Articles | Volume 38, issue 1
https://doi.org/10.5194/jm-38-55-2019
© Author(s) 2019. This work is distributed under
the Creative Commons Attribution 4.0 License.
the Creative Commons Attribution 4.0 License.
https://doi.org/10.5194/jm-38-55-2019
© Author(s) 2019. This work is distributed under
the Creative Commons Attribution 4.0 License.
the Creative Commons Attribution 4.0 License.
Where should we draw the lines between dinocyst “species”? Morphological continua in Black Sea dinocysts
Thomas M. Hoyle
CORRESPONDING AUTHOR
Department of Earth Sciences, Utrecht University, Utrecht, 3584 CB,
the Netherlands
Manuel Sala-Pérez
BRIDGE, School of Geographical Sciences and Cabot Institute,
University of Bristol, Bristol, BS8 1SS, UK
Francesca Sangiorgi
Department of Earth Sciences, Utrecht University, Utrecht, 3584 CB,
the Netherlands
Related authors
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Yord W. Yedema, Timme Donders, Francien Peterse, and Francesca Sangiorgi
J. Micropalaeontol., 42, 257–276, https://doi.org/10.5194/jm-42-257-2023, https://doi.org/10.5194/jm-42-257-2023, 2023
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The pollen and dinoflagellate cyst content of 21 surface sediments from the northern Gulf of Mexico is used to test the applicability of three palynological ratios (heterotroph/autotroph, pollen/dinocyst, and pollen/bisaccate ratio) as proxies for marine productivity and distance to the coast/river. Redundancy analysis confirms the suitability of these three ratios, where the H/A ratio can be used as an indicator of primary production, and the P/B ratio best tracks the distance to the coast.
Frida S. Hoem, Adrián López-Quirós, Suzanna van de Lagemaat, Johan Etourneau, Marie-Alexandrine Sicre, Carlota Escutia, Henk Brinkhuis, Francien Peterse, Francesca Sangiorgi, and Peter K. Bijl
Clim. Past, 19, 1931–1949, https://doi.org/10.5194/cp-19-1931-2023, https://doi.org/10.5194/cp-19-1931-2023, 2023
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We present two new sea surface temperature (SST) records in comparison with available SST records to reconstruct South Atlantic paleoceanographic evolution. Our results show a low SST gradient in the Eocene–early Oligocene due to the persistent gyral circulation. A higher SST gradient in the Middle–Late Miocene infers a stronger circumpolar current. The southern South Atlantic was the coldest region in the Southern Ocean and likely the main deep-water formation location in the Middle Miocene.
Lena Mareike Thöle, Peter Dirk Nooteboom, Suning Hou, Rujian Wang, Senyan Nie, Elisabeth Michel, Isabel Sauermilch, Fabienne Marret, Francesca Sangiorgi, and Peter Kristian Bijl
J. Micropalaeontol., 42, 35–56, https://doi.org/10.5194/jm-42-35-2023, https://doi.org/10.5194/jm-42-35-2023, 2023
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Dinoflagellate cysts can be used to infer past oceanographic conditions in the Southern Ocean. This requires knowledge of their present-day ecologic affinities. We add 66 Antarctic-proximal surface sediment samples to the Southern Ocean data and derive oceanographic conditions at those stations. Dinoflagellate cysts are clearly biogeographically separated along latitudinal gradients of temperature, sea ice, nutrients, and salinity, which allows us to reconstruct these parameters for the past.
Suning Hou, Foteini Lamprou, Frida S. Hoem, Mohammad Rizky Nanda Hadju, Francesca Sangiorgi, Francien Peterse, and Peter K. Bijl
Clim. Past, 19, 787–802, https://doi.org/10.5194/cp-19-787-2023, https://doi.org/10.5194/cp-19-787-2023, 2023
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Neogene climate cooling is thought to be accompanied by increased Equator-to-pole temperature gradients, but mid-latitudes are poorly represented. We use biomarkers to reconstruct a 23 Myr continuous sea surface temperature record of the mid-latitude Southern Ocean. We note a profound mid-latitude cooling which narrowed the latitudinal temperature gradient with the northward expansion of subpolar conditions. We surmise that this reflects the strengthening of the ACC and the expansion of sea ice.
Yord W. Yedema, Francesca Sangiorgi, Appy Sluijs, Jaap S. Sinninghe Damsté, and Francien Peterse
Biogeosciences, 20, 663–686, https://doi.org/10.5194/bg-20-663-2023, https://doi.org/10.5194/bg-20-663-2023, 2023
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Terrestrial organic matter (TerrOM) is transported to the ocean by rivers, where its burial can potentially form a long-term carbon sink. This burial is dependent on the type and characteristics of the TerrOM. We used bulk sediment properties, biomarkers, and palynology to identify the dispersal patterns of plant-derived, soil–microbial, and marine OM in the northern Gulf of Mexico and show that plant-derived OM is transported further into the coastal zone than soil and marine-produced TerrOM.
Carolien M. H. van der Weijst, Koen J. van der Laan, Francien Peterse, Gert-Jan Reichart, Francesca Sangiorgi, Stefan Schouten, Tjerk J. T. Veenstra, and Appy Sluijs
Clim. Past, 18, 1947–1962, https://doi.org/10.5194/cp-18-1947-2022, https://doi.org/10.5194/cp-18-1947-2022, 2022
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The TEX86 proxy is often used by paleoceanographers to reconstruct past sea-surface temperatures. However, the origin of the TEX86 signal in marine sediments has been debated since the proxy was first proposed. In our paper, we show that TEX86 carries a mixed sea-surface and subsurface temperature signal and should be calibrated accordingly. Using our 15-million-year record, we subsequently show how a TEX86 subsurface temperature record can be used to inform us on past sea-surface temperatures.
