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Search: WFRF:(Nakaoka H)

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  • Gross, C. P., et al. (author)
  • The biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans
  • 2022
  • In: Proceedings of the Royal Society B: Biological Sciences. - : The Royal Society. - 1471-2954 .- 0962-8452. ; 289:1969
  • Journal article (peer-reviewed)abstract
    • While considerable evidence exists of biogeographic patterns in the intensity of species interactions, the influence of these patterns on variation in community structure is less clear. Studying how the distributions of traits in communities vary along global gradients can inform how variation in interactions and other factors contribute to the process of community assembly. Using a model selection approach on measures of trait dispersion in crustaceans associated with eelgrass (Zostera marina) spanning 30° of latitude in two oceans, we found that dispersion strongly increased with increasing predation and decreasing latitude. Ocean and epiphyte load appeared as secondary predictors; Pacific communities were more overdispersed while Atlantic communities were more clustered, and increasing epiphytes were associated with increased clustering. By examining how species interactions and environmental filters influence community structure across biogeographic regions, we demonstrate how both latitudinal variation in species interactions and historical contingency shape these responses. Community trait distributions have implications for ecosystem stability and functioning, and integrating large-scale observations of environmental filters, species interactions and traits can help us predict how communities may respond to environmental change.
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  • Gupta, Alok C., et al. (author)
  • Multiband optical variability of the blazar OJ 287 during its outbursts in 2015-2016
  • 2017
  • In: Monthly notices of the Royal Astronomical Society. - : Oxford University Press (OUP). - 0035-8711 .- 1365-2966. ; 465:4, s. 4423-4433
  • Journal article (peer-reviewed)abstract
    • We present recent optical photometric observations of the blazar OJ 287 taken during 2015 September-2016 May. Our intense observations of the blazar started in 2015 November and continued until 2016 May and included detection of the large optical outburst in 2015 December that was predicted using the binary black hole model for OJ 287. For our observing campaign, we used a total of nine ground-based optical telescopes of which one is in Japan, one is in India, three are in Bulgaria, one is in Serbia, one is in Georgia, and two are in the USA. These observations were carried out in 102 nights with a total of similar to 1000 image frames in BVRI bands, though the majority were in the R band. We detected a second comparably strong flare in 2016 March. In addition, we investigated multiband flux variations, colour variations, and spectral changes in the blazar on diverse time-scales as they are useful in understanding the emission mechanisms. We briefly discuss the possible physical mechanisms most likely responsible for the observed flux, colour, and spectral variability.
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  • Yu, Lei, et al. (author)
  • Ocean current patterns drive the worldwide colonization of eelgrass (Zostera marina)
  • 2023
  • In: Nature Plants. - 2055-026X .- 2055-0278. ; 9:8, s. 1207-1220
  • Journal article (peer-reviewed)abstract
    • Currents are unique drivers of oceanic phylogeography and thus determine the distribution of marine coastal species, along with past glaciations and sea-level changes. Here we reconstruct the worldwide colonization history of eelgrass (Zostera marina L.), the most widely distributed marine flowering plant or seagrass from its origin in the Northwest Pacific, based on nuclear and chloroplast genomes. We identified two divergent Pacific clades with evidence for admixture along the East Pacific coast. Two west-to-east (trans-Pacific) colonization events support the key role of the North Pacific Current. Time-calibrated nuclear and chloroplast phylogenies yielded concordant estimates of the arrival of Z. marina in the Atlantic through the Canadian Arctic, suggesting that eelgrass-based ecosystems, hotspots of biodiversity and carbon sequestration, have only been present there for ~243ky (thousand years). Mediterranean populations were founded ~44kya, while extant distributions along western and eastern Atlantic shores were founded at the end of the Last Glacial Maximum (~19kya), with at least one major refuge being the North Carolina region. The recent colonization and five- to sevenfold lower genomic diversity of the Atlantic compared to the Pacific populations raises concern and opportunity about how Atlantic eelgrass might respond to rapidly warming coastal oceans.
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  • Duffy, J. Emmett, et al. (author)
  • A Pleistocene legacy structures variation in modern seagrass ecosystems
  • 2022
  • In: Proceedings of the National Academy of Sciences of the United States of America. - : Proceedings of the National Academy of Sciences. - 0027-8424 .- 1091-6490. ; 119:32
  • Journal article (peer-reviewed)abstract
    • Distribution of Earth's biomes is structured by the match between climate and plant traits, which in turn shape associated communities and ecosystem processes and services. However, that climate-trait match can be disrupted by historical events, with lasting ecosystem impacts. As Earth's environment changes faster than at any time in human history, critical questions are whether and how organismal traits and ecosystems can adjust to altered conditions. We quantified the relative importance of current environmental forcing versus evolutionary history in shaping the growth form (stature and biomass) and associated community of eelgrass (Zostera marina), a widespread foundation plant of marine ecosystems along Northern Hemisphere coastlines, which experienced major shifts in distribution and genetic composition during the Pleistocene. We found that eelgrass stature and biomass retain a legacy of the Pleistocene colonization of the Atlantic from the ancestral Pacific range and of more recent within-basin bottlenecks and genetic differentiation. This evolutionary legacy in turn influences the biomass of associated algae and invertebrates that fuel coastal food webs, with effects comparable to or stronger than effects of current environmental forcing. Such historical lags in phenotypic acclimatization may constrain ecosystem adjustments to rapid anthropogenic climate change, thus altering predictions about the future functioning of ecosystems. 
