropical Pacific and the Caribbean Sea. We report here the first occurrence of Carterina from the Southeastern Levantine Shelf of the Mediterranean Sea. Based on molecular and morphological results, we describe Carterina labinea sp. nov., which is characterized by a trochospiral test with a conical, tapered spiral side and a concave umbilical side. The test is composed of elongate fusiform calcareous spicules. Tests have a mean diameter of 720 µm, which is twice the vertical height, and spicules vary in length and width from 112/15 µm to 73/14 µm. Our results show that the genus Carterina extends its distribution beyond tropical Seas and might be more widely distributed than previously thought. Moreover, the appearance of the new species in the study area suggests it is a new colonizer as continuous biomonitoring studies in the area show that it is absent in sediment samples taken before 2020. Our results highlight the importance of ongoing monitoring programs in high-risk basins such as the Levantine to gain more information about the biodiversity changes and improve environmental conservation of Eastern Mediterranean littoral areas progressively colonized by tropical species.


Assuntos
Foraminíferos , Espécies Introduzidas , Biodiversidade , Mar Mediterrâneo
4.
Data Brief ; 35: 106920, 2021 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-33748362

RESUMO

We gathered total organic carbon (%) and relative abundances of benthic foraminifera in intertidal areas and transitional waters from the English Channel/European Atlantic Coast (587 samples) and the Mediterranean Sea (301 samples) regions from published and unpublished datasets. This database allowed to calculate total organic carbon optimum and tolerance range of benthic foraminifera in order to assign them to ecological groups of sensitivity. Optima and tolerance range were obtained by mean of the weighted-averaging method. The data are related to the research article titled "Indicative value of benthic foraminifera for biomonitoring: assignment to ecological groups of sensitivity to total organic carbon of species from European intertidal areas and transitional waters" [1].

5.
Mar Pollut Bull ; 164: 112071, 2021 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-33549924

RESUMO

This work contributes to the ongoing work aiming at confirming benthic foraminifera as a biological quality element. In this study, benthic foraminifera from intertidal and transitional waters from the English Channel/European Atlantic coast and the Mediterranean Sea were assigned to five ecological groups using the weighted-averaging optimum with respect to TOC of each species. It was however not possible to assign typical salt marsh species due to the presence of labile and refractory organic matter that hampers TOC characterization. Tests of this study species' lists with Foram-AMBI on two independent datasets showed a significant correlation between Foram-AMBI and TOC, confirming the strong relation between foraminifera and TOC. For one of the validation datasets, associated macrofaunal data were available and a significant correlation was found between the foraminiferal Foram-AMBI and the macrofaunal AMBI. The here proposed lists should be further tested with sensitivity-based indices in different European regional settings.


Assuntos
Foraminíferos , Monitoramento Biológico , Carbono , Monitoramento Ambiental , Sedimentos Geológicos , Mar Mediterrâneo
6.
Sci Rep ; 7: 44615, 2017 03 20.
Artigo em Inglês | MEDLINE | ID: mdl-28317847

RESUMO

Paleoenvironmental records from a southern California coastal saltmarsh reveal evidence for repeated late Holocene coseismic subsidence events. Field analysis of sediment gouge cores established discrete lithostratigraphic units extend across the wetland. Detailed sediment analyses reveal abrupt changes in lithology, percent total organic matter, grain size, and magnetic susceptibility. Microfossil analyses indicate that predominantly freshwater deposits bury relic intertidal deposits at three distinct depths. Radiocarbon dating indicates that the three burial events occurred in the last 2000 calendar years. Two of the three events are contemporaneous with large-magnitude paleoearthquakes along the Newport-Inglewood/Rose Canyon fault system. From these data, we infer that during large magnitude earthquakes a step-over along the fault zone results in the vertical displacement of an approximately 5-km2 area that is consistent with the footprint of an estuary identified in pre-development maps. These findings provide insight on the evolution of the saltmarsh, coseismic deformation and earthquake recurrence in a wide area of southern California, and sensitive habitat already threatened by eustatic sea level rise.

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