Description
Enregistrements de données
Les données de cette ressource occurrence ont été publiées sous forme dune Archive Darwin Core (Darwin Core Archive ou DwC-A), le format standard pour partager des données de biodiversité en tant quensemble dun ou plusieurs tableurs de données. Le tableur de données du cœur de standard (core) contient 1 650 enregistrements.
Cet IPT archive les données et sert donc de dépôt de données. Les données et métadonnées de la ressource sont disponibles pour téléchargement dans la section téléchargements. Le tableau des versions liste les autres versions de chaque ressource rendues disponibles de façon publique et permet de tracer les modifications apportées à la ressource au fil du temps.
Versions
Le tableau ci-dessous naffiche que les versions publiées de la ressource accessibles publiquement.
Comment citer
Les chercheurs doivent citer cette ressource comme suit:
Asgrizze V, Seuffert M E, Soria A L, Burela S, Martín P R (2026). Native and non-native records of the invasive freshwater apple snail Pomacea maculata Perry, 1810. Version 1.2. Instituto de Ciencias Biológicas y Biomédicas del Sur (INBIOSUR). Occurrence dataset. https://ipt.mincyt.gob.ar/resource?r=pmaculatainbiosur&v=1.2
Droits
Les chercheurs doivent respecter la déclaration de droits suivante:
L’éditeur et détenteur des droits de cette ressource est Instituto de Ciencias Biológicas y Biomédicas del Sur (INBIOSUR). Ce travail est sous licence Creative Commons Attribution (CC-BY) 4.0.
Enregistrement GBIF
Cette ressource a été enregistrée sur le portail GBIF, et possède lUUID GBIF suivante : d94f4dcb-ef30-4dea-bace-eb32fbe41f04. Instituto de Ciencias Biológicas y Biomédicas del Sur (INBIOSUR) publie cette ressource, et est enregistré dans le GBIF comme éditeur de données avec lapprobation du GBIF Argentina.
Mots-clé
occurrence; Asia; Europe; Freshwater snail; Non-native species; North America; South America
Contacts
- Fournisseur Des Métadonnées ●
- Créateur ●
- Personne De Contact
- Fournisseur Des Métadonnées ●
- Créateur ●
- Personne De Contact
- Researcher
- San Juan 671
- 2914167217
- Créateur
- Créateur
- Fournisseur Des Métadonnées ●
- Créateur
Couverture géographique
This resource includes records of Pomacea maculata from both its native range in South America and its introduced range in North America, Asia and Europe. In South America, data are concentrated in Argentina, Brazil, Bolivia, Paraguay, and Uruguay. In North America, most records are concentrated in the Florida Peninsula (USA), although additional occurrences have been reported from Arizona, Texas, Louisiana, Mississippi, Alabama, and Georgia. In Asia, records have been documented in Bangladesh, Cambodia, China, Indonesia, Israel, Japan, Malaysia, Myanmar, Pakistan, Philippines, Singapore, South Korea,Thailand, Taiwan, and Vietnam. In Europe, all known occurrences are restricted to the Ebro Delta, Spain.
| Enveloppe géographique | Sud Ouest [-35,439, -111,939], Nord Est [40,703, 137,85] |
|---|
Couverture taxonomique
The resource documents occurrences of the species Pomacea maculata (Perry, 1810), a freshwater gastropod of the family Ampullariidae, native to South America and invasive in North America, Asia and Europe.
| Kingdom | Animalia |
|---|---|
| Phylum | Mollusca |
| Class | Mesogastropoda |
| Order | Gastropoda |
| Family | Ampullariidae |
Couverture temporelle
| Date de début / Date de fin | 1943-01-01 / 2026-05-05 |
|---|
Données sur le projet
Freshwater gastropods are among the most threatened aquatic taxa globally, yet some species have become highly invasive pests, causing severe economic and ecological impacts. This doctoral thesis project aims to understand the mechanisms and environmental factors determining the geographic distribution of freshwater gastropods in Argentina using ecological niche modeling (ENM). The project evaluates the conservation status, bioclimatic niche, and future trends of native and vulnerable species, such as Pomacea scalaris, comparing its ecological niche with the invasive apple snails Pomacea canaliculata and Pomacea maculata. Additionally, it projects models the potential distribution of non-native invasive gastropods (such as Potamopyrgus antipodarum and Sinotaia quadrata) to identify key river basins at risk in Argentina.