Carolien M. H. van der Weijst, Josse Winkelhorst, Wesley de Nooijer, Anna von der Heydt, Gert-Jan Reichart, Francesca Sangiorgi, and Appy Sluijs
Clim. Past, 18, 961–973, https://doi.org/10.5194/cp-18-961-2022, https://doi.org/10.5194/cp-18-961-2022, 2022
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A hypothesized link between Pliocene (5.3–2.5 million years ago) global climate and tropical thermocline depth is currently only backed up by data from the Pacific Ocean. In our paper, we present temperature, salinity, and thermocline records from the tropical Atlantic Ocean. Surprisingly, the Pliocene thermocline evolution was remarkably different in the Atlantic and Pacific. We need to reevaluate the mechanisms that drive thermocline depth, and how these are tied to global climate change.
Frida S. Hoem, Isabel Sauermilch, Suning Hou, Henk Brinkhuis, Francesca Sangiorgi, and Peter K. Bijl
J. Micropalaeontol., 40, 175–193, https://doi.org/10.5194/jm-40-175-2021, https://doi.org/10.5194/jm-40-175-2021, 2021
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We use marine microfossil (dinocyst) assemblage data as well as seismic and tectonic investigations to reconstruct the oceanographic history south of Australia 37–20 Ma as the Tasmanian Gateway widens and deepens. Our results show stable conditions with typically warmer dinocysts south of Australia, which contrasts with the colder dinocysts closer to Antarctica, indicating the establishment of modern oceanographic conditions with a strong Southern Ocean temperature gradient and frontal systems.
Frida S. Hoem, Luis Valero, Dimitris Evangelinos, Carlota Escutia, Bella Duncan, Robert M. McKay, Henk Brinkhuis, Francesca Sangiorgi, and Peter K. Bijl
Clim. Past, 17, 1423–1442, https://doi.org/10.5194/cp-17-1423-2021, https://doi.org/10.5194/cp-17-1423-2021, 2021
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We present new offshore palaeoceanographic reconstructions for the Oligocene (33.7–24.4 Ma) in the Ross Sea, Antarctica. Our study of dinoflagellate cysts and lipid biomarkers indicates warm-temperate sea surface conditions. We posit that warm surface-ocean conditions near the continental shelf during the Oligocene promoted increased precipitation and heat delivery towards Antarctica that led to dynamic terrestrial ice sheet volumes in the warmer climate state of the Oligocene.
Appy Sluijs, Joost Frieling, Gordon N. Inglis, Klaas G. J. Nierop, Francien Peterse, Francesca Sangiorgi, and Stefan Schouten
Clim. Past, 16, 2381–2400, https://doi.org/10.5194/cp-16-2381-2020, https://doi.org/10.5194/cp-16-2381-2020, 2020
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We revisit 15-year-old reconstructions of sea surface temperatures in the Arctic Ocean for the late Paleocene and early Eocene epochs (∼ 57–53 million years ago) based on the distribution of fossil membrane lipids of archaea preserved in Arctic Ocean sediments. We find that improvements in the methods over the past 15 years do not lead to different results. However, data quality is now higher and potential biases better characterized. Results confirm remarkable Arctic warmth during this time.
Carolien Maria Hendrina van der Weijst, Josse Winkelhorst, Anna von der Heydt, Gert-Jan Reichart, Francesca Sangiorgi, and Appy Sluijs
Clim. Past Discuss., https://doi.org/10.5194/cp-2020-105, https://doi.org/10.5194/cp-2020-105, 2020
Manuscript not accepted for further review
Julian D. Hartman, Peter K. Bijl, and Francesca Sangiorgi
J. Micropalaeontol., 37, 445–497, https://doi.org/10.5194/jm-37-445-2018, https://doi.org/10.5194/jm-37-445-2018, 2018
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We present an extensive overview of the organic microfossil remains found at Site U1357, Adélie Basin, East Antarctica. The organic microfossil remains are exceptionally well preserved and are derived from unicellular as well as higher organisms. We provide a morphological description, photographic images, and a discussion of the ecological preferences of the biological species from which the organic remains were derived.
Julian D. Hartman, Francesca Sangiorgi, Ariadna Salabarnada, Francien Peterse, Alexander J. P. Houben, Stefan Schouten, Henk Brinkhuis, Carlota Escutia, and Peter K. Bijl
Clim. Past, 14, 1275–1297, https://doi.org/10.5194/cp-14-1275-2018, https://doi.org/10.5194/cp-14-1275-2018, 2018
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We reconstructed sea surface temperatures for the Oligocene and Miocene periods (34–11 Ma) based on archaeal lipids from a site close to the Wilkes Land coast, Antarctica. Our record suggests generally warm to temperate surface waters: on average 17 °C. Based on the lithology, glacial and interglacial temperatures could be distinguished, showing an average 3 °C offset. The long-term temperature trend resembles the benthic δ18O stack, which may have implications for ice volume reconstructions.
Peter K. Bijl, Alexander J. P. Houben, Julian D. Hartman, Jörg Pross, Ariadna Salabarnada, Carlota Escutia, and Francesca Sangiorgi
Clim. Past, 14, 1015–1033, https://doi.org/10.5194/cp-14-1015-2018, https://doi.org/10.5194/cp-14-1015-2018, 2018
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We document Southern Ocean surface ocean conditions and changes therein during the Oligocene and Miocene (34–10 Myr ago). We infer profound long-term and short-term changes in ice-proximal oceanographic conditions: sea surface temperature, nutrient conditions and sea ice. Our results point to warm-temperate, oligotrophic, ice-proximal oceanographic conditions. These distinct oceanographic conditions may explain the high amplitude in inferred Oligocene–Miocene Antarctic ice volume changes.
