Disentangling the effects of abiotic and biotic processes on non-indigenous species dominance
Authors/Creators
- 1. Technical University of Denmark, Kongens Lyngby, Denmark
Description
Relatively little attention has been paid to the underlying mechanisms determining the dominance of non-indigenous species (NIS) once established, despite being regarded as a proxy of invasion success and potential impacts in recipient communities. To bridge this knowledge gap, here we evaluate the potential direct and indirect effects of community filters on the dominance of two widespread NIS in the Baltic Sea: Marenzelleria spp. and the round goby (Neogobius melanostomus) within their corresponding communities. We applied a structural equation modelling approach to assess the direct and indirect effects amongst multiple abiotic and biotic variables on the relative biomass (as proxy of dominance) of NIS. The biotic variables represented the taxonomic- and functional diversity of the recipient communities, as well as the trait similarity between NIS and native species. We observed a comparable influence of abiotic and biotic drivers on the dominance of both NIS, with biotic variables having a somewhat stronger overall direct effect. Specifically, the dominance of both NIS was similarly affected negatively by the richness and positively by the evenness of the native communities. However, we also detected that both NIS might need different ecological strategies to become dominant in their recipient communities, which underwent similar assembly processes. Such strategies were partly highlighted by the different degrees of trait similarity between each NIS and their respective co-occurring native species. A better understanding of the underlying processes affecting NIS dominance is of high relevance to mitigate potential impacts of NIS once established. Furthermore, the provided approach could be further applied to unveil the potential strategies that NIS might follow in other regions and ecosystem types.
Files
NB_article_128736.pdf
Files
(4.5 MB)
| Name | Size | Download all |
|---|---|---|
|
md5:cd19df1341c318649b1045a703a80b88
|
4.5 MB | Preview Download |
System files
(185.9 kB)
| Name | Size | Download all |
|---|---|---|
|
md5:b1da6c091b54556c856eb308fabbe595
|
185.9 kB | Download |
Linked records
Additional details
References
- Anton A, Geraldi NR, Lovelock CE, Apostolaki ET, Bennett S, Cebrian J, Krause-Jensen D, Marbà N, Martinetto P, Pandolfi JM, Santana-Garcon J, Duarte CM (2019) Global ecological impacts of marine exotic species. Nature Ecology & Evolution 3(5): 787–800. https://doi.org/10.1038/s41559-019-0851-0
- Balshine S, Verma A, Chant V, Theysmeyer T (2005) Competitive Interactions between Round Gobies and Logperch. Journal of Great Lakes Research 31(1): 68–77. https://doi.org/10.1016/S0380-1330(05)70238-0
- Bastrop R, Röhner M, Sturmbauer C, Jürss K (1997) Where did Marenzelleria spp. (Polychaeta: Spionidae) in Europe come from? Aquatic Ecology 31(2): 119–136. https://doi.org/10.1023/A:1009994102526
- Behrens JW, van Deurs M, Christensen EAF (2017) Evaluating dispersal potential of an invasive fish by the use of aerobic scope and osmoregulation capacity. PLoS ONE 12: e0176038. https://doi.org/10.1371/journal.pone.0176038
