Invading the Greek Seas: Spatiotemporal Patterns of Marine Impactful Alien and Cryptogenic Species
暂无分享,去创建一个
[1] K. Stergiou,et al. Can Biological Traits Serve as Predictors for Fishes’ Introductions, Establishment, and Interactions? The Mediterranean Sea as a Case Study , 2022, Biology.
[2] A. Zenetos,et al. Corrigendum to the Review Article (Medit. Mar. Sci. 23/1 2022, 196-212) , 2022, Mediterranean Marine Science.
[3] Torcuato Pulido Mantas,et al. Marine heatwaves drive recurrent mass mortalities in the Mediterranean Sea , 2022, Global change biology.
[4] A. Zenetos,et al. Established non-indigenous species increased by 40% in 11 years in the Mediterranean Sea , 2022, Mediterranean Marine Science.
[5] Y. Krestenitis,et al. Sea Surface Temperature Variability and Marine Heat Waves over the Aegean, Ionian, and Cretan Seas from 2008–2021 , 2022, Journal of Marine Science and Engineering.
[6] R. Băncilă,et al. Alien species of the Romanian and Bulgarian Black Sea coast: state of knowledge, uncertainties, and needs for future research , 2022, Aquatic Invasions.
[7] S. Katsanevakis,et al. Bioinvasion impacts on biodiversity, ecosystem services, and human health in the Mediterranean Sea , 2022, Aquatic Invasions.
[8] I. Côté,et al. Research biases create overrepresented “poster children” of marine invasion ecology , 2021, Conservation Letters.
[9] A. Bracco,et al. Uncovering marine connectivity through sea surface temperature , 2021, Scientific Reports.
[10] Q. Hua,et al. Native biodiversity collapse in the eastern Mediterranean , 2020, Proceedings of the Royal Society B.
[11] S. Katsanevakis,et al. New records of the Indo-Pacific shrimp Urocaridella pulchella Yokeş & Galil, 2006 from the Eastern Mediterranean Sea , 2021 .
[12] P. Karachle,et al. Is the trend in new introductions of marine non-indigenous species a reliable criterion for assessing good environmental status? Τhe case study of Greece , 2020 .
[13] S. Medina-Villar,et al. Alien species of Mediterranean origin in the Baltic Sea Region: current state and risk assessment , 2020 .
[14] Andrew M. Liebhold,et al. Scientists' warning on invasive alien species , 2020, Biological reviews of the Cambridge Philosophical Society.
[15] L. Migliore,et al. The Tropical Seagrass Halophila stipulacea: Reviewing What We Know From Its Native and Invasive Habitats, Alongside Identifying Knowledge Gaps , 2020, Frontiers in Marine Science.
[16] J. Borg,et al. Unpublished Mediterranean records of marine alien and cryptogenic species , 2020 .
[17] S. Katsanevakis,et al. Aliens in the Aegean – a sea under siege (ALAS) , 2020 .
[18] O. De Clerck,et al. Prioritizing marine invasive alien species in the European Union through horizon scanning , 2020, Aquatic Conservation: Marine and Freshwater Ecosystems.
[19] Andrea Pisano,et al. New Evidence of Mediterranean Climate Change and Variability from Sea Surface Temperature Observations , 2020, Remote. Sens..
[20] S. Giakoumi,et al. Saronikos Gulf: a hotspot area for alien species in the Mediterranean Sea , 2020 .
[21] A. D. Mazaris,et al. A fast‐moving target: achieving marine conservation goals under shifting climate and policies , 2019, Ecological applications : a publication of the Ecological Society of America.
[22] D. Richardson,et al. A Conceptual Framework for Range-Expanding Species that Track Human-Induced Environmental Change , 2019, BioScience.
[23] G. Bernardi,et al. Citizen-science for monitoring marine invasions and stimulating public engagement: a case project from the eastern Mediterranean , 2019, Biological Invasions.
[24] Alexander N. G. Kirschel,et al. Horizon scanning for invasive alien species with the potential to threaten biodiversity and human health on a Mediterranean island , 2019, Biological Invasions.
[25] Collective Article. “New Alien Mediterranean Biodiversity Records” (December 2021) , 2019, Mediterranean Marine Science.
[26] A. D. Mazaris,et al. Adaptive marine conservation planning in the face of climate change: What can we learn from physiological, ecological and genetic studies? , 2019, Global Ecology and Conservation.
[27] D. Richardson,et al. Which Taxa Are Alien? Criteria, Applications, and Uncertainties , 2018, BioScience.
[28] S. Kark,et al. Biological Invasions in Conservation Planning: A Global Systematic Review , 2018, Front. Mar. Sci..
[29] S. Bacher,et al. Assessing the socio-economic impacts of priority marine invasive fishes in the Mediterranean with the newly proposed SEICAT methodology , 2018 .
[30] P. Karachle,et al. Deep cleaning of alien and cryptogenic species records in the Greek Seas (2018 update) , 2018 .
