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Keywords = Ampullariidae

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17 pages, 1784 KB  
Article
Effects of Si and N Addition on Oryza sativa and Its Invasive Grazer Apple Snails (Ampullariidae): Resistance Traits and Feeding Metrics
by Wei Li, Jing-Yi Zhao, Hua Yu, Wen-Hong Dai, Yao-Bin Song and Ming Dong
Plants 2026, 15(15), 2357; https://doi.org/10.3390/plants15152357 - 30 Jul 2026
Viewed by 351
Abstract
Silicon, as a crucial element of plants, contributes to plants’ resistance to biotic stresses like herbivore feeding. In tropical and subtropical Asia, the apple snail (Ampullariidae) is an invasive aquatic herbivorous snail in agricultural and wetland ecosystems, like paddy fields, which suffer from [...] Read more.
Silicon, as a crucial element of plants, contributes to plants’ resistance to biotic stresses like herbivore feeding. In tropical and subtropical Asia, the apple snail (Ampullariidae) is an invasive aquatic herbivorous snail in agricultural and wetland ecosystems, like paddy fields, which suffer from heavy nitrogen eutrophication. However, little is known about the potential effects of supplementing rice leaves treated with silicon and nitrogen on the feeding metrics of apple snails (Pomacea spp.). This study conducted a greenhouse experiment to examine the effects of silicon and nitrogen addition on rice seedlings grazed by apple snails, with two levels of silicon addition (0 and 1.5 mM) and three levels of nitrogen addition (0.72, 1.44 and 5.76 mM). The results showed that silicon addition increased plant mass under low and high nitrogen addition, and increased the C/N ratio and tannin content only under the middle nitrogen addition, while it increased the leaf sulfur content of rice at all three levels of nitrogen addition. However, silicon addition significantly decreased the growth of apple snails while significantly increasing flavonoid content and the force of fracture of rice leaves across all nitrogen levels. This study indicates that silicon addition could improve the defense of rice against herbivory by invasive apple snails, providing insights into the protection of wetland crops in the context of eutrophication and biological invasion. Full article
(This article belongs to the Special Issue Physiology and Ecology of Aquatic Plants—2nd Edition)
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18 pages, 2272 KB  
Article
Unraveling the Population Structure of Temnocephala iheringi Across Host Associations and Geographic Regions
by Agustina Zivano, Carolina Noreña, Samantha A. Seixas, Francisco Brusa and Cristina Damborenea
Biology 2026, 15(13), 1020; https://doi.org/10.3390/biology15131020 - 26 Jun 2026
Viewed by 413
Abstract
Commensalism, a frequent type of interaction among freshwater invertebrates, remains poorly studied. Some turbellarians (Platyhelminthes: Temnocephalidae) are specialized obligate commensals of crustaceans, mollusks, insects, and turtles. In the Neotropics, Temnocephala iheringi inhabits the mantle cavity of snails (Mollusca: Gastropoda) from Pantanal (Brazil) to [...] Read more.
Commensalism, a frequent type of interaction among freshwater invertebrates, remains poorly studied. Some turbellarians (Platyhelminthes: Temnocephalidae) are specialized obligate commensals of crustaceans, mollusks, insects, and turtles. In the Neotropics, Temnocephala iheringi inhabits the mantle cavity of snails (Mollusca: Gastropoda) from Pantanal (Brazil) to the Pampean region of Argentina, where several species serve as hosts. This study aimed to molecularly characterize several populations of T. iheringi and to analyze their genetic and morphological variability across different host species and geographic areas. Using the mitochondrial COI marker, we assessed populations associated with five of its seven known host species through phylogenetic reconstructions, species delimitation approaches, and haplotype network analyses. Combined with morphological data, results support COI as an effective identification tool for Temnocephalidae. Several genetic lineages were identified and were largely congruent with collection localities. However, specimens associated with hosts displaying high dispersal capabilities (i.e., Pomacea canaliculata and P. maculata) showed low mitochondrial genetic differentiation and minimal phylogenetic structure across large distances, which may be consistent with recent dispersal and/or ongoing connectivity among populations. These findings provide new insights into the evolutionary dynamics of this specific temnocephalid–snail association. Given that some hosts are highly invasive and even considered pests in several countries, the data and genetic sequences generated in this study may prove valuable for future research on symbiont diversity and dispersal. Full article
(This article belongs to the Section Marine and Freshwater Biology)
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22 pages, 8094 KB  
Article
Comparative Mitogenome Analysis of Two Native Apple Snail Species (Ampullariidae, Pomacea) from Peruvian Amazon
by Alejandro Mendivil, Rina Ramírez, Jaime Morin, Jorge L. Ramirez, Raquel Siccha-Ramirez, Ricardo Britzke, Fátima Rivera, Andre Ampuero, Nilda Oliveros and Carlos Congrains
Genes 2023, 14(9), 1769; https://doi.org/10.3390/genes14091769 - 7 Sep 2023
Cited by 6 | Viewed by 4500
Abstract
Apple snails of the genus Pomacea Perry, 1810 (Mollusca: Caenogastropoda: Ampullariidae) are native to the Neotropics and exhibit high species diversity, holding cultural and ecological significance as an important protein source in Peru. However, most genetic studies in Pomacea have focused mostly on [...] Read more.