- Bennett S, Santana-Garcon J, Marbà N, Jorda G, Anton A, Apostolaki ET, Cebrian J, Geraldi NR, Krause-Jensen D, Lovelock CE, Martinetto P, Pandolfi JM, Duarte CM (2021) Climate-driven impacts of exotic species on marine ecosystems. Global Ecology and Biogeography 30(5): 1–13. https://doi.org/10.1111/geb.13283
- Beukhof E, Frelat R, Pecuchet L, Maureaud A, Dencker TS, Sólmundsson J, Punzón A, Primicerio R, Hidalgo M, Möllmann C, Lindegren M (2019) Marine fish traits follow fast-slow continuum across oceans. Scientific Reports 9(1): 17878. https://doi.org/10.1038/s41598-019-53998-2
- Blackburn TM, Pyšek P, Bacher S, Carlton JT, Duncan RP, Jarošík V, Wilson JRU, Richardson DM (2011) A proposed unified framework for biological invasions. Trends in Ecology & Evolution 26(7): 333–339. https://doi.org/10.1016/j.tree.2011.03.023
- Blank M, Laine AO, Jürss K, Bastrop R (2008) Molecular identification key based on PCR/RFLP for three polychaete sibling species of the genus Marenzelleria, and the species' current distribution in the Baltic Sea. Helgoland Marine Research 62(2): 129–141. https://doi.org/10.1007/s10152-007-0081-8
- Bochert R (1997) Marenzelleria viridis (Polychaeta: Spionidae): a review of its reproduction. Aquatic Ecology 31(2): 163–175. https://doi.org/10.1023/A:1009951404343
- Bradley BA, Laginhas BB, Whitlock R, Allen JM, Bates AE, Bernatchez G, Diez JM, Early R, Lenoir J, Vilà M, Sorte CJB (2019) Disentangling the abundance–impact relationship for invasive species. Proceedings of the National Academy of Sciences of the United States of America 116(20): 9919–9924. https://doi.org/10.1073/pnas.1818081116
- Britton-Simmons K (2004) Direct and indirect effects of the introduced alga Sargassum muticum on benthic, subtidal communities of Washington State, USA. Marine Ecology Progress Series 277: 61–78. https://doi.org/10.3354/meps277061
- Buchadas A, Vaz AS, Honrado JP, Alagador D, Bastos R, Cabral JA, Santos M, Vicente JR (2017) Dynamic models in research and management of biological invasions. Journal of Environmental Management 196: 594–606. https://doi.org/10.1016/j.jenvman.2017.03.060
- Cadotte MW (2023) Quantifying and linking mechanism scenarios to invasive species impact. Ecological Applications 33(2): e2777. https://doi.org/10.1002/eap.2777
- Carstensen J, Conley DJ (2019) Baltic Sea Hypoxia Takes Many Shapes and Sizes. Limnology and Oceanography Bulletin 28(4): 125–129. https://doi.org/10.1002/lob.10350
- Christensen EAF, Norin T, Tabak I, van Deurs M, Behrens JW (2021) Effects of temperature on physiological performance and behavioral thermoregulation in an invasive fish, the round goby. Journal of Experimental Biology 224 (1): jeb237669. https://doi.org/10.1242/jeb.237669
- Cleland EE (2011) Trait divergence and the ecosystem impacts of invading species. The New Phytologist 189(3): 649–652. https://doi.org/10.1111/j.1469-8137.2010.03607.x
- Crall AW, Newman GJ, Stohlgren TJ, Jarnevich CS, Evangelista P, Guenther D (2006) Evaluating dominance as a component of non-native species invasions. Diversity & Distributions 12(2): 195–204. https://doi.org/10.1111/j.1366-9516.2005.00228.x