| Titre | Ecological Niche Modeling for the Analysis of Past, Present, and Future Distribution of Vulnerable and Invasive Freshwater Gastropods in Argentina |
|---|---|
| Financement | Project PGI-UNS 24/ZB14: "Aplicación de modelos de nicho ecológico y distribución de especies para el estudio de gasterópodos dulciacuícolas nativos, invasores y vulnerables" (PI/Director: Dr. María Emilia Seuffert), Universidad Nacional del Sur (UNS). Project PGI-UNS 24/ZB44: "Las dos caras del género Pomacea: nicho ecológico, vulnerabilidad y potencial invasivo" (PI/Director: Dr. María Emilia Seuffert), Universidad Nacional del Sur (UNS). |
| Description du domaine détude / de recherche | The study area spans freshwater ecosystems across Argentina, with sampling campaigns and historical museum collection assessments focusing primarily on the provinces of Buenos Aires, Entre Ríos, Corrientes, Santa Fe, Misiones, Chaco, and Formosa. The analyses encompass native distributions, historical fossil records, and potential expansion areas across major South American river basins (e.g., La Plata Basin and southern Pampas streams). |
| Description du design | The research design combines field sampling, museum collection curation, and spatial bioclimatic modeling: 1.Field Sampling & Curation: Occurrence records are retrieved from malacological collections (MACN, FCNyM-UNLP, FML, MNHN Uruguay, MNHN Paraguay) and field surveys across 40 sampling sites. Snails, empty shells, opercula, and egg masses are georeferenced and photographed under standardized protocols. 2. Conservation & Spatial Assessment: Geospatial analyses using GeoCAT are applied to calculate the Extent of Occurrence (EOO) and Area of Occupancy (AOO) following IUCN criteria. 3. Ecological Niche Modeling (ENM): Models are developed using MaxEnt (via the 'kuenm' R package) and WorldClim bioclimatic variables (1970–2000). Projections are performed for future climate scenarios (2041–2100 under various GCMs and SSPs) and past paleoclimate conditions (since the Last Glacial Maximum). 4.Comparative Niche Analysis: Principal Component Analyses (PCA) and niche equivalence/similarity tests are conducted using the 'ecospat' R package to compare bioclimatic tolerances between native vulnerable and invasive species. |
Les personnes impliquées dans le projet:
Méthodes déchantillonnage
The records included in this dataset were obtained using multiple strategies. First, specimens deposited in collections from the La Plata Museum of Natural Sciences, the Argentine Museum of Natural Sciences and Museum of Zoology of the University of São Paulo, were consulted. In addition, georeferenced occurrence records were downloaded from iNaturalist, selecting observations classified as research grade. For bibliographic data, the scientific literature was searched using the terms “Pomacea maculata”, “Ampullaria insularum”, “Ampullaria amazonica”, "Pomacea insularum", “Pomacea amazonica” and “Pomacea gigas” to identify publications that reported occurrences of the species. Finally, data collected by the resource team during previous field surveys were included. Records lacking geographic coordinates were georeferenced whenever the site description was sufficiently precise. All coordinates were visually inspected in QGIS.
| Etendue de létude | The study area encompasses aquatic regions of South and North America, Asia and Europe, where Pomacea maculata has been reported. The environments considered include both natural and artificial freshwater bodies such as rivers, lagoons, streams, and canals. |
|---|---|
| Contrôle qualité | Records without verifiable geographic coordinates were discarded. Additionally, publications by the same authors, in which specimens were collected from the same locality, were excluded to avoid duplicate occurrence records. iNaturalist records were manually reviewed and filtered according to their validation status. Furthermore, iNaturalist records with photos in which the species could not be clearly identified were excluded. Additionally, records from Peru were excluded because Ramirez et al. 2020 demonstrated that these records correspond to Pomacea nobilis, another species within the genus. |
Description des étapes de la méthode:
- 1. Data acquisition from museums and biological collections. 2. Compilation of historical records obtained during previous field surveys conducted by the research team. 3. Download and review of iNaturalist observations. 4. Literature review and extraction of occurrence records. 5. Georeferencing and visual verification in QGIS. 6. Standardization according to the Darwin Core standard. 7. Taxonomic and geographic validation. 8. Final integration and curation of the dataset.
Citations bibliographiques