Apple snails of the genus Pomacea Perry, 1810 (Mollusca: Caenogastropoda: Ampullariidae) are native to the Neotropics and exhibit high species diversity, holding cultural and ecological significance as an important protein source in Peru. However, most genetic studies in Pomacea have focused mostly on invasive species, especially in Southeast Asia, where they are considered important pests. In this study, we assembled and annotated the mitochondrial genomes of two Pomacea species native to the Peruvian Amazon: Pomacea reevei Ampuero & Ramírez, 2023 and Pomacea aulanieri (Deville & Hupé, 1850). The mitogenomes of P. reevei and P. aulanieri comprise 15,660 and 16,096 bp, respectively, and contain the typical 37 genes of the animal mitochondria with a large control region of 292 bp in P. reevei and 524 bp in P. aulanieri—which fall within the range of what is currently known in Pomacea. Comparisons with previously published mitogenomes in Pomacea revealed differences in the overlapping of adjacent genes, the size of certain protein-coding genes (PCGs) and the secondary structure of some tRNAs that are consistent with the phylogenetic relationships between these species. These findings provide valuable insights into the systematics and genomics of the genus Pomacea. Full article
(This article belongs to the Special Issue Mitochondrial DNA Replication and Transcription)
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22 pages, 8194 KB  
Review
A Bibliometric Analysis of Research on Apple Snails (Ampullariidae)
by Fucheng Yao, Yingtong Chen, Jimin Liu, Zhong Qin, Zhaoji Shi, Qi Chen and Jiaen Zhang
Agronomy 2023, 13(7), 1671; https://doi.org/10.3390/agronomy13071671 - 21 Jun 2023
Cited by 10 | Viewed by 5920
Abstract
Apple snails (ASs), the freshwater snails of the family Ampullariidae, are widely spread in tropical and subtropical regions. Owing to their strong invasiveness and harmful effects on agricultural production and ecosystems, they have attracted considerable attention. However, less research has been conducted on [...] Read more.
Apple snails (ASs), the freshwater snails of the family Ampullariidae, are widely spread in tropical and subtropical regions. Owing to their strong invasiveness and harmful effects on agricultural production and ecosystems, they have attracted considerable attention. However, less research has been conducted on the whole picture of the current research status and development trends in the ASs field. For this purpose, we conducted a bibliometric analysis based on a total of 1028 publications regarding ASs published between 1900 and 2021 using VOSviewer 1.6.18 and CiteSpace 6.1.R3 software. The results suggest that ASs research has received increasing attention in recent years. The most productive country has been the USA, while the institution with the most publications was Consejo Nacional de Investigaciones Científicas y Técnicas Conicet. “Zoology” was the category of the most popular subject, Journal of Molluscan Studies was the primary journal, and P.R. Martin was the most outstanding author in ASs field. Invasive alien species, alarm response, copper (Cu) exposure, taxonomy and phylogenetic analysis, Angiostrongylus cantonensis (parasite), control (including molluscicidal activity), growth and reproduction, and feeding preferences were the main research hotspots. Further, “Pomacea maculata”, “Evolution”, “Biology”, “Digestive gland”, “Phylogeny”, “Identification”, “Pomacea canaliculata caenogastropoda”, “Diversity”, and “Nonnative apple snail” have been emerging active topics in recent years. These findings can help researchers in this area to better understand the direction and advances of ASs research and are valuable for future research and agricultural practice of apple snail control. Full article
(This article belongs to the Section Pest and Disease Management)
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13 pages, 2690 KB  
Article
Short-Term Estivation and Hibernation Induce Changes in the Blood and Circulating Hemocytes of the Apple Snail Pomacea canaliculata
by Cristian Rodriguez, Alejandra D. Campoy-Diaz and Maximiliano Giraud-Billoud
Metabolites 2023, 13(2), 289; https://doi.org/10.3390/metabo13020289 - 16 Feb 2023
Cited by 15 | Viewed by 4415
Abstract
States of natural dormancy include estivation and hibernation. Ampullariids are exemplary because they undergo estivation when deprived of water or hibernation when exposed to very low temperatures. Regardless of the condition, ampullariids show increased endogenous antioxidant defenses, anticipating the expected respiratory burst during [...] Read more.