- Delavaux CS, Crowther TW, Zohner CM, Robmann NM, Lauber T, van den Hoogen J, Kuebbing S, Liang J, de-Miguel S, Nabuurs G-J, Reich PB, Abegg M, Adou Yao YC, Alberti G, Almeyda Zambrano AM, Alvarado BV, Alvarez-Dávila E, Alvarez-Loayza P, Alves LF, Ammer C, Antón-Fernández C, Araujo-Murakami A, Arroyo L, Avitabile V, Aymard GA, Baker TR, Bałazy R, Banki O, Barroso JG, Bastian ML, Bastin J-F, Birigazzi L, Birnbaum P, Bitariho R, Boeckx P, Bongers F, Bouriaud O, Brancalion PHS, Brandl S, Brienen R, Broadbent EN, Bruelheide H, Bussotti F, Gatti RC, César RG, Cesljar G, Chazdon R, Chen HYH, Chisholm C, Cho H, Cienciala E, Clark C, Clark D, Colletta GD, Coomes DA, Cornejo Valverde F, Corral-Rivas JJ, Crim PM, Cumming JR, Dayanandan S, de Gasper AL, Decuyper M, Derroire G, DeVries B, Djordjevic I, Dolezal J, Dourdain A, Engone Obiang NL, Enquist BJ, Eyre TJ, Fandohan AB, Fayle TM, Feldpausch TR, Ferreira LV, Fischer M, Fletcher C, Frizzera L, Gamarra JGP, Gianelle D, Glick HB, Harris DJ, Hector A, Hemp A, Hengeveld G, Hérault B, Herbohn JL, Herold M, Hillers A, Honorio Coronado EN, Hui C, Ibanez TT, Amaral I, Imai N, Jagodziński AM, Jaroszewicz B, Johannsen VK, Joly CA, Jucker T, Jung I, Karminov V, Kartawinata K, Kearsley E, Kenfack D, Kennard DK, Kepfer-Rojas S, Keppel G, Khan ML, Killeen TJ, Kim HS, Kitayama K, Köhl M, Korjus H, Kraxner F, Laarmann D, Lang M, Lewis SL, Lu H, Lukina NV, Maitner BS, Malhi Y, Marcon E, Marimon BS, Marimon-Junior BH, Marshall AR, Martin EH, Martynenko O, Meave JA, Melo-Cruz O, Mendoza C, Merow C, Mendoza AM, Moreno VS, Mukul SA, Mundhenk P, Nava-Miranda MG, Neill D, Neldner VJ, Nevenic RV, Ngugi MR, Niklaus PA, Oleksyn J, Ontikov P, Ortiz-Malavasi E, Pan Y, Paquette A, Parada-Gutierrez A, Parfenova EI, Park M, Parren M, Parthasarathy N, Peri PL, Pfautsch S, Phillips OL, Picard N, Piedade MTTF, Piotto D, Pitman NCA, Polo I, Poorter L, Poulsen AD, Pretzsch H, Ramirez Arevalo F, Restrepo-Correa Z, Rodeghiero M, Rolim SG, Roopsind A, Rovero F, Rutishauser E, Saikia P, Salas-Eljatib C, Saner P, Schall P, Schepaschenko D, Scherer-Lorenzen M, Schmid B, Schöngart J, Searle EB, Seben V, Serra-Diaz JM, Sheil D, Shvidenko AZ, Silva-Espejo JE, Silveira M, Singh J, Sist P, Slik F, Sonké B, Souza AF, Miscicki S, Stereńczak KJ, Svenning J-C, Svoboda M, Swanepoel B, Targhetta N, Tchebakova N, ter Steege H, Thomas R, Tikhonova E, Umunay PM, Usoltsev VA, Valencia R, Valladares F, van der Plas F, Do TV, van Nuland ME, Vasquez RM, Verbeeck H, Viana H, Vibrans AC, Vieira S, von Gadow K, Wang H-F, Watson JV, Werner GDA, Wiser SK, Wittmann F, Woell H, Wortel V, Zagt R, Zawiła-Niedźwiecki T, Zhang C, Zhao X, Zhou M, Zhu Z-X, Zo-Bi IC, Maynard DS (2023) Native diversity buffers against severity of non-native tree invasions. Nature 621(7980): 773–781. https://doi.org/10.1038/s41586-023-06440-7
- Delefosse M, Banta GT, Canal-Vergés P, Penha-Lopes G, Quintana CO, Valdemarsen T, Kristensen E (2012) Macrobenthic community response to the Marenzelleria viridis (Polychaeta) invasion of a Danish estuary. Marine Ecology Progress Series 461: 83–94. https://doi.org/10.3354/meps09821
- Dixon P (2003) VEGAN, a package of R functions for community ecology. Journal of Vegetation Science 14(6): 927–930. https://doi.org/10.1111/j.1654-1103.2003.tb02228.x
- Dubs DOL, Corkum LD (1996) Behavioral Interactions Between Round Gobies (Neogobius melanostomus) and Mottled Sculpins (Cottus bairdi). Journal of Great Lakes Research 22(4): 838–844. https://doi.org/10.1016/S0380-1330(96)71005-5
