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dc.contributor.authorTsioli, Soultana
dc.contributor.authorKoutalianou, Maria
dc.contributor.authorGkafas, Georgios A.
dc.contributor.authorExadactylos, Athanasios
dc.contributor.authorPapathanasiou, Vasilis
dc.contributor.authorKatsaros, Christos I.
dc.contributor.authorOrfanidis, Sotiris
dc.contributor.authorKuepper, Frithjof
dc.date.accessioned2023-05-16T23:07:00Z
dc.date.available2023-05-16T23:07:00Z
dc.date.issued2022-03
dc.identifier207656363
dc.identifierce914f7f-95e2-4ecb-b587-84b8ed40155c
dc.identifier85123289335
dc.identifier.citationTsioli , S , Koutalianou , M , Gkafas , G A , Exadactylos , A , Papathanasiou , V , Katsaros , C I , Orfanidis , S & Kuepper , F 2022 , ' Responses of the Mediterranean seagrass Cymodocea nodosa to combined temperature and salinity stress at the ionomic, transcriptomic, ultrastructural and photosynthetic levels ' , Marine Environmental Research , vol. 175 , 105512 . https://doi.org/10.1016/j.marenvres.2021.105512en
dc.identifier.issn0141-1136
dc.identifier.urihttp://aura-test.abdn.ac.uk/handle/2164/19567
dc.descriptionAcknowledgements We are particularly grateful to David E. Salt and John M.C. Danku (University of Aberdeen, now at the University of Nottingham) for providing facilities and guidance for the ionomics work within the framework of this study. This research was funded by the European Commission (European Social Fund – ESF; grant no. 375425) and Greek national funds through the Operational Program “Education and Lifelong Learning” of the National Strategic Reference Framework (NSRF) - Research Funding Program: THALES - Investing in knowledge society through the European Social Funds (Project Acronym: MANTOLES). We would also like to thank the TOTAL Foundation (Project “Diversity of brown algae in the Eastern Mediterranean”), the European Commission under its Horizon 2021 Research and Innovation Programme (grants ZEROBRINE, grant agreement No. 730390, and WATERMINING, grant agreement No. 869474) and the UK Natural Environment Research Council for their Supplort to FCK (program Oceans 2025 – WP 4.5 and grants NE/D521522/1 and NE/J023094/1). The MASTS pooling initiative (Marine Alliance for Science and Technology for Scotland, funded by the Scottish Funding Council and contributing institutions; grant reference HR09011) is gratefully acknowledged.en
dc.format.extent15
dc.format.extent11142812
dc.language.isoeng
dc.relation.ispartofMarine Environmental Researchen
dc.subjectSDG 13 - Climate Actionen
dc.subjectSDG 14 - Life Below Wateren
dc.subjectChlorophyllen
dc.subjectCymodoceaen
dc.subjectcytoskeletonen
dc.subjectLittle Neptune grassen
dc.subjectphotosynthesisen
dc.subjecttranscriptomeen
dc.subjectultrastructureen
dc.subjectQH301 Biologyen
dc.subjectGE Environmental Sciencesen
dc.subjectEuropean Commissionen
dc.subject375425en
dc.subject730390en
dc.subject869474en
dc.subjectNatural Environment Research Council (NERC)en
dc.subjectNE/D521522/1en
dc.subjectNE/J023094/1en
dc.subjectScottish Funding Councilen
dc.subjectHR09011en
dc.subjectSupplementary Informationen
dc.subject.lccQH301en
dc.subject.lccGEen
dc.titleResponses of the Mediterranean seagrass Cymodocea nodosa to combined temperature and salinity stress at the ionomic, transcriptomic, ultrastructural and photosynthetic levelsen
dc.typeJournal articleen
dc.contributor.institutionUniversity of Aberdeen.Biological Sciencesen
dc.contributor.institutionUniversity of Aberdeen.The Marine Biodiscovery Centreen
dc.description.statusPeer revieweden
dc.identifier.doihttps://doi.org/10.1016/j.marenvres.2021.105512
dc.identifier.vol175en


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