- Agudo-Padrón, A. I. (2020). Additions to the systematic inventory of non-marine molluscs occurring in the State of Santa Catarina/SC, central southern Brazil region. Advances in Environmental Studies, 4(1), 261–270. https://pdfs.semanticscholar.org/ee84/9ae0404b7e670b099853fe36fbb8244aec06.pdf
- Brola, T. R. (2021). Estrategias reproductivas de moluscos gasterópodos: Caracterización de las defensas de los huevos de Pomacea scalaris y Pomacea diffusa (Caenogasteropoda: Ampullariidae) [Tesis]. https://naturalis.fcnym.unlp.edu.ar/entities/publication/fee29b99-5e63-4a0b-8dec-3100cdba39e6
- Brola, T. R., Pasquevich, M. Y., Giglio, M. L., Fernández, P. E., Cocucci, A., Dreon, M. S., & Heras, H. (2026). Evolution of aquatic snails' defences resulted in clade-specific differences in egg toxicity, pigments and warning coloration. Proceedings of the Royal Society B: Biological Sciences, 293. https://ore.exeter.ac.uk/articles/journal_contribution/Evolution_of_aquatic_snails_defences_resulted_in_clade-specific_differences_in_egg_toxicity_pigments_and_warning_colouration/30329482?file=62980996
- Cantanhede, S. P. D., Fernandez, M. A., Mattos, A. C. D., Montresor, L. C., Silva-Souza, N., & Thiengo, S. C. (2014). Freshwater gastropods of the Baixada Maranhense Microregion, an endemic area for schistosomiasis in the State of Maranhão, Brazil: I – Qualitative study. Revista da Sociedade Brasileira de Medicina Tropical, 47, 79–85. https://dx.doi.org/10.5123/s2176-6223202301357
- César, I. I., Ocón, C., Paggi, A. C., Rodrigues Capítulo, A., Spaccesi, F. G., Tangorra, M., & Tassara, M. P. (2000). Diversidad de invertebrados bentónicos del Río de la Plata. Biología Acuática. https://sedici.unlp.edu.ar/handle/10915/69062
- Clavijo, C., & Scarabino, F. (2011). Taller “Ampullariid Model using Phylogenetics, Laboratory Inquiry and Field Investigations into Ecology and Distribution”. Sicardia. Boletín Electrónico de la Sociedad Malacológica del Uruguay, 2, 10. https://www.scielo.br/j/bjb/a/JzjbxddzPJMjDsRGyLjhHZx/?lang=en
- Coelho, P. R. S., Thiengo, S. C., de Mendonça, C. L. F., de Oliveira, N. M. T., dos Santos, S. B., Caldeira, R. L., & Geiger, S. M. (2024). Diversity of freshwater mollusks from Lake Pampulha, Municipality of Belo Horizonte, Minas Gerais, Brazil. Diversity, 16(4), 193. https://www.mdpi.com/1424-2818/16/4/193
- Coria, S. H. (1997). Microanatomía del sistema reproductor de Ampullaria insularum Orbigny 1835 (Mollusca: Gastropoda: Ampullariidae) [Tesis]. https://bibliotecadigital.exactas.uba.ar/download/seminario/seminario_nBIO000510_Coria.pdf
- Darrigran, G. A. (1994). Composición de la malacofauna litoral del estuario del Río de la Plata. Tankay. https://sedici.unlp.edu.ar/bitstream/handle/10915/153700/Documento_completo.pdf?sequence=1
- Darrigran, G., & Lagreca, M. (s. f.). Moluscos litorales del estuario del Río de la Plata – Argentina. https://naturalis.fcnym.unlp.edu.ar/bitstreams/81dedd63-ff34-4020-8ef4-3ef5f1d28a7c/download
- de Lucia, M., Victorero, A., & Gutierrez Gregoric, D. E. (2025). Actualización del inventario de moluscos dulceacuícolas en la Reserva Natural de Punta Lara (2022–2025) y cambios frente a alteraciones ambientales recientes.
- de Oliveira, J. L., de Vasconcelos, M. C., & dos Santos, S. B. (2017). Freshwater mollusks and environmental assessment of Guandu River. Biota Neotropica, 17(3), e20170342. https://www.academia.edu/download/83088438/1676-0611-bn-17-3-e20170342.pdf
- dos Santos Castro, L., da Silva, J. D. S. P., Montresor, L. C., & da Silva, J. P. (2023). Alterações metabólicas em Pomacea maculata experimentalmente infectada com Angiostrongylus cantonensis (Nematoda). Revista Foco, 16(6), e2399.
- Fernández, M. A., Santos, S. B. D., Silva, E. F. D., & Thiengo, S. C. (2023). Composição e distribuição de moluscos de água doce no bioma Pantanal, estado de Mato Grosso, Brasil. Revista Pan-Amazônica de Saúde, 14.
- Glasheen, P. M., Burks, R. L., Campos, S. R., & Hayes, K. A. (2020). First evidence of introgressive hybridization of apple snails (Pomacea spp.) in their native range. Journal of Molluscan Studies, 86(2), 96–103. https://academic.oup.com/mollus/article-abstract/86/2/96/5748093
- Glasheen, P. M., Calvo, C., Meerhoff, M., Hayes, K. A., & Burks, R. L. (2017). Survival, recovery, and reproduction of apple snails (Pomacea spp.) following exposure to drought conditions. Freshwater Science, 36(2), 316–324. https://www.journals.uchicago.edu/doi/abs/10.1086/691791
- Hayes, K. A., Cowie, R. H., Thiengo, S. C., & Strong, E. E. (2012). Comparing apples with apples: Clarifying the identities of two highly invasive Neotropical Ampullariidae (Caenogastropoda). Zoological Journal of the Linnean Society, 166(4), 723–753. https://academic.oup.com/zoolinnean/article-abstract/166/4/723/2627113
- Hylton Scott, M. I. (2014). Estudio morfológico y taxonómico de los ampulláridos de la República Argentina. ProBiota, Serie Documentos.