- El-Barougy RF, Elgamal I, Rohr RP, Probert AF, Khedr AA, Bacher S (2020) Functional similarity and dissimilarity facilitate alien plant invasiveness along biotic and abiotic gradients in an arid protected area. Biological Invasions 22(6): 1997–2016. https://doi.org/10.1007/s10530-020-02235-3
- Elton CS (1958) The Ecology of Invasions by Animals and Plants. 1st edn., 181 pp. https://doi.org/10.1007/978-1-4899-7214-9
- Ericsson P, Persson A, Behrens JW, Brodin T, Hirsch PE, Sundelin A, van Deurs M, von Friesen LW, Nilsson PA (2021) Personality-dependent inter- and intraspecific foraging competition in the invasive round goby, Neogobius melanostomus. Journal of Fish Biology 98(5): 1234–1241. https://doi.org/10.1111/jfb.14652
- Frelat R, Orio A, Casini M, Lehmann A, Mérigot B, Otto SA, Sguotti C, Möllmann C (2018) A three-dimensional view on biodiversity changes: Spatial, temporal, and functional perspectives on fish communities in the Baltic Sea. ICES Journal of Marine Science 75(7): 2463–2475. https://doi.org/10.1093/icesjms/fsy027
- Gallien L, Carboni M (2017) The community ecology of invasive species: Where are we and what's next? Ecography 40(2): 335–352. https://doi.org/10.1111/ecog.02446
- Gallien L, Carboni M, Münkemüller T (2014) Identifying the signal of environmental filtering and competition in invasion patterns - a contest of approaches from community ecology. Methods in Ecology and Evolution 5(10): 1002–1011. https://doi.org/10.1111/2041-210X.12257
- Gaüzère P, Blonder B, Denelle P, Fournier B, Grenié M, Delalandre L, Münkemüller T, Munoz F, Violle C, Thuiller W (2023) The functional trait distinctiveness of plant species is scale dependent. Ecography 2023(1): e06504. https://doi.org/10.1111/ecog.06504
- Geraldi NR, Anton A, Santana-Garcon J, Bennett S, Marbà N, Lovelock CE, Apostolaki ET, Cebrian J, Krause-Jensen D, Martinetto P, Pandolfi JM, Duarte CM (2020) Ecological effects of non-native species in marine ecosystems relate to co-occurring anthropogenic pressures. Global Change Biology 26(3): 1248–1258. https://doi.org/10.1111/gcb.14930
- Gogina M, Nygard H, Blomqvist M, Daunys D, Josefson AB, Kotta J, Maximov A, Warzocha J, Yermakov V, Gra U, Zettler ML (2016) The Baltic Sea scale inventory of benthic faunal communities. ICES Journal of Marine Science 73(4): 1196–1213. https://doi.org/10.1093/icesjms/fsv265
- Gogina M, Zettler A, Zettler ML (2022) Weight-to-weight conversion factors for benthic macrofauna: Recent measurements from the Baltic and the North seas. Earth System Science Data 14(1): 1–4. https://doi.org/10.5194/essd-14-1-2022
- Grenié M, Denelle P, Tucker CM, Munoz F, Violle C (2017) funrar: An R package to characterize functional rarity. Diversity & Distributions 23(12): 1365–1371. https://doi.org/10.1111/ddi.12629
- Guy-Haim T, Lyons DA, Kotta J, Ojaveer H, Queirós AM, Chatzinikolaou E, Arvanitidis C, Como S, Magni P, Blight AJ, Orav-Kotta H, Somerfield PJ, Crowe TP, Rilov G (2018) Diverse effects of invasive ecosystem engineers on marine biodiversity and ecosystem functions: A global review and meta-analysis. Global Change Biology 24(3): 906–924. https://doi.org/10.1111/gcb.14007