Ariadna Salabarnada, Carlota Escutia, Ursula Röhl, C. Hans Nelson, Robert McKay, Francisco J. Jiménez-Espejo, Peter K. Bijl, Julian D. Hartman, Stephanie L. Strother, Ulrich Salzmann, Dimitris Evangelinos, Adrián López-Quirós, José Abel Flores, Francesca Sangiorgi, Minoru Ikehara, and Henk Brinkhuis
Clim. Past, 14, 991–1014, https://doi.org/10.5194/cp-14-991-2018, https://doi.org/10.5194/cp-14-991-2018, 2018
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Here we reconstruct ice sheet and paleoceanographic configurations in the East Antarctic Wilkes Land margin based on a multi-proxy study conducted in late Oligocene (26–25 Ma) sediments from IODP Site U1356. The new obliquity-forced glacial–interglacial sedimentary model shows that, under the high CO2 values of the late Oligocene, ice sheets had mostly retreated to their terrestrial margins and the ocean was very dynamic with shifting positions of the polar fronts and associated water masses.
Timme H. Donders, Niels A. G. M. van Helmond, Roel Verreussel, Dirk Munsterman, Johan ten Veen, Robert P. Speijer, Johan W. H. Weijers, Francesca Sangiorgi, Francien Peterse, Gert-Jan Reichart, Jaap S. Sinninghe Damsté, Lucas Lourens, Gesa Kuhlmann, and Henk Brinkhuis
Clim. Past, 14, 397–411, https://doi.org/10.5194/cp-14-397-2018, https://doi.org/10.5194/cp-14-397-2018, 2018
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The buildup and melting of ice during the early glaciations in the Northern Hemisphere, around 2.5 million years ago, were far shorter in duration than during the last million years. Based on molecular compounds and microfossils from sediments dating back to the early glaciations we show that the temperature on land and in the sea changed simultaneously and was a major factor in the ice buildup in the Northern Hemisphere. These data provide key insights into the dynamics of early glaciations.
Peter K. Bijl, Alexander J. P. Houben, Anja Bruls, Jörg Pross, and Francesca Sangiorgi
J. Micropalaeontol., 37, 105–138, https://doi.org/10.5194/jm-37-105-2018, https://doi.org/10.5194/jm-37-105-2018, 2018
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In order to use ocean sediments as a recorder of past oceanographic changes, a critical first step is to stratigraphically date the sediments. The absence of microfossils with known stratigraphic ranges has always hindered dating of Southern Ocean sediments. Here we tie dinocyst ranges to the international timescale in a well-dated sediment core from offshore Antarctica. With this, we can now use dinocysts as a biostratigraphic tool in otherwise stratigraphically poorly dated sediments.
Stephanie L. Strother, Ulrich Salzmann, Francesca Sangiorgi, Peter K. Bijl, Jörg Pross, Carlota Escutia, Ariadna Salabarnada, Matthew J. Pound, Jochen Voss, and John Woodward
Biogeosciences, 14, 2089–2100, https://doi.org/10.5194/bg-14-2089-2017, https://doi.org/10.5194/bg-14-2089-2017, 2017
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One of the main challenges in Antarctic vegetation reconstructions is the uncertainty in unambiguously identifying reworked pollen and spore assemblages in marine sedimentary records influenced by waxing and waning ice sheets. This study uses red fluorescence and digital imaging as a new tool to identify reworking in a marine sediment core from circum-Antarctic waters to reconstruct Cenozoic climate change and vegetation with high confidence.
Related subject area
Palynology
Palsys.org: an open-access taxonomic and stratigraphic database of organic-walled dinoflagellate cysts
Miocene Climatic Optimum fungal record and plant-based CREST climatic reconstruction from southern McMurdo Sound, Antarctica
Dinoflagellate cyst and pollen assemblages as tracers for marine productivity and river input in the northern Gulf of Mexico
An expanded database of Southern Hemisphere surface sediment dinoflagellate cyst assemblages and their oceanographic affinities
Late Eocene–early Miocene evolution of the southern Australian subtropical front: a marine palynological approach
Desmocysta hadra, a new Late Cretaceous dinoflagellate cyst species: stratigraphic range, palaeogeographic distribution and palaeoecology
New species of the dinoflagellate cyst genus Svalbardella Manum, 1960, emend. from the Paleogene and Neogene of the northern high to middle latitudes
Organic-walled dinoflagellate cyst biostratigraphy of the upper Eocene to lower Oligocene Yazoo Formation, US Gulf Coast
Early Oligocene dinocysts as a tool for palaeoenvironment reconstruction and stratigraphical framework – a case study from a North Sea well
Chemotaxonomy of domesticated grasses: a pathway to understanding the origins of agriculture
Record of Early to Middle Eocene paleoenvironmental changes from lignite mines, western India
A review of the ecological affinities of marine organic microfossils from a Holocene record offshore of Adélie Land (East Antarctica)
Stratigraphic calibration of Oligocene–Miocene organic-walled dinoflagellate cysts from offshore Wilkes Land, East Antarctica, and a zonation proposal
Peter K. Bijl and Henk Brinkhuis
J. Micropalaeontol., 42, 309–314, https://doi.org/10.5194/jm-42-309-2023, https://doi.org/10.5194/jm-42-309-2023, 2023
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We developed an online, open-access database for taxonomic descriptions, stratigraphic information and images of organic-walled dinoflagellate cyst species. With this new resource for applied and academic research, teaching and training, we open up organic-walled dinoflagellate cysts for the academic era of open science. We expect that palsys.org represents a starting point to improve taxonomic concepts, and we invite the community to contribute.