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  • Duffy, J. E., et al. (author)
  • Biodiversity mediates top-down control in eelgrass ecosystems: a global comparative-experimental approach
  • 2015
  • In: Ecology Letters. - : Wiley. - 1461-023X .- 1461-0248. ; 18:7, s. 696-705
  • Journal article (peer-reviewed)abstract
    • Nutrient pollution and reduced grazing each can stimulate algal blooms as shown by numerous experiments. But because experiments rarely incorporate natural variation in environmental factors and biodiversity, conditions determining the relative strength of bottom-up and top-down forcing remain unresolved. We factorially added nutrients and reduced grazing at 15 sites across the range of the marine foundation species eelgrass (Zostera marina) to quantify how top-down and bottom-up control interact with natural gradients in biodiversity and environmental forcing. Experiments confirmed modest top-down control of algae, whereas fertilisation had no general effect. Unexpectedly, grazer and algal biomass were better predicted by cross-site variation in grazer and eelgrass diversity than by global environmental gradients. Moreover, these large-scale patterns corresponded strikingly with prior small-scale experiments. Our results link global and local evidence that biodiversity and top-down control strongly influence functioning of threatened seagrass ecosystems, and suggest that biodiversity is comparably important to global change stressors.
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  • Duffy, J. Emmett, et al. (author)
  • Toward a Coordinated Global Observing System for Seagrasses and Marine Macroalgae
  • 2019
  • In: Frontiers in Marine Science. - : Frontiers Media S.A.. - 2296-7745. ; 6
  • Research review (peer-reviewed)abstract
    • In coastal waters around the world, the dominant primary producers are benthic macrophytes, including seagrasses and macroalgae, that provide habitat structure and food for diverse and abundant biological communities and drive ecosystem processes. Seagrass meadows and macroalgal forests play key roles for coastal societies, contributing to fishery yields, storm protection, biogeochemical cycling and storage, and important cultural values. These socio-economically valuable services are threatened worldwide by human activities, with substantial areas of seagrass and macroalgal forests lost over the last half-century. Tracking the status and trends in marine macrophyte cover and quality is an emerging priority for ocean and coastal management, but doing so has been challenged by limited coordination across the numerous efforts to monitor macrophytes, which vary widely in goals, methodologies, scales, capacity, governance approaches, and data availability. Here, we present a consensus assessment and recommendations on the current state of and opportunities for advancing global marine macrophyte observations, integrating contributions from a community of researchers with broad geographic and disciplinary expertise. With the increasing scale of human impacts, the time is ripe to harmonize marine macrophyte observations by building on existing networks and identifying a core set of common metrics and approaches in sampling design, field measurements, governance, capacity building, and data management. We recommend a tiered observation system, with improvement of remote sensing and remote underwater imaging to expand capacity to capture broad-scale extent at intervals of several years, coordinated with strati fied in situ sampling annually to characterize the key variables of cover and taxonomic or functional group composition, and to provide ground-truth. A robust networked system of macrophyte observations will be facilitated by establishing best practices, including standard protocols, documentation, and sharing of resources at all stages of work flow, and secure archiving of open-access data. Because such a network is necessarily distributed, sustaining it depends on close engagement of local stakeholders and focusing on building and long-term maintenance of local capacity, particularly in the developing world. Realizing these recommendations will producemore effective, efficient, and responsive observing, a more accurate global picture of change in vegetated coastal systems, and stronger international capacity for sustaining observations.
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  • Result 1-10 of 11
Type of publication
journal article (9)
research review (2)
Type of content
peer-reviewed (11)
Author/Editor
Nakaoka, Masahiro (6)
Moksnes, Per-Olav, 1 ... (4)
Duffy, J. Emmett (3)
Itoh, R. (2)
Deneudt, Klaas (2)
Rossi, Francesca (2)
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Eklöf, Johan, 1978 (2)
Boström, Christoffer (2)
Eriksson, B. K. (2)
Ragueneau, Olivier (2)
Jahnke, Marlene (2)
Acosta, Alicia T. R. (2)
Hori, M (2)
O'Connor, M. I. (2)
Zingone, Adriana (2)
Stachowicz, John J. (2)
Cusson, Mathieu (2)
Fodrie, F. Joel (2)
Hori, Masakazu (2)
Hughes, A. Randall (2)
Kruschel, Claudia (2)
Orth, Robert J. (2)
Reiss, Katrin (2)
Ruesink, Jennifer L. (2)
Schultz, Stewart T. (2)
Unsworth, Richard (2)
Olsen, Jeanine L. (2)
Reynolds, P. L. (2)
Cusson, M. (2)
Engelen, A. H. (2)
Olsen, J. L. (2)
Sotka, E. E. (2)
Thormar, J. (2)
Whalen, M. A. (2)
Stachowicz, J. J. (2)
Eliason, Erika (2)
Soltwedel, Thomas (2)
Kawabata, M. (2)
Nakaoka, T. (2)
Wikner, Johan, Docen ... (2)
Sosik, Heidi M (2)
Stanisci, Angela (2)
Muelbert, Jose H. (2)
Nidzieko, Nicholas J ... (2)
Beaulieu, Stace E. (2)
Bernardino, Angelo F ... (2)
Boikova, Elmira (2)
Bornman, Thomas G. (2)
Cataletto, Bruno (2)
Kraberg, Alexandra (2)
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University
University of Gothenburg (4)
Stockholm University (4)
Uppsala University (3)
Umeå University (2)
Karolinska Institutet (2)
Royal Institute of Technology (1)
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Linnaeus University (1)
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Language
English (11)
Research subject (UKÄ/SCB)
Natural sciences (7)
Engineering and Technology (2)

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