- Herlevi H, Wallin Kihlberg I, Aarnio K, Bonsdorff E, Florin A-B, Ljung A, Lundström K, Mattila J, Östman Ö (2023) Environmental abundances of the non-native round goby Neogobius melanostomus influence feeding of native fish predators. Journal of Fish Biology 102(6): 1340–1357. https://doi.org/10.1111/jfb.15380
- Hirsch PE, N'Guyen A, Adrian-Kalchhauser I, Burkhardt-Holm P (2016) What do we really know about the impacts of one of the 100 worst invaders in Europe? A reality check. Ambio 45(3): 267–279. https://doi.org/10.1007/s13280-015-0718-9
- IPBES (2023) Summary for Policymakers of the Thematic Assessment Report on Invasive Alien Species and their Control of the Intergovernmental Science-Policy Platform on Biodiversity and Ecosystem Services. IPBES secretariat. https://doi.org/10.5281/zenodo.3553579
- Jovanovic Z, Larsen M, Organo Quintana C, Kristensen E, Glud R (2014) Oxygen dynamics and porewater transport in sediments inhabited by the invasive polychaete Marenzelleria viridis. Marine Ecology Progress Series 504: 181–192. https://doi.org/10.3354/meps10737
- Karlson AML, Almqvist G, Skóra KE, Appelberg M (2007) Indications of competition between non-indigenous round goby and native flounder in the Baltic Sea. ICES Journal of Marine Science 64(3): 479–486. https://doi.org/10.1093/icesjms/fsl049
- Kauppi L, Bernard G, Bastrop R, Norkko A, Norkko J (2018) Increasing densities of an invasive polychaete enhance bioturbation with variable effects on solute fluxes. Scientific Reports 8(1): 7619. https://doi.org/10.1038/s41598-018-25989-2
- Kennedy TA, Naeem S, Howe KM, Knops JMH, Tilman D, Reich P (2002) Biodiversity as a barrier to ecological invasion. Nature 417(6889): 636–638. https://doi.org/10.1038/nature00776
- Kimbro DL, Cheng BS, Grosholz ED (2013) Biotic resistance in marine environments. Ecology Letters 16(6): 821–833. https://doi.org/10.1111/ele.12106
- Kotta J, Ólafsson E (2003) Competition for food between the introduced polychaete Marenzelleria viridis (Verrill) and the native amphipod Monoporeia affinis Lindström in the Baltic Sea. Journal of Sea Research 50(1): 27–35. https://doi.org/10.1016/S1385-1101(03)00041-8
- Kotta J, Orav-Kotta H, Sandberg-Kilpi E (2004) Changes in the feeding behaviour of benthic invertebrates: Effect of the introduced polychaete Marenzelleria viridis on the Baltic clam Macoma balthica. Proceedings of the Estonian Academy of Sciences. Biology, Ecology 53(4): 269. https://doi.org/10.3176/biol.ecol.2004.4.05
- Kraufvelin P, Pekcan-Hekim Z, Bergström U, Florin A-B, Lehikoinen A, Mattila J, Arula T, Briekmane L, Brown EJ, Celmer Z, Dainys J, Jokinen H, Kääriä P, Kallasvuo M, Lappalainen A, Lozys L, Möller P, Orio A, Rohtla M, Saks L, Snickars M, Støttrup J, Sundblad G, Taal I, Ustups D, Verliin A, Vetemaa M, Winkler H, Wozniczka A, Olsson J (2018) Essential coastal habitats for fish in the Baltic Sea. Estuarine, Coastal and Shelf Science 204: 14–30. https://doi.org/10.1016/j.ecss.2018.02.014
- Kruze E, Avotins A, Rozenfelde L, Putnis I, Sics I, Briekmane L, Olsson J (2023) The Population Development of the Invasive Round Goby Neogobius melanostomus in Latvian Waters of the Baltic Sea. Fishes 8(6): 305. https://doi.org/10.3390/fishes8060305
- Laliberte E, Legendre P (2010) A distance-based framework for measuring functional diversity from multiple traits. Ecology 91: 299–305.