Mallory Pilie, Martha E. Gibson, Ingrid C. Romero, Noelia B. Nuñez Otaño, Matthew J. Pound, Jennifer M. K. O'Keefe, and Sophie Warny
J. Micropalaeontol., 42, 291–307, https://doi.org/10.5194/jm-42-291-2023, https://doi.org/10.5194/jm-42-291-2023, 2023
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The ANDRILL SMS site provides the first Middle Miocene Antarctic fungal record. The CREST plant-based paleoclimate reconstructions confirm an intensification of the hydrological cycle during the MCO, with the Ross Sea region reconstructed 279 % wetter than modern conditions and a maximum mean annual temperature of 10.3 °C for the warmest intervals of the MCO. The plant-based reconstructions indicate a temperate, no dry season with a warm summer (Cfb) Köppen–Geiger climate classification.
Yord W. Yedema, Timme Donders, Francien Peterse, and Francesca Sangiorgi
J. Micropalaeontol., 42, 257–276, https://doi.org/10.5194/jm-42-257-2023, https://doi.org/10.5194/jm-42-257-2023, 2023
Short summary
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The pollen and dinoflagellate cyst content of 21 surface sediments from the northern Gulf of Mexico is used to test the applicability of three palynological ratios (heterotroph/autotroph, pollen/dinocyst, and pollen/bisaccate ratio) as proxies for marine productivity and distance to the coast/river. Redundancy analysis confirms the suitability of these three ratios, where the H/A ratio can be used as an indicator of primary production, and the P/B ratio best tracks the distance to the coast.
Lena Mareike Thöle, Peter Dirk Nooteboom, Suning Hou, Rujian Wang, Senyan Nie, Elisabeth Michel, Isabel Sauermilch, Fabienne Marret, Francesca Sangiorgi, and Peter Kristian Bijl
J. Micropalaeontol., 42, 35–56, https://doi.org/10.5194/jm-42-35-2023, https://doi.org/10.5194/jm-42-35-2023, 2023
Short summary
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Dinoflagellate cysts can be used to infer past oceanographic conditions in the Southern Ocean. This requires knowledge of their present-day ecologic affinities. We add 66 Antarctic-proximal surface sediment samples to the Southern Ocean data and derive oceanographic conditions at those stations. Dinoflagellate cysts are clearly biogeographically separated along latitudinal gradients of temperature, sea ice, nutrients, and salinity, which allows us to reconstruct these parameters for the past.
Frida S. Hoem, Isabel Sauermilch, Suning Hou, Henk Brinkhuis, Francesca Sangiorgi, and Peter K. Bijl
J. Micropalaeontol., 40, 175–193, https://doi.org/10.5194/jm-40-175-2021, https://doi.org/10.5194/jm-40-175-2021, 2021
Short summary
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We use marine microfossil (dinocyst) assemblage data as well as seismic and tectonic investigations to reconstruct the oceanographic history south of Australia 37–20 Ma as the Tasmanian Gateway widens and deepens. Our results show stable conditions with typically warmer dinocysts south of Australia, which contrasts with the colder dinocysts closer to Antarctica, indicating the establishment of modern oceanographic conditions with a strong Southern Ocean temperature gradient and frontal systems.
Manuel Vieira and Salih Mahdi
J. Micropalaeontol., 39, 155–167, https://doi.org/10.5194/jm-39-155-2020, https://doi.org/10.5194/jm-39-155-2020, 2020
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This paper describes a new species of the genus Desmocysta from the Late Cretaceous in the Norwegian Sea. The short stratigraphic range for this new species makes it a good biostratigraphic marker. The available published data also indicate that this genus is restricted to higher latitudes in the Northern Hemisphere and is suggested to have preferred turbid waters and stressed marine environments.
Kasia K. Śliwińska and Martin J. Head
J. Micropalaeontol., 39, 139–154, https://doi.org/10.5194/jm-39-139-2020, https://doi.org/10.5194/jm-39-139-2020, 2020
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We described two new species of the fossil dinoflagellate cyst genus Svalbardella. S. clausii sp. nov. has a narrow range in the lowermost Chattian and may be related to cooler surface waters. S. kareniae sp. nov. ranges from Lower Oligocene to Lower Miocene and favours more open marine conditions.
Our study illustrates the close phylogenetic relationship between Svalbardella and Palaeocystodinium and shows that surface ornamentation and the tabulation are variable features within both genera.
Marcelo Augusto De Lira Mota, Guy Harrington, and Tom Dunkley Jones
J. Micropalaeontol., 39, 1–26, https://doi.org/10.5194/jm-39-1-2020, https://doi.org/10.5194/jm-39-1-2020, 2020
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New high-resolution microfossil record from a clay succession in the US Gulf Coastal Plain reveal more accurate age estimates for the critical Eocene–Oligocene transition (EOT), a global climate event marked by the rapid expansion of the first permanent Antarctic ice sheet 34 million years ago. These data suggest a coeval major increase in sedimentation rate. Future isotopic and palaeoecological work on this core can be more precisely integrated with other global records of the EOT.