States of natural dormancy include estivation and hibernation. Ampullariids are exemplary because they undergo estivation when deprived of water or hibernation when exposed to very low temperatures. Regardless of the condition, ampullariids show increased endogenous antioxidant defenses, anticipating the expected respiratory burst during reoxygenation after reactivation, known as “Preparation for Oxidative Stress (POS)”. In this work, we tested the POS hypothesis for changes in the blood and hemocytes of the bimodal breather Pomacea canaliculata (Ampullariidae) induced at experimental estivation and hibernation. We described respiratory (hemocyanin, proteins, lactate), antioxidant (GSH, uric acid, SOD, CAT, GST), and immunological (hemocyte levels, ROS production) parameters. We showed that, although the protein level remains unchanged in all experimental groups, hemocyanin increases in response to estivation. Furthermore, lactate remains unchanged in challenged snails, suggesting an aerobic metabolism during short-term challenges. Blood uric acid increases during estivation and arousal from estivation or hibernation, supporting the previously proposed antioxidant role. Regarding hemocytes, we showed that the total population increases with all challenges, and granulocytes increase during hibernation. We further showed that hibernation affects ROS production by hemocytes, possibly through mitochondrial inhibition. This study contributed to the knowledge of the adaptive strategies of ampullariids to tolerate adverse environmental conditions. Full article
(This article belongs to the Special Issue Response to Oxidative Stress as a Welfare Parameter)
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12 pages, 4687 KB  
Article
Study on the Synergistic Molluscicidal Effect of Pedunsaponin A and Niclosamide
by Chunping Yang, Yue Zhou, Chuanlei Wu, Xiao Yan, Pengcheng Cheng, Liya Luo, Xiaoyan Qiu, Min Zhang, Guangwei Qin, Yangyang Zhang and Huabao Chen
Molecules 2022, 27(21), 7623; https://doi.org/10.3390/molecules27217623 - 7 Nov 2022
Cited by 1 | Viewed by 2386
Abstract
Niclosamide (NI) is the main molluscicide used to control Pomacea canaliculata (Lamarck) (Architaenioglossa: Ampullariidae). However, NI failed to inhibit snail climbing during the treatment process. In this study, we examined the effect of NI combined with pedunsaponin A at an ineffective concentration. The [...] Read more.
Niclosamide (NI) is the main molluscicide used to control Pomacea canaliculata (Lamarck) (Architaenioglossa: Ampullariidae). However, NI failed to inhibit snail climbing during the treatment process. In this study, we examined the effect of NI combined with pedunsaponin A at an ineffective concentration. The molluscicidal effect of Pedunsaponin A on NI was evidently synergistic after 48 h, and the synergism ratio (SR) was 1.82 after treatment for 72 h at 0.8 mg·L−1. Examination of the climbing adhesion effect showed that a high concentration of Pedunsaponin A (0.4 mg·L−1 and 0.8 mg·L−1) combined with NI significantly inhibited the climbing of P. canaliculata. We further studied the synergism mechanism; the results of histopathological observation showed that the siphon appeared cavities, the muscle fibers of the ventricular were severely dissolved, and kidney tubule arrangement was distorted after NI adding Pedunsaponin A. In addition, the hemocyte survival rate and the content of hemocyanin decreased significantly. According to the results of our study, the synergism mechanism may hinder oxygen transport of P. canaliculata, influencing the supply of energy; the ability of immune defense and excretion and metabolic detoxification decreased, prolonging the action time of NI in the body. Full article
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22 pages, 7356 KB  
Article
Comparative Characterization of the Complete Mitochondrial Genomes of the Three Apple Snails (Gastropoda: Ampullariidae) and the Phylogenetic Analyses
by Huirong Yang, Jia-en Zhang, Jun Xia, Jinzeng Yang, Jing Guo, Zhixin Deng and Mingzhu Luo
Int. J. Mol. Sci. 2018, 19(11), 3646; https://doi.org/10.3390/ijms19113646 - 19 Nov 2018
Cited by 23 | Viewed by 4802
Abstract
The apple snails Pomacea canaliculata, Pomacea diffusa and Pomacea maculate (Gastropoda: Caenogastropoda: Ampullariidae) are invasive pests causing massive economic losses and ecological damage. We sequenced and characterized the complete mitochondrial genomes of these snails to conduct phylogenetic analyses based on comparisons with [...] Read more.