- Lefcheck JS (2016) piecewiseSEM : Piecewise structural equation modelling in r for ecology, evolution, and systematics. Methods in Ecology and Evolution 7: 573–579. https://doi.org/10.1111/2041-210X.12512
- Levine JM, Adler PB, Yelenik SG (2004) A meta-analysis of biotic resistance to exotic plant invasions. Ecology Letters 7(10): 975–989. https://doi.org/10.1111/j.1461-0248.2004.00657.x
- Lindegren M, Gabellini AP, Munk P, Edelvang K, Hansen FT (2022) Identifying key processes and drivers affecting the presence of non-indigenous marine species in coastal waters. Biological Invasions 24(9): 2835–2850. https://doi.org/10.1007/s10530-022-02802-w
- Litchman E, Ohman MD, Kiørboe T (2013) Trait-based approaches to zooplankton communities. Journal of Plankton Research 35(3): 473–484. https://doi.org/10.1093/plankt/fbt019
- Lodge DM, Simonin PW, Burgiel SW, Keller RP, Bossenbroek JM, Jerde CL, Kramer AM, Rutherford ES, Barnes MA, Wittmann ME, Chadderton WL, Apriesnig JL, Beletsky D, Cooke RM, Drake JM, Egan SP, Finnoff DC, Gantz CA, Grey EK, Hoff MH, Howeth JG, Jensen RA, Larson ER, Mandrak NE, Mason DM, Martinez FA, Newcomb TJ, Rothlisberger JD, Tucker AJ, Warziniack TW, Zhang H (2016) Risk Analysis and Bioeconomics of Invasive Species to Inform Policy and Management. Annual Review of Environment and Resources 41(1): 453–488. https://doi.org/10.1146/annurev-environ-110615-085532
- Lundholm JT, Larson DW (2004) Dominance As An Overlooked Measure of Invader Success. Biological Invasions 6(4): 505–510. https://doi.org/10.1023/B:BINV.0000041563.89538.df
- Mathakutha R, Steyn C, le Roux PC, Blom IJ, Chown SL, Daru BH, Ripley BS, Louw A, Greve M (2019) Invasive species differ in key functional traits from native and non‐invasive alien plant species. Journal of Vegetation Science 30(5): 994–1006. https://doi.org/10.1111/jvs.12772
- Maureaud A, Hodapp D, Daniël Van Denderen P, Hillebrand H, Gislason H, Dencker TS, Beukhof E, Lindegren M (2019) Biodiversity-ecosystem functioning relationships in fish communities: Biomass is related to evenness and the environment, not to species richness. Proceedings of the Royal Society B: Biological Sciences 286: 20191189. https://doi.org/10.1098/rspb.2019.1189
- Maximov AA (2011) Large-scale invasion of Marenzelleria spp. (Polychaeta; Spionidae) in the eastern Gulf of Finland, Baltic Sea. Russian Journal of Biological Invasions 2(1): 11–19. https://doi.org/10.1134/S2075111711010036
- Neuenfeldt S (2002) The influence of oxygen saturation on the distributional overlap of predator (cod, Gadus morhua) and prey (herring, Clupea harengus) in the Bornholm Basin of the Baltic Sea. Fisheries Oceanography 11(1): 11–17. https://doi.org/10.1046/j.1365-2419.2002.00183.x
- Ojaveer H, Olenin S, Narščius A, Florin A-B, Ezhova E, Gollasch S, Jensen KR, Lehtiniemi M, Minchin D, Normant-Saremba M, Strāke S (2017) Dynamics of biological invasions and pathways over time: A case study of a temperate coastal sea. Biological Invasions 19(3): 799–813. https://doi.org/10.1007/s10530-016-1316-x
- Olenin S (1997) Benthic zonation of the Eastern Gotland Basin, Baltic Sea. Netherlands Journal of Aquatic Ecology 30(4): 265–282. https://doi.org/10.1007/BF02085871
- Paavola M, Olenin S, Leppäkoski E (2005) Are invasive species most successful in habitats of low native species richness across European brackish water seas? Estuarine, Coastal and Shelf Science 64(4): 738–750. https://doi.org/10.1016/j.ecss.2005.03.021
- Paine CET, Baraloto C, Chave J, Hérault B (2011) Functional traits of individual trees reveal ecological constraints on community assembly in tropical rain forests. Oikos 120(5): 720–727. https://doi.org/10.1111/j.1600-0706.2010.19110.x
- Pearson DE, Ortega YK, Eren Ö, Hierro JL (2018) Community Assembly Theory as a Framework for Biological Invasions. Trends in Ecology & Evolution 33(5): 313–325. https://doi.org/10.1016/j.tree.2018.03.002
- Pecuchet L, Törnroos A, Lindegren M (2016) Patterns and drivers of fish community assembly in a large marine ecosystem. Marine Ecology Progress Series 546: 239–248. https://doi.org/10.3354/meps11613
- Pinheiro J, Bates D, DebRoy S, Sarkar D, Heisterkamp S, Van Willigen B, Maintainer R (2017) Package 'nlme.' Linear and nonlinear mixed effects models 3. https://cran.r-project.org/web/packages/nlme/nlme.pdf [August 7, 2023]
- Puntila-Dodd R, Florin A-B, Naddafi R, Behrens JW, Kotta J, Smolinski S, Wozniczka A (2018) Abundance and distribution of round goby (Neogobius melanostomus).