Kasia K. Śliwińska
J. Micropalaeontol., 38, 143–176, https://doi.org/10.5194/jm-38-143-2019, https://doi.org/10.5194/jm-38-143-2019, 2019
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This study provides an age model based on dinocysts for the early Oligocene succession from the North Sea. The changes in the dinocysts assemblage show that the succession was deposited in a proximal and dynamic environment. Furthermore, the results suggests that the early icehouse climate played an important role in the depositional development of the Oligocene succession in the North Sea basin.
Phillip E. Jardine, William D. Gosling, Barry H. Lomax, Adele C. M. Julier, and Wesley T. Fraser
J. Micropalaeontol., 38, 83–95, https://doi.org/10.5194/jm-38-83-2019, https://doi.org/10.5194/jm-38-83-2019, 2019
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Many major food crops, including rice, wheat, maize, rye, barley, oats and millet, are domesticated species of grass. However, because grass pollen all looks highly similar, it has been challenging to track grass domestication using pollen in archaeological samples. Here, we show that we can use the chemical signature of pollen grains to classify different grass species. This approach has the potential to help unravel the spread of domestication and agriculture over the last 10 000 years.
Sonal Khanolkar and Jyoti Sharma
J. Micropalaeontol., 38, 1–24, https://doi.org/10.5194/jm-38-1-2019, https://doi.org/10.5194/jm-38-1-2019, 2019
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We carried out comparative analyses of multiple microfossil groups like foraminifera, dinoflagellates, pollen and spores from Early and Middle Eocene lignite mine sections from paleotropical sites of the Cambay, Kutch and Barmer basins of western India in order to record the changes in paleovegetation and paleodepositional conditions during the hot and humid climate.
Julian D. Hartman, Peter K. Bijl, and Francesca Sangiorgi
J. Micropalaeontol., 37, 445–497, https://doi.org/10.5194/jm-37-445-2018, https://doi.org/10.5194/jm-37-445-2018, 2018
Short summary
Short summary
We present an extensive overview of the organic microfossil remains found at Site U1357, Adélie Basin, East Antarctica. The organic microfossil remains are exceptionally well preserved and are derived from unicellular as well as higher organisms. We provide a morphological description, photographic images, and a discussion of the ecological preferences of the biological species from which the organic remains were derived.
Peter K. Bijl, Alexander J. P. Houben, Anja Bruls, Jörg Pross, and Francesca Sangiorgi
J. Micropalaeontol., 37, 105–138, https://doi.org/10.5194/jm-37-105-2018, https://doi.org/10.5194/jm-37-105-2018, 2018
Short summary
Short summary
In order to use ocean sediments as a recorder of past oceanographic changes, a critical first step is to stratigraphically date the sediments. The absence of microfossils with known stratigraphic ranges has always hindered dating of Southern Ocean sediments. Here we tie dinocyst ranges to the international timescale in a well-dated sediment core from offshore Antarctica. With this, we can now use dinocysts as a biostratigraphic tool in otherwise stratigraphically poorly dated sediments.
Cited articles
Bijl, P. K., Brinkhuis, H., Egger, L. M., Eldrett, J. S., Frieling, J.,
Grothe, A., Houben, A. J. P., Pross, J., Kasia, K. Ś., and Sluijs, A.:
Comment on “Wetzeliella and Its Allies – the “Hole” Story: A Taxonomic
Revision of the Paleogene Dinoflagellate Subfamily Wetzelielloideae” by
Williams et al. (2015)”, Palynology, 41, 423–429, 2016.
Bista, D., Hoyle, T. M., Sangiorgi, F., and Flecker, R.: The connectivity
history of the Black Sea over the last 1.2 million years, in preparation,
2019.
Boere, A. C., Rijpstra, W. I. C., De Lange, G. J., Sinninghe Damsté, J.
S., and Coolen, M. J. L.: Preservation potential of ancient plankton DNA in
Pleistocene marine sediments, Geobiology, 9, 377–393,
https://doi.org/10.1111/j.1472-4669.2011.00290.x, 2011.
Corradini, D. and Biffi, U.: Dinocyst study at the Messinian-Pliocene
boundary in the Cava Serredi section, Tuscany, Italy, Bull. des centres Rech.
Explor. Elf-Aquitaine, 12, 221–236, 1988.
de Vernal, A. and Marret, F.: Organic-Walled Dinoflagellate Cysts: Tracers of
Sea-Surface Conditions, in: Developments in Marine Geology, Proxies in Late
Cenozoic Paleoceanography, Vol. 1, edited by: Hillaire-Marcel, C. and de
Vernal, A., 371–408, Elsevier, Oxford, 2007.
Ellegaard, M., Lewis, J., and Harding, I. C.: Cyst-theca relationship, life
cycle and effects of temperature and salinity on the cyst morphology of
Gonyaulax baltica sp. nov. (Dinophyceae) from the Baltic Sea area, J.
Phycol., 38, 775–789, 2002.
Ellegaard, M., Dale, B., Mertens, K. N., Pospelova, V., and Ribeiro, S.:
Dinoflagellate Cysts as Proxies for Holocene Environmental Change in
Estuaries: Diversity, Abundance and Morphology Marianne, in: Applications of
Paleoenvironmental Techniques in Estuarine Studies, Developments in
Paleoenvironmental Research 20, Vol. 20, edited by: Weckström, K.,
Saunders, K., Gell, P., and Skilbeck, G., 295–312, Springer, Dordrecht, the
Netherlands, 2017.
Evitt, W. R., Gocht, H., and Netzel, H.: Gonyaulax cysts from Lake Zrich
sediments, Rev. Palaeobot. Palyno., 45, 35–46, 1985.