- Kyle, C. H., Plantz, A. L., Shelton, T., & Burks, R. L. (2013). Count your eggs before they invade: Identifying and quantifying egg clutches of two invasive apple snail species (Pomacea). PLOS ONE, 8(10), e77736. https://journals.plos.org/plosone/article?id=10.1371/journal.pone.0077736
- Lipps, E. (2006). Observaciones biológicas en la “Cueva de los Murciélagos”. Vuelta de Obligado, provincia de Buenos Aires, República Argentina. Physis C, 25(70), 421–448. https://vueltadeobligado.wordpress.com/wp-content/uploads/2009/04/cuevas-rnhvo-2006.pdf
- Mattos, A. C. D., Boaventura, M. F. F., Fernandez, M. A., & Thiengo, S. C. (2013). Larval trematodes in freshwater gastropods from Mato Grosso, Brazil: Diversity and host–parasite relationships. Biota Neotropica, 13, 34–38. https://www.scielo.br/j/bn/a/6rgyL67Dhfg37SSNh4mrnVb/?format=html&lang=en
- Moreira, L. D. L., Silva, E. F. D., Gomes, S. R., Mattos, A. C. D., Sousa, A. K. P. D., Silva, A. B. P. D., Pinto, M. C., & Thiengo, S. C. (2024). Public parks in the city of Rio de Janeiro, southeast Brazil, and the risk of parasitosis transmission by freshwater gastropods. Anais da Academia Brasileira de Ciências, 96(2), e20230707. https://www.scielo.br/j/aabc/a/Dmbv8Vxy8bSsRRxpVJvmgxj/?lang=en
- Mu, H., Sun, J., Heras, H., Chu, K. H., & Qiu, J. W. (2017). An integrated proteomic and transcriptomic analysis of perivitelline fluid proteins in a freshwater gastropod laying aerial eggs. Journal of Proteomics, 155, 22–30. https://www.sciencedirect.com/science/article/pii/S1874391917300040
- Pasquevich, M. Y., Dreon, M. S., & Heras, H. (2014). The major egg reserve protein from the invasive apple snail Pomacea maculata is a complex carotenoprotein related to those of Pomacea canaliculata and Pomacea scalaris. Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular Biology, 169, 63–71. https://www.sciencedirect.com/science/article/pii/S1096495913001966?casa_token=PgKZUiaED8cAAAAA:UhQK4eWm08DvvprdISwk_m10DvEwqvdpTgOmMj1iAxpWrA69U8t86K32cxapXqPSafYOzPHkkyhN
- Phoong, M. J. C., Hah, H. E., Rao, S. R., Yow, Y. Y., & Ratnayeke, S. (2018). Invasive apple snails in wetlands of Selangor, Malaysia: Species, distribution, and ecological associations. Journal of Tropical Biology & Conservation, 15, 43–60. https://www.researchgate.net/profile/Yoon-Yen-Yow/publication/342343835_Invasive_Apple_Snails_in_Wetlands_of_Selangor_Malaysia_Species_Distribution_and_Ecological_Associations/links/5eeedb0992851ce9e7f78749/Invasive-Apple-Snails-in-Wetlands-of-Selangor-Malaysia-Species-Distribution-and-Ecological-Associations.pdf
- Verrengia Guerrero, N. R., & Kesten, E. M. (1993). Levels of heavy metals in biota from the La Plata River. Environmental Toxicology and Water Quality, 8(3), 335–344. https://onlinelibrary.wiley.com/doi/abs/10.1002/tox.2530080310?casa_token=D-avdynhHBgAAAAA:BIN-2KMT0gPtmzreUurdms4jkFZNrpop-lhdCiIxwKh20XfoV93KCl4V-oHyMPQZY0QR400Qiz-UeDfP
- Watanabe, T. T., Hattori, G. Y., & Sant’Anna, B. S. (2015). Desiccation tolerance of two apple snails from the Amazon basin, Pomacea amazonica and Pomacea bridgesii. Amazonian Resources, 43–52. https://www.researchgate.net/profile/Bruno-Santanna/publication/284644502_Desiccation_Tolerance_of_Two_Apple_Snails_from_the_Amazon_Basin_Pomacea_amazonica_and_Pomacea_bridgesii/links/65522aae3fa26f66f4fdd696/Desiccation-Tolerance-of-Two-Apple-Snails-from-the-Amazon-Basin-Pomacea-amazonica-and-Pomacea-bridgesii.pdf
- Cowie, R., Hayes, K., Strong, E., Thiengo, S. C., Joshi, R. C., Cowie, R., & Sebastian, L. (2017). Biology and management of invasive apple snails. Joshi RC, Cowie R, Sebastian L. Non-native apple snails: systematics, distribution, invasion history and reasons for introduction. Neuva Ecija: Philippine Rice Research Institute, 3-32. https://www.cabidigitallibrary.org/doi/full/10.5555/20173354475
- Ab Hamid, S., Haron, A., Amali, N., & Othman, I. (2023) Snails (Mollusca) diversity and its distribution in various type of microhabitats. Journal of Tropical Resources and Sustainable Science, 11 , 23-29. https://doi.org/10.47253/jtrss.v11i2.1237
- Abejo, J. R. A., & Jumawan, J. H. (2023). A multifaceted study of Wawa River, Esperanza, Agusan del Sur, Philippines–aquatic macroinvertebrates, water quality, and soil particle size analysis. American Journal of Interdisciplinary Research and Innovation, 2(4), 36-46. https://www.academia.edu/download/125119999/1012.pdf
- Achatz, T. J., Chun, C. H., Young, M. A., Page, J., Rowe, M., Cooper, C., ... & Tkach, V. V. (2025). Detection of rat lungworms in invasive mollusks, Georgia, USA, 2024. Emerging Infectious Diseases, 31(9), 1852. https://pmc.ncbi.nlm.nih.gov/articles/PMC12407195/
- Al, M. A., Akhtar, A., Kamal, A. H. M., AftabUddin, S., Islam, M. S., & Sharifuzzaman, S. M. (2022). Assessment of benthic macroinvertebrates as potential bioindicators of anthropogenic disturbance in southeast Bangladesh coast. Marine Pollution Bulletin, 184, 114217. https://doi.org/10.1016/j.marpolbul.2022.114217
- Arabie, D. (2019). Implications of hemocyanin to the respiratory regime of the invasive apple snail, Pomacea maculata (Perry, 1810) [Master's thesis, University of Louisiana at Lafayette]. https://search.proquest.com/openview/fe47fd686b451e75d79728b6119a04b8/1?pq-origsite=gscholar&cbl=18750&diss=y
- Baloch, W. A. (2018). Country report (Pakistan) on non-native apple snails. https://www.academia.edu/download/94119017/20173354470.pdf
- Banerjee, P., Dey, G., Maity, J. P., Stewart, K. A., Sharma, R. K., Chan, M. W., ... & Chen, C. Y. (2024). The unseen invaders: Tracking phylogeographic dynamics and genetic diversity of cryptic Pomacea canaliculata and P. maculata (Golden apple snails) across Taiwan. Ecology and Evolution, 14(4), e11268. https://doi.org/10.1002/ece3.11268
- Barbitta, D. (2017). Distribución y modelado global del nicho fundamental del caracol invasor Pomacea maculata (Perry, 1810) (Mollusca, Gasteropoda) [Tesis de licenciatura, Universidad de la República].