- Puntila-Dodd R, Bekkevold D, Behrens JW (2021) Estimating salinity stress via hsp70 expression in the invasive round goby (Neogobius melanostomus): Implications for further range expansion. Hydrobiologia 848(2): 421–429. https://doi.org/10.1007/s10750-020-04449-x
- Richardson DM, Pyšek P (2012) Naturalization of introduced plants: Ecological drivers of biogeographical patterns. The New Phytologist 196(2): 383–396. https://doi.org/10.1111/j.1469-8137.2012.04292.x
- Rumohr H, Brey T, Ankar S (1987) 0282–8839 A compilation of biometric conversion factors for benthic invertebrates of the Baltic Sea. The Baltic Marine Biologists Publication, Kiel, Germany, 1–56.
- Santamaría J, Tomas F, Ballesteros E, Ruiz JM, Bernardeau‐Esteller J, Terrados J, Cebrian E (2021) The role of competition and herbivory in biotic resistance against invaders: A synergistic effect. Ecology 102(9): e03440. https://doi.org/10.1002/ecy.3440
- Schiedek D, Vogan C, Hardege J, Bentley M (1997) Marenzelleria cf. wireni (Polychaeta: Spionidae) from the Tay estuary. Metabolic response to severe hypoxia and hydrogen sulphide. Aquatic Ecology 31(2): 211–222. https://doi.org/10.1023/A:1009911723907
- Seebens H, Bacher S, Blackburn TM, Capinha C, Dawson W, Dullinger S, Genovesi P, Hulme PE, van Kleunen M, Kühn I, Jeschke JM, Lenzner B, Liebhold AM, Pattison Z, Pergl J, Pyšek P, Winter M, Essl F (2021) Projecting the continental accumulation of alien species through to 2050. Global Change Biology 27(5): 970–982. https://doi.org/10.1111/gcb.15333
- Shipley B (2009) Confirmatory path analysis in a generalized multilevel context. Ecology 90(2): 363–368. https://doi.org/10.1890/08-1034.1
- Skóra KE, Stolarski J (1993) Neogobius melanostomus (Pallas 1811) a new immigrant species in Baltic Sea. Proceedings of the Second International Estuary Symposium held in Gdańsk, 18–22.
- Stigzelius J, Laine A, Rissanen J, Andersin A-B, Ilus E (1997) The introduction of Marenzelleria viridis (Polychaeta, Spionidae) into the Gulf of Finland and the Gulf of Bothnia (northern Baltic Sea). Annales Zoologici Fennici 34: 205–212.