Fensome, R. A., Taylor, F. J. R., Norris, G., Sargeant, W. A. S., Wharton, D.
I., and Williams, G. L.: A classification of living and fossil
dinoflagellates. Micropaleontology, Special publication no. 7, Sheridan
Press, Hanover, Pennsylvania, USA, 1993.
Ferguson, S., Warny, S., Escarguel, G., and Mudie, P. J.: MIS 5-1
dinoflagellate cyst analyses and morphometric evaluation of Galeacysta
etrusca and Spiniferites cruciformis in southwestern Black Sea, Quaternary
Int., 465, 117–129, https://doi.org/10.1016/j.quaint.2016.07.035, 2018.
Finkel, Z. V., Sebbo, J., Feist-Burkhardt, S., Irwin, A. J., Katz, M. E.,
Schofield, O. M. E., Young, J. R., and Falkowski, P. G.: A universal driver
of macroevolutionary change in the size of marine phytoplankton over the
Cenozoic, P. Natl. Acad. Sci. USA, 104, 20416–20420,
https://doi.org/10.1073/pnas.0709381104, 2007.
Head, M. J.: Morphology and paleoenvironmnental significance of the Cenozoic
dinoflagellate genera Tectatodinium and Habibacysta, Micropaleontology, 40,
289–321, 1994.
Head, M. J.: Chapter 30. Modern dinoflagellate cysts and their biological
affinities, Palynol. Princ. Appl., 3, 1197–1248, 1996.
Hoyle, T. M.: Biotic Change and Landlocked Seas: Ecosystem responses to
climate and sea level variability in the Plio-Pleistocene of the Pontocaspian
basins, Utrecht Studies in Earth Sciences, Vol. 177, PhD Thesis, 2019.
Hoyle, T. M., Bista, D., Flecker, R., Krijgsman, W., and Sangiorgi, F.:
400,000 years of climate-driven connectivity changes in the Late Quaternary
of the Black Sea, in preparation, 2019.
Kouli, K., Brinkhuis, H., and Dale, B.: Spiniferites cruciformis: A fresh
water dinoflagellate cyst?, Rev. Palaeobot. Palyno., 113, 273–286,
https://doi.org/10.1016/S0034-6667(00)00064-6, 2001.
Lewis, J., Taylor, J. D., Neale, K., and Leroy, S. A. G.: Expanding known
dinoflagellate distributions: investigations of slurry cultures from Caspian
Sea sediment, Bot. Mar., 61, 21–31, 2018.
Marret, F. and Zonneveld, K. A. F.: Atlas of modern organic-walled
dinoflagellate cyst distribution, Rev. Palaeobot. Palyno., 125, 1–200,
https://doi.org/10.1016/S0034-6667(02)00229-4, 2003.
Marret, F., Leroy, S. A. G., Chalié, F., and Gasse, F.: New
organic-walled dinoflagellate cysts from recent sediments of Central Asian
seas, Rev. Palaeobot. Palyno., 129, 1–20,
https://doi.org/10.1016/j.revpalbo.2003.10.002, 2004.
McCarthy, F. M. G., Mertens, K. N., Ellegaard, M., Sherman, K., Pospelova,
V., Ribeiro, S., Blasco, S., and Vercauteren, D.: Resting cysts of freshwater
dinoflagellates in southeastern Georgian Bay (Lake Huron) as proxies of
cultural eutrophication, Rev. Palaeobot. Palyno., 166, 46–62,
https://doi.org/10.1016/j.revpalbo.2011.04.008, 2011.
Mertens, K. N.: Morphological variation in dinoflagellate cysts: current
status and future challenges, in: AASP-CAP-NAMS-CIMP-DINO10 joint meeting,
San Francisco, USA, 137–137, 2013.
Mertens, K. N., Ribeiro, S., Bouimetarhan, I., Caner, H., Combourieu-Nebout,
N., Dale, B., de Vernal, A., Ellegaard, M., Filipova-Marinova, M. V., Godhe,
A., Goubert, E., Grøsfjeld, K., Holzwarth, U., Kotthoff, U., Leroy, S. A.
G., Londeix, L., Marret, F., Matsuoka, K., Mudie, P. J., Naudts, L.,
Peña-Manjarrez, J. L., Persson, A., Popescu, S., Pospelova, V.,
Sangiorgi, F., Van der Meer, M. T. J., Vink, A., Zonneveld, K. A. F.,
Vercauteren, D., Vlassenbroeck, J., and Louwye, S.: Process length variation
in cysts of a dinoflagellate, Lingulodinium machaerophorum, in surface
sediments: Investigating its potential as salinity proxy, Mar.
Micropaleontol., 70, 54–69, https://doi.org/10.1016/j.marmicro.2008.10.004, 2009.
Mertens, K. N., Dale, B., Ellegaard, M., Jansson, I., Godhe, A., Kremp, A.,
and Louwye, S.: Process length variation in cysts of the dinoflagellate
Protoceratium reticulatum, from surface sediments of the
Baltic–Kattegat–Skagerrak estuarine system: a regional salinity proxy,
Boreas, 40, 242–255, https://doi.org/10.1111/j.1502-3885.2010.00193.x, 2011.
Mertens, K. N., Bringué, M., Van Nieuwenhove, N., Takano, Y., Pospelova,
V., Rochon, A., de Vernal, A., Radi, T., Dale, B., Patterson, R. T.,
Weckström, K., Andrén, E., Louwye, S., and Matsuoka, K.: Process
length variation of the cyst of the dinoflagellate Protoceratium reticulatum
in the North Pacific and Baltic-Skagerrak region: Calibration as an annual
density proxy and first evidence of pseudo-cryptic speciation, J. Quaternary
Sci., 27, 734–744, https://doi.org/10.1002/jqs.2564, 2012a.