- Barnes, M. A., Fordham, R. K., Burks, R. L., & Hand, J. J. (2008). Fecundity of the exotic applesnail, Pomacea insularum. Journal of the North American Benthological Society, 27(3), 738-745. https://doi.org/10.1899/08-013.1
- Barrus, N. T., Drumheller, D., Cook, M. I., et al. (2023). Life history responses of two co-occurring congeneric apple snails (Pomacea maculata and P. paludosa) to variation in water depth and metaphyton total phosphorus. Hydrobiologia, 850, 841–860. https://doi.org/10.1007/s10750-022-05128-9
- Berrondo-Madrid, R., Vera, P., Gallardo, B., & Vilà, M. (2022). Stopping winter flooding of rice fields to control invasive snails has no effect on waterbird abundance at the landscape scale. Frontiers in Ecology and Evolution, 9, 688325 https://doi.org/10.3389/fevo.2021.688325
- Burkett-Cadena, N. D., & Unnasch, T. R. (2013). Apple snails and tiger mosquitoes: A curious association between two invasive species in Florida, USA. In Entomology 2013, 61st Annual Meeting of the Entomological Society of America. Austin Convention Center, Austin, Texas.
- Burks, R. L., Kyle, C. H., & Trawick, M. K. (2010). Pink eggs and snails: field oviposition patterns of an invasive snail, Pomacea insularum, indicate a preference for an invasive macrophyte. Hydrobiologia, 646(1), 243-251. https://doi.org/10.1007/s10750-010-0167-1
- Céspedes, V., Berrondo-Madrid, R., Picazo, F., Vilà, M., Rubio, C., García, M., ... & Gallardo, B. (2024). Massive decline of invasive apple snail populations after blue crab invasion in the Ebro River, Spain. Biological Invasions, 26(8), 2387-2395. https://doi.org/10.1007/s10530-024-03334-1
- Cowie, R., Hayes, K., Strong, E., Thiengo, S. C., Joshi, R. C., Cowie, R., & Sebastian, L. (2017). Biology and management of invasive apple snails. In R. C. Joshi, R. Cowie, & L. Sebastian (Eds.), Non-native apple snails: systematics, distribution, invasion history and reasons for introduction (pp. 3-32). Neuva Ecija: Philippine Rice Research Institute.
- Crichton, L. T. (2020). Abundance and distribution of the non-native apple snail, Pomacea maculata, in a restored wetland of an urban lake [Master's thesis, University of Central Florida].
- Do Van Tu, N. P. N., & Joshi, R. C. (2018). Invasive apple snails (Pomacea spp.) in Vietnam: Short review. https://www.deltamed.org/wp-content/uploads/2023/07/1521173863_invasive-apple-snails-pomacea-in-vietnam.pdf
- Dodd, S. R., Haynie, R. S., Williams, S. M., & Wilde, S. B. (2016). Alternate food-chain transfer of the toxin linked to avian vacuolar myelinopathy and implications for the endangered Florida snail kite (Rostrhamus sociabilis). The Journal of Wildlife Diseases, 52(2), 335-344. https://doi.org/10.7589/2015-03-061
- Dorn, N. J., & Hafsadi, M. (2016). Native crayfish consume more non-native than native apple snails. Biological Invasions, 18(1), 159-167. https://doi.org/10.1007/s10530-015-0998-9
- Drumheller, D. K., Cook, M. I., & Dorn, N. J. (2021). Direct chemical inhibition responsible for displacement of a native herbivore by an invasive congener. https://doi.org/10.21203/rs.3.rs-186320/v1
- Gilioli, G., Schrader, G., Carlsson, N., Van Donk, E., Van Leeuwen, C. H., Martín, P. R., ... & Vos, S. (2017). Environmental risk assessment for invasive alien species: a case study of apple snails affecting ecosystem services in Europe. Environmental Impact Assessment Review, 65, 1-11. https://doi.org/10.1016/j.eiar.2017.03.008
- Gnanasegaram, M. (2015). Comparative life cycle studies of Pomacea maculata and Pomacea canaliculata on rice (Oryza sativa). Pakistan Journal of Agricultural Sciences. http://www.pakjas.com.pk/
- Greufe, C., Ferrara, A., & Whitaker, J. (2024). Population genetic structure of invasive apple snails Pomacea maculata in Louisiana. Aquatic Ecology, 58(2), 487-500. https://doi.org/10.1007/s10452-024-10085-7
- Gutierre, S. M., Darby, P. C., Valentine-Darby, P. L., Mellow, D. J., Therrien, M., & Watford, M. (2019). Contrasting patterns of Pomacea maculata establishment and dispersal in an Everglades wetland unit and a central Florida lake. Diversity, 11(10), 183. https://doi.org/10.3390/d11100183
- Hansen, C. (2021). Effects of water flow on a wetland macroinvertebrate community [Master's thesis, Florida Atlantic University].