- Thomsen MS, Byers JE, Schiel DR, Bruno JF, Olden JD, Wernberg T, Silliman BR (2014) Impacts of marine invaders on biodiversity depend on trophic position and functional similarity. Marine Ecology Progress Series 495: 39–47. https://doi.org/10.3354/meps10566
- Törnroos A, Bonsdorff E (2012) Developing the multitrait concept for functional diversity: Lessons from a system rich in functions but poor in species. Ecological Applications 22(8): 2221–2236. https://doi.org/10.1890/11-2042.1
- Törnroos A, Bonsdorff E, Bremner J, Blomqvist M, Josefson AB, Garcia C, Warzocha J (2015) Marine benthic ecological functioning over decreasing taxonomic richness. Journal of Sea Research 98: 49–56. https://doi.org/10.1016/j.seares.2014.04.010
- van Deurs M, Moran NP, Schreiber Plet-Hansen K, Dinesen GE, Azour F, Carl H, Møller PR, Behrens JW (2021) Impacts of the invasive round goby (Neogobius melanostomus) on benthic invertebrate fauna: A case study from the Baltic Sea. NeoBiota 68: 19–30. https://doi.org/10.3897/neobiota.68.67340
- Villéger S, Mason NWH, Mouillot D (2008) New multidimensional functional diversity indices for a multifaceted framework in functional ecology. Ecology 89(8): 2290–2301. https://doi.org/10.1890/07-1206.1
- Violle C, Thuiller W, Mouquet N, Munoz F, Kraft NJB, Cadotte MW, Livingstone SW, Mouillot D (2017) Functional rarity: The ecology of outliers. Trends in Ecology & Evolution 32(5): 356–367. https://doi.org/10.1016/j.tree.2017.02.002
- Vivó-Pons A, Alós J, Tomas F (2020) Invasion by an ecosystem engineer shifts the abundance and distribution of fish but does not decrease diversity. Marine Pollution Bulletin 160: 111586. https://doi.org/10.1016/j.marpolbul.2020.111586
- Vivó-Pons A, Blomqvist M, Törnroos A, Lindegren M (2023a) A trait-based approach to assess niche overlap and functional distinctiveness between non-indigenous and native species. Ecology Letters 26(11): 1911–1925. https://doi.org/10.1111/ele.14315
- Vivó-Pons A, Wallin-Kihlberg I, Olsson J, Ljungberg P, Behrens J, Lindegren M (2023b) The devil is in the details: Exploring how functionally distinct round goby is among native fish in the Baltic Sea. NeoBiota 89: 161–186. https://doi.org/10.3897/neobiota.89.110203
- Wallin-Kihlberg I, Florin A-B, Lundström K, Östman Ö (2023) Detection of multiple fish species in the diet of the invasive round goby reveals new trophic interactions in the Baltic Sea. Aquatic Invasions 18(2): 141–162. https://doi.org/10.3391/ai.2023.18.2.104960
- Wiens JJ (2011) The niche, biogeography and species interactions. Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences 366(1576): 2336–2350. https://doi.org/10.1098/rstb.2011.0059
- Wisz MS, Pottier J, Kissling WD, Pellissier L, Lenoir J, Damgaard CF, Dormann CF, Forchhammer MC, Grytnes J, Guisan A, Heikkinen RK, Høye TT, Kühn I, Luoto M, Maiorano L, Nilsson M, Normand S, Öckinger E, Schmidt NM, Termansen M, Timmermann A, Wardle DA, Aastrup P, Svenning J (2013) The role of biotic interactions in shaping distributions and realised assemblages of species: Implications for species distribution modelling. Biological Reviews of the Cambridge Philosophical Society 88(1): 15–30. https://doi.org/10.1111/j.1469-185X.2012.00235.x
- Xu M, Li S, Dick JTA, Gu D, Fang M, Yang Y, Hu Y, Mu X (2022) Exotic fishes that are phylogenetically close but functionally distant to native fishes are more likely to establish. Global Change Biology 28(19): 5683–5694. https://doi.org/10.1111/gcb.16360
- Yamanaka H (2013) Hypoxic conditions enhance refuge effect of macrophyte zone for small prey fish from piscivorous predators. Fisheries Management and Ecology 20(6): 465–472. https://doi.org/10.1111/fme.12033
- Zintzen V, Anderson MJ, Roberts CD, Harvey ES, Stewart AL (2017) Effects of latitude and depth on the beta diversity of New Zealand fish communities. Scientific Reports 7(1): 8081. https://doi.org/10.1038/s41598-017-08427-7
- Zobel M, van der Maarel E, Dupré C (1998) Species pool: The concept, its determination and significance for community restoration. Applied Vegetation Science 1(1): 55–66. https://doi.org/10.2307/1479085