Rocking together: a report on a biological interaction between a non-native sea anemone and a sea squirt in southeastern Brazil
DOI:
https://doi.org/10.1590/Keywords:
Actiniaria, Ascidiacea, Symbiosis, Southern Atlantic, Non-native speciesAbstract
This study provides an in-depth examination of the ecological interaction between the non-native Diadumene
lineata (Verrill, 1869) sea anemone, and the Polysyncraton amethysteum Van Name, 1902 colonial ascidian.
We documented the nature of their interactions using systematic field observations carried out in their natural
habitat along the rocky shores of Ubatuba, located on the northern coast of São Paulo State, Brazil. Our findings
reveal that these two species engage in a complex relationship that may offer several adaptation strategies and
ecological benefits, such as increased habitat stability and enhanced nutrient availability. We discuss how the
presence of ascidians may provide shelter for the sea anemone. Furthermore, this study highlights broader
implications of non-native species on rocky shore ecosystems. The introduction of non-native species can
disrupt existing relationships between native organisms, potentially altering community structures and ecological
balances.
References
Beneti, J. S., Stampar, S. N., Maronna, M. M., Morandini, A.
C. & Silveira, F. L. D. 2015. A new species of Diadumene
(Actiniaria: Diadumenidae) from the subtropical coast
of Brazil. Zootaxa, 4021(1), 156–168. DOI: https://doi.
org/10.11646/zootaxa.4021.1.6
Berrill, N. J. 1932. Ascidians of the Bermudas.
Biological Bulletin, 62(1), 77–88. DOI: https://
doi.org/10.2307/1537145
Carpenter, E. J. & Foster, R. A. 2002. Marine cyanobacterial
symbioses. In: Rai A. N., Bergman B. & Rasmussen U.
(Ed.). Cyanobacteria in symbiosis. Dordrecht: Springer.
DOI: https://doi.org/10.1007/0-306-48005-0_2
Ceriello, H., Lopes, C. S. S., Reimer, J. D., Bakken, T.,
Fukuda, M. V., Cunha, C. M. & Stampar, S. N. 2020.
Knock knock, who’s there?: marine invertebrates in
tubes of Ceriantharia (Cnidaria: Anthozoa). Biodiversity
Data Journal, 8, e47019.
Dias, G. M. & Delboni, C. G. M. 2008. Colour polymorphism
and oviposition habits of Lamellariamopsicolor.
Marine Biodiversity Records, 1, e49. DOI: https://doi.
org/10.1017/S1755267206005550
Fautin, D. G. & Goodwill, R. H. 2009. Neoaiptasiamorbilla
new species (Cnidaria: Actiniaria), a sea anemone
symbiont of sand-dwelling gastropods on Saipan,
Mariana islands, with comments on some other such
associations. Micronesica, 41(1), 101–115.
Floerl, O., Sunde, L. M. & Bloecher, N. 2016. Potential
environmental risks associated with biofouling management
in salmon aquaculture. Aquatic Environmental Interactions,
, 407–417. DOI: https://doi.org/10.3354/aei00187
Gusmão, L. C. & Daly, M. 2010. Evolution of sea anemones
(Cnidaria: Actiniaria: Hormathiidae) symbiotic with
hermit crabs. Molecular and Phylogenetic Evolution,
(3), 868–877. DOI: https://doi.org/10.1016/j.ympev.
05.001
Hancock, Z. B., Janelle, A. G. & Wicksten, M. K. 2017.
A sea anemone of many names: a review of the
taxonomy and distribution of the non-native actiniarian
Diadumene lineata (Diadumenidae), with records of its
reappearance on the Texas coast. ZooKeys, 706, 1.
Konecny, C. A. & Harley, C. D. G. 2019. The distribution of
the orange‐striped green anemone, Diadumenelineata,
in relation to environmental factors along coastal British
Columbia, Canada. Invertebrate Biology, 138(4),
e12268. DOI: https://doi.org/10.1111/ivb.12268
Leclerc, J. C. & Viard, F. 2018. Habitat formation prevails
over predation in influencing fouling communities.
Ecology and Evolution, 8(1), 477-492.
Interaction between sea anemone and sea squirt
Ocean and Coastal Research 2025, v73:e25012 5
Ceriello et al.
Lozano-Cortés, D. F. & Zapata, F. A. 2014. Invertebrate
colonization on artificial substrates in a coral reef at
Gorgona Island, Colombian Pacific Ocean. Revista de
Biologia Tropical, 62(1), 161–168.
Martin, J. P., Garese, A., Sar, A. & Acuña, F. H. 2015. Fouling
community dominated by Metridium senile (Cnidaria:
Anthozoa: Actiniaria) in Bahía San Julián (southern
Patagonia, Argentina). Scientia Marina, 79(2), 211–221.