- Horn, K. C., Johnson, S. D., Boles, K. M., Moore, A., Siemann, E., & Gabler, C. A. (2008). Factors affecting hatching success of golden apple snail eggs: effects of water immersion and cannibalism. Wetlands, 28(2), 544-549. https://doi.org/10.1672/07-11.1
- Hui, T. H. (2019). Bi-coloured arboreal ants apparently feeding on eggs of apple snail.Singapore Biodiversity Records, 2019, 166–167. https://lkcnhm.nus.edu.sg/wp-content/uploads/sites/11/app/uploads/2019/01/sbr2019_166-167.pdf
- Li, J., Gao, J., & Chu, C. (2025). Identification of apple snails from other snails in snail food with quantitative PCR based on TaqMan-MGB probe. Journal of Food Composition and Analysis, 108508 https://doi.org/10.1016/j.jfca.2025.108508
- Ling, J., Li, T., Liu, Y., Chen, S., Fang, W., Zhao, S., & Jiang, Y. (2025). Molecular identification and population genetics of the invasive Pomacea spp. in Dali Bai Autonomous Prefecture. Chinese Journal of Schistosomiasis Control, 37(6), 626. https://www.zgxfzz.com/EN/Y2025/V37/I6/626
- Lucero, J. M., & Wilson, B. E. (2023). Regional expansion and chemical control for invasive apple snails (Pomacea maculata) in Louisiana rice and crawfish production systems. Crop Protection, 164, 106127. https://doi.org/10.1016/j.cropro.2022.106127
- Machado-Stredel, F., Atauchi, P. J., Nuñez-Penichet, C., Cobos, M. E., Osorio-Olvera, L., Khalighifar, A., Peterson, A. T., & Fletcher, R. J. (2024). The roles of abiotic and biotic factors in driving range shifts: An invasive Pomacea snail facilitates Rostrhamus sociabilis (Snail Kite) northward range expansion. Ornithology, 141(3), ukae022. https://doi.org/10.1093/ornithology/ukae022
- Martin, C. W., Bahya, K. M., & Valentine, J. F. (2012). Establishment of the invasive island apple snail Pomacea insularum (Gastropoda: Ampullaridae) and eradication efforts in Mobile, Alabama, USA. Gulf of Mexico Science, 30(1), 5. https://doi.org/10.18785/goms.3001.05
- Martin, C. W., & Valentine, J. F. (2014). Tolerance of embryos and hatchlings of the invasive apple snail Pomacea maculata to estuarine conditions. Aquatic Ecology, 48(3), 321-326. https://doi.org/10.1007/s10452-014-9486-z
- Marzolf, N. S., Shivers, S. D., Golladay, S. W., & Covich, A. P. (s.f.). Is environmental calcium availability limiting dispersal of an invasive snail in Lake Seminole and associated smaller lakes? https://www.researchgate.net/profile/Stephen_Golladay/publication/281825745_Abiotic_Effects_on_Spatial_Distribution_and_Abundance_of_Two_Highly_Invasive_Species_in_a_Novel_Lake_Ecosystem/links/5717a07308ae30c3f9f16f6c.pdf
- Matsukura, K. (2025). Recent range expansion of apple snails in East Asia and novel countermeasures. Japan Agricultural Research Quarterly: JARQ, 59(4), 245-252. https://doi.org/10.6090/jarq.24S26
- McAskill, S. C. (2015). Interactive effects of environmental stressors and the invasive apple snail, Pomacea maculata, on tapegrass, Vallisneria americana [Master's thesis, Florida Gulf Coast University].