[31] T. Konstantinos,et al. The native distribution range of the European marine non-indigenous species , 2018 .
[32] E. Azzurro,et al. Detecting the occurrence of indigenous and non-indigenous megafauna through fishermen knowledge: A complementary tool to coastal and port surveys. , 2018, Marine pollution bulletin.
[33] M. Vilà,et al. Impact of Biological Invasions on Ecosystem Services , 2017 .
[34] G. Rilov. Multi-species collapses at the warm edge of a warming sea , 2016, Scientific Reports.
[35] L. Piazzi,et al. The invasion of Caulerpa cylindracea in the Mediterranean: the known, the unknown and the knowable , 2016 .
[36] Stelios Katsanevakis,et al. Mapping the impact of alien species on marine ecosystems: the Mediterranean Sea case study , 2016 .
[37] M. Bastianini,et al. Ecosystem vulnerability to alien and invasive species: a case study on marine habitats along the Italian coast , 2016 .
[38] Tim M. Blackburn,et al. Alien species as a driver of recent extinctions , 2016, Biology Letters.
[39] Cardoso Ana,et al. European Alien Species Information Network (EASIN): supporting European policies and scientific research , 2015 .
[40] Katsanevakis Stylianos Marios,et al. ELNAIS: a collaborative network on Aquatic Alien Species in Hellas (Greece). , 2015 .
[41] R. Solé,et al. External morphology explains the success of biological invasions. , 2014, Ecology letters.
[42] S. Katsanevakis,et al. Impacts of invasive alien marine species on ecosystem services and biodiversity: a pan-European review. , 2014 .
[43] M. Coll,et al. Invading the Mediterranean Sea: biodiversity patterns shaped by human activities , 2014, Front. Mar. Sci..
[44] G. Sisma‐Ventura,et al. Recent unprecedented warming and oligotrophy of the eastern Mediterranean Sea within the last millennium , 2014 .
[45] K. Chan,et al. Spatial distribution of marine invasive species: environmental, demographic and vector drivers , 2014 .
[46] S. Katsanevakis,et al. Invading European Seas: Assessing pathways of introduction of marine aliens , 2013 .
[47] J. Carlton,et al. Restructuring the Sea: profound shifts in the world's most invaded marine ecosystem , 2013 .
[48] A. Sfriso,et al. Alien species in the Mediterranean Sea by 2012. A contribution to the application of European Union’s Marine Strategy Framework Directive (MSFD). Part 2. Introduction trends and pathways , 2012 .
[49] D. Raitsos,et al. Biological invasions and climatic warming: implications for south-eastern Aegean ecosystem functioning , 2011, Journal of the Marine Biological Association of the United Kingdom.
[50] S. Katsanevakis,et al. Marine alien species in Greek Seas: Additions and amendments by 2010 , 2011 .
[51] G. Beaugrand,et al. Global climate change amplifies the entry of tropical species into the eastern Mediterranean Sea , 2010 .
[52] E. Ballesteros,et al. Invasion of Mediterranean benthic assemblages by red alga Lophocladia lallemandii (Montagne) F. Schmitz: Depth-related temporal variability in biomass and phenology , 2010 .
[53] E. Papastergiadou,et al. Aquatic alien species in Greece (2009): tracking sources, patterns and effects on the ecosystem. , 2009 .
[54] Jennifer L. Molnar,et al. Assessing the global threat of invasive species to marine biodiversity , 2008 .
[55] J. Levine,et al. Biological Invasions , 2004 .
[56] S. Barry,et al. Are there any consistent predictors of invasion success? , 2008, Biological Invasions.
[57] Jennifer L. Molnar,et al. Marine Ecoregions of the World: A Bioregionalization of Coastal and Shelf Areas , 2007 .
[58] Sergej Olenin,et al. Vulnerability of benthic habitats to the aquatic invasive species , 2007, Biological Invasions.
[59] H. MacIsaac,et al. Propagule pressure: a null model for biological invasions , 2006, Biological Invasions.
[60] Argyro Zenetos,et al. Update of marine alien species in Hellenic waters , 2005 .
[61] I. Wallentinus,et al. Can species traits be used to predict marine macroalgal introductions? , 2005, Biological Invasions.
[62] A. Karageorgis,et al. On the response of the Aegean Sea to climatic variability: a review , 2004 .
[63] C. Morri,et al. Global sea warming and “tropicalization” of the Mediterranean Sea: biogeographic and ecological aspects , 2003 .
[64] P. White,et al. Invasion biology: An emerging field of study , 2003 .
[65] R. Danovaro,et al. Major outputs of the recent multidisciplinary biogeochemical researches undertaken in the Aegean Sea , 2002 .
[66] James T. Carlton,et al. Biological Invasions and Cryptogenic Species , 1996 .
[67] J. Turfa,et al. Effects of shipworm on the performance of ancient Mediterranean warships , 1996 .
[68] M. Holdgate. Summary and conclusions: characteristics and consequences of biological invasions , 1986 .