DOI: https://doi.org/10.3989/scimar.04082.21A
Millar, R. H. 1958. Some ascidians from Brazil. Annals
and Magazine of Natural History, 1(8), 497–514. DOI:
https://doi.org/10.1080/00222935808650975
Monniot, F. 2016. Ascidians (Tunicata) of the French Guiana
expedition. Zootaxa, 4114(3), 201–245. DOI: http://doi.
org/10.11646/zootaxa.4114.3.1
Montagu, G. 1816. An account of some new and rare
marine British shells and animals. Transactions of the
Linnean Society of London, 11(2),179–204. DOI: https://
doi.org/10.1111/j.1096-3642.1813.tb00047.x
Muller-Parker, G. & Davy, S. K. 2001. Temperate
and tropical algal-sea anemone symbioses.
Invertebrate Biology, 120(2), 104–123. DOI: https://
doi.org/10.1111/j.1744-7410.2001.tb00115.x
Newcomer, K., Flenniken, M. M. & Carlton, J. T. 2019.
Home and away and home again: discovery of a
native reproductive strategy of the globally invading
sea anemone Diadumene lineata (Verrill, 1869) in a
satellite population. Biological Invasions, 21, 1491–
DOI: https://doi.org/10.1007/s10530-019-
-y
Oliveira, L. M., Hoeksema B. W. & Rocha R. M. 2019.
Polysyncraton (Ascidiacea, Didemnidae): a reexamination of some specimens and descriptions of
three new species. European Journal of Taxonomy,
, 1–25. DOI: https://doi.org/10.5852/ejt.2019.519
Ottaway, J. R. 1973. Some effects of temperature,
desiccation, and light on the intertidal anemone, Actinia
tenebrosa Farquhar (Cnidaria: Anthozoa). Marine and
Freshwater Research, 24(1), 103–126. DOI: https://
doi.org/10.1071/MF9730103
Pardy, R. L. & Lewin, R. 1981. Colonial ascidians with
prochlorophyte symbionts: evidence for translocation
of metabolites from alga to host. Bulletin of Marine
Science, 31(4), 817–823.
Pardy, R. L. & Royce, C. L. 1992. Ascidians with algal
symbionts. In: Reisser, W. (Ed.). Algae and symbioses,
plants, animals, fungi, viruses, interactions explored
(pp. 215–230). London: Biopress.
Rocha, R. M., Moreno, T. R. & Metri, R. 2005. Ascídias
(Tunicata, Ascidiacea) da Reserva Biológica Marinha do
Arvoredo, Santa Catarina, Brasil. Revista Brasileira de
Zoologia, 22(2), 461–476. DOI: https://doi.org/10.1590/
S0101-81752005000200024
Rocha, R. M. & Nasser, C. M. 1998. Some ascidians (Tunicata,
Ascidiacea) from Paraná State, southern Brazil. Revista
Brasileira de Zoologia, 15(3),633–642. DOI: https://doi.
org/10.1590/S0101-81751998000300009
Rodrigues, S. A. & Rocha, R. M. 1993. Littoral compound
ascidians (tunicata) from São Sebastião, Estado de São
Paulo, Brazil. Proceedings of the Biological Society of
Washington, 106(4), 728–739.
Sebens, K. P. 1986. Spatial Relationships among Encrusting
Marine Organisms in the New England Subtidal Zone.
Ecological Monographs, 56(1), 73–96. DOI: https://doi.
org/10.2307/2937271
Tarjuelo, I., López-Legentil, S., Codina, M. & Turon, X.
Defence mechanisms of adults and larvae of
colonial ascidians: patterns of palatability and toxicity.
Marine Ecology Progress Series, 235, 103–115. DOI:
https://doi.org/10.3354/meps235103
Ting, J. H. & Geller, J. N. 2000. Clonal diversity in introduced
populations of an asian sea anemone in North America.
Biological Invasions, 2, 23–32. DOI: https://doi.
org/10.1023/A:1010085406539
Van Name, W. G. 1902. The ascidians of the Bermuda
Islands. Transactions of the Connecticut Academy of
Arts and Sciences, 11, 325–412
Verrill, A. E. 1869. Synopsis of the polyps and corals of the
North Pacific exploring expedition. Communications of
the Essex Institute, 6, 51–104.
Wilcove, D. S., Rothstein, D., Dubow, J., Phillips, A. &
LOSOS, E. 1998. Quantifying threats to imperiled
species in the United States. Bioscience, 48, 607−615.
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Copyright (c) 2025 Hellen Ceriello, Romulo A. O. Bazzo, Lucas D. Martinez, Barbara M.T. Chagas, Celine S.S. Lopes, Gustavo Muniz Dias, Sérgio N. Stampar

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