Mertens, K. N., Bradley, L. R., Takano, Y., Mudie, P. J., Marret, F., Aksu,
A. E., Hiscott, R. N., Verleye, T. J., Mousing, E. A., Smyrnova, L. L.,
Bagheri, S., Mansor, M., Pospelova, V., and Matsuoka, K.: Quantitative
estimation of Holocene surface salinity variation in the Black Sea using
dinoflagellate cyst process length, Quaternary Sci. Rev., 39, 45–59,
https://doi.org/10.1016/j.quascirev.2012.01.026, 2012b.
Mertens, K. N., Takano, Y., Gu, H., Bagheri, S., Pospelova, V.,
Pieńkowski, A. J., Leroy, S. A. G., and Matsuoka, K.: Cyst-Theca
Relationship and Phylogenetic Position of Impagidinium caspienense Incubated
from Caspian Sea Surface Sediments: Relation to Gonyaulax baltica and
Evidence for Heterospory within Gonyaulacoid Dinoflagellates, J. Eukaryot.
Microbiol., 64, 829–842, https://doi.org/10.1111/jeu.12417, 2017.
Mertens, K. N., Carbonell-moore, M. C., Pospelova, V., Head, M. J.,
Highfield, A., Schroeder, D., Gu, H., Andree, K. B., Fernandez, M.,
Yamaguchi, A., Takano, Y., Matsuoka, K., Nézan, E., Bilien, G.,
Okolodkov, Y., Koike, K., Hoppenrath, M., Pfaff, M., Pitcher, G., Al-muftah,
A., Rochon, A., Teen Lim, P., Pin Leaw, C., Fei Lim, Z., and Ellegaard, M.:
Pentaplacodinium saltonense gen. et sp. nov. (Dinophyceae) and its
relationship to the cyst-defined genus Operculodinium and
yessotoxin-producing Protoceratium reticulatum, Harmful Algae, 71, 57–77,
https://doi.org/10.1016/j.hal.2017.12.003, 2018.
Mousing, E. A., Ribeiro, S., Chisholm, C., Kuijpers, A., Moros, M., and
Ellegaard, M.: Size differences of Arctic marine protists between two climate
periods – using the paleoecological record to assess the importance of
within-species trait variation, Ecol. Evol., 7, 3–13, https://doi.org/10.1002/ece3.2592,
2017.
Mudie, P., Rochon, A., Richards, K., Ferguson, S., and Warny, S.:
Spiniferites cruciformis, Pterocysta cruciformis and Galeacysta etrusca:
morphology and palaeoecology, Palynology, 42, 135–161,
https://doi.org/10.1080/01916122.2018.1465737, 2018.
Mudie, P. J., Aksu, A. E., and Yasar, D.: Late Quaternary dinoflagellate
cysts from the Black, Marmara and Aegean seas: Variations in assemblages,
morphology and paleosalinity, Mar. Micropaleontol., 43, 155–178,
https://doi.org/10.1016/S0377-8398(01)00006-8, 2001.
Mudie, P. J., Rochon, A., Aksu, A. E., and Gillespie, H.: Dinoflagellate
cysts, freshwater algae and fungal spores as salinity indicators in Late
Quaternary cores from Marmara and Black seas, Mar. Geol., 190, 203–231,
https://doi.org/10.1016/S0025-3227(02)00348-1, 2002.
Mudie, P. J., Rochon, A., Aksu, A. E., and Gillespie, H.: Late glacial,
Holocene and modern dinoflagellate cyst assemblages in the
Aegean-Marmara-Black Sea corridor: Statistical analysis and re-interpretation
of the early Holocene Noah's Flood hypothesis, Rev. Palaeobot. Palynol., 128,
143–167, https://doi.org/10.1016/S0034-6667(03)00117-9, 2004.
Mudie, P. J., Marret, F., Mertens, K. N., Shumilovskikh, L. S., and Leroy, S.
A. G.: Atlas of modern dinoflagellate cyst distributions in the Black Sea
Corridor: From Aegean to Aral Seas, including Marmara, Black, Azov and
Caspian Seas, Mar. Micropaleontol., 134, 1–144,
https://doi.org/10.1016/j.marmicro.2017.05.004, 2017.
Popescu, S., Dalesme, F., Jouannic, G., Escarguel, G., Head, M. J.,
Melinte-Dobrinescu, M. C., Sütő-Szentai, M., Bakrač, K., Clauzon,
G., and Suc, J. P.: Galeacysta etrusca complex: Dinoflagellate cyst
marker of paratethyan influxes to the Mediterranean sea before and after the
peak of the messinian salinity crisis, Palynology, 33, 105–134,
https://doi.org/10.1080/01916122.2009.9989688, 2009.
Pross, J.: Paleo-oxygenation in tertiary epeiric seas: Evidence from
dinoflagellate cysts, Palaeogeogr. Palaeocl., 166, 369–381,
https://doi.org/10.1016/S0031-0182(00)00219-4, 2001.
Rochon, A., de Vernal, A., Turon, J.-L., Matthiessen, J., and Head, M. J.:
Distribution of recent dinoflagellate cysts in surface sediments from the
North Atlantic Ocean and adjacent seas in relation to sea-surface parameters,
Am. Assoc. Stratigr. Palynol., 35, 1–146, https://doi.org/10.1016/0377-8398(94)00016-G,
1999.