- McMahon, R. F. (2024). Invasive fresh water molluscs in Texas. Texas Journal of Science, 76(1). https://doi.org/10.32011/txjsci_76_1_TDS1
- Meza-Lopez, M. M., & Siemann, E. (2015). Experimental test of the invasional meltdown hypothesis: an exotic herbivore facilitates an exotic plant, but the plant does not reciprocally facilitate the herbivore. Freshwater Biology, 60(7), 1475-1482. https://doi.org/10.1111/fwb.12582
- Morrison, W. E., & Hay, M. E. (2011). Feeding and growth of native, invasive and non-invasive alien apple snails (Ampullariidae) in the United States: invasives eat more and grow more. Biological Invasions, 13(4), 945-955. https://doi.org/10.1007/s10530-010-9881-x
- Mutchler, M. J., Nemecek, M. S., & Robbins, M. B. (2025). Patterns and demography of Limpkin (Aramus guarauna) vagrancy in the 21st century United States. The Wilson Journal of Ornithology, 137(4), 563-577. https://doi.org/10.1080/15594491.2025.2529110
- Ng, T. H., Tan, S. K., & Low, M. E. Y. (2014). Singapore Mollusca: 7. The family Ampullariidae (Gastropoda: Caenogastropoda: Ampullarioidea). Nature in Singapore, 7, 31-47. https://www.science.nus.edu.sg/wp-content/uploads/sites/11/2024/02/2014nis031-047.pdf
- Nguyen, J. A., Tolley-Jordan, L., Slayton, A. P., Richardson, B. M., & Rosser, T. G. (2025). First report of a trematode infection in an invasive population of Pomacea maculata: Evidence of a phaneropsolid (Trematoda: Microphalloidea) and recommended methods for surveillance. Parasitology International, 103203. https://doi.org/10.1016/j.parint.2025.103203
- Nigar Alkan, & Ali Alkan. (2023). Elemental compositions of Rapana venosa (Mollusca: Muricidae) from the eastern Black Sea region of Turkey: Toxicology health risk assessment. Analytical Letters, 56(3), 504-516. https://doi.org/10.1080/00032719.2022.2081334
- Olivier, H. M., Jenkins, J. A., Berhow, M., & Carter, J. (2016). A pilot study testing a natural and a synthetic molluscicide for controlling invasive apple snails (Pomacea maculata). Bulletin of Environmental Contamination and Toxicology, 96(3), 289-294. https://doi.org/10.1007/s00128-015-1709-z
- Ostrom, A. S., & Chesnes, T. C. (2014). An assessment of submersion as a mechanical control technique of Pomacea maculata eggs in southern Florida, USA. Natural Resources and Conservation, 2, 6-10. 10.13189/nrc.2014.020102
- Panchot, W., Siriwut, W., Thaweepworadej, P., & Kolasartsanee, I. (2025). Damaging potential to rice crops of the invasive apple snail (Pomacea maculata) and the native Thai apple snail (Pila celebensis) under changing temperature conditions in Thailand. Climate Change Ecology, 10, 100096. https://doi.org/10.1016/j.ecochg.2025.100096
- Paylangco, J. C. C., Gamalinda, E. F., Seroy, R. A., & Jumawan, J. C. (2020). Assessment of macroinvertebrates as bioindicators of water quality in the littoral zone of Lake Mainit, Philippines. Asian Journal of Biological and Life Sciences, 9(3), 371-378. 10.5530/ajbls.2020.9.56
- Pérez-Méndez, N., Alcaraz, C., Bertolero, A., Català-Forner, M., Garibaldi, L. A., González-Varo, J. P., Rivaes, S., & Martínez-Eixarch, M. (2022). Agricultural policies against invasive species generate contrasting outcomes for climate change mitigation and biodiversity conservation. Proceedings of the Royal Society B: Biological Sciences, 289(1985), 20221081. https://doi.org/10.1098/rspb.2022.1081
- Pierre, S. M., Quintana-Ascencio, P. F., Boughton, E. H., & Jenkins, D. G. (2017). Dispersal and local environment affect the spread of an invasive apple snail (Pomacea maculata) in Florida, USA. Biological Invasions, 19(9), 2647-2661. https://doi.org/10.1007/s10530-017-1474-5
- Prabhakaran, G., Bhore, S. J., & Ravichandran, M. (2017). Development and evaluation of poly herbal molluscicidal extracts for control of apple snail (Pomacea maculata). Agriculture, 7(3), 22. https://doi.org/10.3390/agriculture7030022
- Prabhakaran, G., Bhore, S., & Ravichandran, M. (2019). Development of a bait carrier material for apple snail (Pomacea maculata) based on its feed preferences using snail attractant tracking device. Journal of Natural Science, Biology and Medicine, 10(1), 8-15. https://www.researchgate.net/profile/Subhash-Bhore/publication/330852937_Development_of_a_bait_carrier_material_for_apple_snail_Pomacea_maculata_based_on_its_feed_preferences_using_snail_attractant_tracking_device/links/5c6d077c92851c1c9deebd97/Development-of-a-bait-carrier-material-for-apple-snail-Pomacea-maculata-based-on-its-feed-preferences-using-snail-attractant-tracking-device.pdf
- Qvarnstrom, Y., Bishop, H. S., & da Silva, A. J. (2013). Detection of rat lungworm in intermediate, definitive, and paratenic hosts obtained from environmental sources. Hawai'i Journal of Medicine & Public Health, 72(6 Suppl 2), 63–69. https://pmc.ncbi.nlm.nih.gov/articles/PMC3689491/
- Robertson, S. M. (2012). Potential threats of the exotic apple snail Pomacea insularum to aquatic ecosystems in Georgia and Florida. https://openscholar.uga.edu/record/14274
- Rosas, E. G., Bashara, C., Christie, D., Barnes, M. A., & Burks, R. L. (2025). Winning the shell game: environmental DNA (eDNA) confirms local control of the invasive apple snail, Pomacea maculata. Management of Biological Invasions, 16(2), 397-410. https://doi.org/10.3391/mbi.2025.16.2.05
- Rosli, N. A. M., Ismail, S. I., Nasir, N. M., Zainol, M., & Mokhtar, A. S. (2025). Field assessment of plant growth performance and residue persistence of saponin-based molluscicide formulations.