The apple snails Pomacea canaliculata, Pomacea diffusa and Pomacea maculate (Gastropoda: Caenogastropoda: Ampullariidae) are invasive pests causing massive economic losses and ecological damage. We sequenced and characterized the complete mitochondrial genomes of these snails to conduct phylogenetic analyses based on comparisons with the mitochondrial protein coding sequences of 47 Caenogastropoda species. The gene arrangements, distribution and content were canonically identical and consistent with typical Mollusca except for the tRNA-Gln absent in P. diffusa. An identifiable control region (d-loop) was absent. Bayesian phylogenetic analysis indicated that all the Ampullariidae species clustered on the same branch. The genus Pomacea clustered together and then with the genus Marisa. The orders Architaenioglossa and Sorbeoconcha clustered together and then with the order Hypsogastropoda. Furthermore, the intergenic and interspecific taxonomic positions were defined. Unexpectedly, Ceraesignum maximum, Dendropoma gregarium, Eualetes tulipa and Thylacodes squamigerus, traditionally classified in order Hypsogastropoda, were isolated from the order Hypsogastropoda in the most external branch of the Bayesian inference tree. The divergence times of the Caenogastropoda indicated that their evolutionary process covered four geological epochs that included the Quaternary, Neogene, Paleogene and Cretaceous periods. This study will facilitate further investigation of species identification to aid in the implementation of effective management and control strategies of these invasive species. Full article
(This article belongs to the Section Biochemistry)
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17 pages, 593 KB  
Article
Importance of Macrophyte Quality in Determining Life-History Traits of the Apple Snails Pomacea canaliculata: Implications for Bottom-Up Management of an Invasive Herbivorous Pest in Constructed Wetlands
by Rita S. W. Yam, Yen-Tzu Fan and Tzu-Ting Wang
Int. J. Environ. Res. Public Health 2016, 13(3), 248; https://doi.org/10.3390/ijerph13030248 - 24 Feb 2016
Cited by 25 | Viewed by 5959
Abstract
Pomacea canaliculata (Ampullariidae) has extensively invaded most Asian constructed wetlands and its massive herbivory of macrophytes has become a major cause of ecosystem dysfunctioning of these restored habitats. We conducted non-choice laboratory feeding experiments of P. canaliculata using five common macrophyte species in [...] Read more.
Pomacea canaliculata (Ampullariidae) has extensively invaded most Asian constructed wetlands and its massive herbivory of macrophytes has become a major cause of ecosystem dysfunctioning of these restored habitats. We conducted non-choice laboratory feeding experiments of P. canaliculata using five common macrophyte species in constructed wetlands including Ipomoea aquatica, Commelina communis, Nymphoides coreana, Acorus calamus and Phragmites australis. Effects of macrophytes on snail feeding, growth and fecundity responses were evaluated. Results indicated that P. canaliculata reared on Ipomoea had the highest feeding and growth rates with highest reproductive output, but all individuals fed with Phragmites showed lowest feeding rates and little growth with poorest reproductive output. Plant N and P contents were important for enhancing palatability, supporting growth and offspring quantity of P. canaliculata, whilst toughness, cellulose and phenolics had critically deterrent effects on various life-history traits. Although snail offspring quality was generally consistent regardless of maternal feeding conditions, the reduced growth and offspring quantity of the poorly-fed snails in constructed wetlands dominated by the less-palatable macrophytes could limit the invasive success of P. canaliculata. Effective bottom-up control of P. canaliculata in constructed wetlands should involve selective planting strategy using macrophytes with low nutrient and high toughness, cellulose and phenolic contents. Full article
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