Rochon, A., Mudie, P. J., Aksu, A. E., and Gillespie, H.: Pterocysta
gen. nov.: A new dinoflagellate cyst from pleistocene glacial-stage sediments
of the black and Marmara Seas, Palynology, 26, 95–105,
https://doi.org/10.1080/01916122.2002.9989568, 2002.
Rochon, A., Lewis, J., Ellegaard, M., and Harding, I. C.: The Gonyaulax
spinifera (Dinophyceae) “complex”: Perpetuating the paradox?, Rev.
Palaeobot. Palyno., 155, 52–60, https://doi.org/10.1016/j.revpalbo.2008.12.017, 2009.
Shipboard Scientific Staff: 3. Site 379, in: Initial reports of the Deep Sea
Drilling Project, Volume 42, Part 2, edited by: Ross, D. A. and Neprochnov,
Y. P., 29–118, U.S. Government Printing Office, Washington, 1978.
Shumilovskikh, L. S., Marret, F., Fleitmann, D., Arz, H. W., Nowaczyk, N.,
and Behling, H.: Eemian and Holocene sea-surface conditions in the southern
Black Sea: Organic-walled dinoflagellate cyst record from core 22-GC3, Mar.
Micropaleontol., 101, 146–160, https://doi.org/10.1016/j.marmicro.2013.02.001, 2013.
Soliman, A. and Riding, J. B.: Late Miocene (Tortonian) gonyaulacacean
dinoflagellate cysts from the Vienna Basin, Austria, Rev. Palaeobot. Palyno.,
244, 325–346, https://doi.org/10.1016/j.revpalbo.2017.02.003, 2017.
Sütő-Szentai, M.: Organic walled microplankton zonation of the
Pannonian S.L. in the surroundings of the Kaskantyú, Paks and Tengelic,
Hungary, 2000.
Sütő-Szentai, M.: Definition and description of new dinoflagellate
genus, species and subspecies from the Pannonian Stage (Hungary), Acta Nat.
Pannonica, 1, 223–239, 2010.
Tuzhilkin, V. S. and Kosarev, A. N.: Thermohaline Structure and General
Circulation of the Caspian Sea Waters, Handb. Environ. Chem., 5, 33–57,
2005.
Verleye, T. J., Mertens, K. N., Young, M. D., Dale, B., McMinn, A., Scott,
L., Zonneveld, K. A. F., and Louwye, S.: Average process length variation of
the marine dinoflagellate cyst Operculodinium centrocarpum in the tropical
and Southern Hemisphere Oceans: Assessing its potential as a palaeosalinity
proxy, Mar. Micropaleontol., 86–87, 45–58,
https://doi.org/10.1016/j.marmicro.2012.02.001, 2012.
Wall, D.: Fossil microplankton in deep-sea cores from the Caribbean Sea,
Palaeontology, 10, 95–123, 1967.
Wall, D. and Dale, B.: Paleosalinity relationships of dinoflagellates in the
late quaternary of the black sea – a summary, Geosci. Man., 7, 95–102,
https://doi.org/10.1080/00721395.1973.9989739, 1973.
Wall, D., Dale, B., and Harada, K.: Descriptions of new fossil
dinoflagellates from the Late Quaternary of the Black Sea, Micropaleontology,
19, 18–31, 1973.
Williams, G. L., Damassa, S. P., Fensome, R. A., and Guerstein, G. R.:
Wetzeliella and its allies – the “hole” story: a taxonomic revision of the
Paleogene dinoflagellate subfamily Wetzelielloideae, Palynology, 39,
289–344, https://doi.org/10.1080/01916122.2014.993888, 2015.
Yalçın, B., Artüz, M. L., Pavlidou, A., Çubuk, S., and
Dassenakis, M.: Nutrient dynamics and eutrophication in the Sea of Marmara:
Data from recent oceanographic research, Sci. Total Environ., 601–602,
405–424, https://doi.org/10.1016/j.scitotenv.2017.05.179, 2017.
Zonneveld, K. A. F., Marret, F., Verreussel, R., Bogus, K., Bonnet, S.,
Bouimetarhan, I., Crouch, E., de Vernal, A., Elshanawany, R., Edwards, L.,
Esper, O., Forke, S., Grøsfjeld, K., Henry, M., Holzwarth, U., Kielt, J.
F., Kim, S., Ladouceur, S., Ledu, D., Chen, L., Limoges, A., Londeix, L., Lu,
S. H., Mahmoud, M. S., Marino, G., Matsuoka, K., Matthiessen, J., Mildenhal,
D. C., Mudie, P. J., Neil, H. L., Pospelova, V., Qi, Y., Radi, T., Richerol,
T., Rochon, A., Sangiorgi, F., Solignac, S., Turon, J. L., Verleye, T. J.,
Wang, Y., Wang, Z., and Young, M. D.: Atlas of modern dinoflagellate cyst
distribution based on 2405 data points, Rev. Palaeobot. Palyno., 191, 1–197,
https://doi.org/10.1016/j.revpalbo.2012.08.003, 2013.
Short summary
Morphology of dinoflagellate cysts (which are valuable tools in deciphering past environmental and climate changes) depends not only on genetics, but also on a range of environmental factors. We review frequently occurring (Black Sea) morphotypes and propose use of matrices to record gradual variation between endmember forms as a pragmatic approach until cyst–theca studies and genetic sequencing can demonstrate relationships between genetically and environmentally controlled morphotypes.
Morphology of dinoflagellate cysts (which are valuable tools in deciphering past environmental...