- Srijad, S., Sang-in, V., Pilapang, K., & Yomla, R. (2025). The effect of different periods of aestivation on recovery and nutritional composition of apple snail (Pomacea sp.). International Journal of Agricultural Technology, 21(4), 1479-1490. https://doi.org/10.63369/ijat.2025.21.4.1479-1490
- Teem, J. L., Qvarnstrom, Y., Bishop, H. S., da Silva, A. J., Carter, J., White-McLean, J., & Smith, T. (2013). The occurrence of the rat lungworm, Angiostrongylus cantonensis, in nonindigenous snails in the Gulf of Mexico region of the United States. Hawai'i Journal of Medicine & Public Health, 72(6 Suppl 2), 11. https://pmc.ncbi.nlm.nih.gov/articles/PMC3689474/
- Torres, O., Serrat, X., Sans, F. X., & Nogués, S. (2024). Manejo de malas hierbas en arrozales con presencia de caracol manzana en el Delta del Ebro. Revista de Ciências Agrárias, 47(1), 151-155. https://doi.org/10.19084/rca.34967
- Tookhy, N. A., Nur-Mahiza, M. I., Busayo Ibitoye, E., Lokman, H. I., & Shakhes, S. A. (2025). Freshwater snails in Malaysia: Diversity, roles in trematode transmission, and agricultural impacts. Pertanika Journal of Tropical Agricultural Science, 48(4). https://doi.org/10.47836/pjtas.48.4.09
- Underwood, E. (2018). Investigation of the population genetic structure, salinity tolerance, and occurrence of a parasite in the island apple snail, Pomacea maculata, in South Carolina, USA [Master's thesis, College of Charleston].
- Valente, R., Robles, M. D. R., & Diaz, J. I. (2020). Gastropods as intermediate hosts of Angiostrongylus spp. in the Americas: bioecological characteristics and geographical distribution. Memórias do Instituto Oswaldo Cruz, 115, e200236. https://doi.org/10.1590/0074-02760200236
- Wei, R., Xie, H. F., Wu, C. D., Hu, J., & Du, Y. Z. (2025). Impacts of climate change on the potential habitat suitability of Pomacea canaliculata and Pomacea maculata in East Asia. Zoological Studies, 64(56). https://doi.org/10.6620/ZS.2025.64-56
- Win, A. K., Naing, H. H., & Joshi, R. C. (2018). Managing the spread of invasive apple snails and possible utilization in aquaculture: A case in Myanmar. Fish for the People, 16(3), 38-40. http://hdl.handle.net/20.500.12066/4328
- Yang, Q. Q., Ip, J. C. H., Zhao, X. X., Li, J. N., Jin, Y. J., Yu, X. P., & Qiu, J. W. (2022). Molecular analyses revealed three morphologically similar species of non‐native apple snails and their patterns of distribution in freshwater wetlands of Hong Kong. Diversity and Distributions, 28(1), 97-111. https://doi.org/10.1111/ddi.13443
- Yap, C. K., & Al-Mutairi, K. A. (2025). Tissue-specific nickel accumulation and detoxification in Pomacea insularum: A biomonitoring tool for freshwater ecosystems. Polish Journal of Environmental Studies. https://doi.org/10.15244/pjoes/204564
- Yi, X. L., Liu, J., Cao, M. L., Xiong, J., Deng, Y. P., Wang, H. M., ... & Yang, H. (2024). Population genetics and genetic variation of Pomacea canaliculata (Gastropoda: Ampullariidae) in China revealed by sequence analyses of three mitochondrial genes. Ecology and Evolution, 14(1), e10836. https://doi.org/10.1002/ece3.10836
- Ramírez, R., Solis, M., Ampuero, A., Morín, J., Jimenez-Vasquez, V., Ramirez, J. L., ... & Shiga, B. (2020). Identificación molecular y relaciones evolutivas de Pomacea nobilis, base para la autenticación específica del churo negro de la Amazonia peruana. Revista peruana de biología, 27(2), 139-148. 10.15381/rpb.v27i2.17875
- Fan, J., Ma, Y., Xia, Y., Li, W., Lin, C., Liu, J., ... & Lan, T. (2026). Large-scale mitochondrial DNA analysis unravels the global invasion patterns of Pomacea snails (Gastropoda, Caenogastropoda, Ampullariidae). NeoBiota, 109, 1-24. https://neobiota.pensoft.net/article/189265/download/pdf/
Métadonnées additionnelles
| Objet | |
|---|---|
| Identifiants alternatifs | d94f4dcb-ef30-4dea-bace-eb32fbe41f04 |
| https://ipt.mincyt.gob.ar/resource?r=pmaculatainbiosur |