Potential of the Snail-Parasitic Nematode Phasmarhabditis eagyptiaca Azzam 2023 to Control Terrestrial and Freshwater Snails Under Laboratory and Field Conditions

Theodor Bilharz Research Institute

Bibliographic Information

Authors: Azzam K.M.; El Husseini M.M.; El-Hommossany K.

Journal: Egyptian Journal of Aquatic Biology and Fisheries

Publisher: Egyptian Society for the Development of Fisheries and Human Health

Publication Date: 4 January 2026

Volume / Issue: Volume 30 / Issue 1

Pages: 167–184

ISSN: 11106131

DOI: 10.21608/ejabf.2026.450460.7185

Scopus: View on Scopus

Document Type: Article

Access: All Open Access; Gold Open Access


Authors and Affiliations

Azzam K.M., Plant Protection Research Institute, Agricultural Research Center, Dokki, Giza, Egypt; El Husseini M.M., Center of Biological Control, Faculty of Agriculture Cairo University, Egypt; El-Hommossany K., Theodor Bilharz Research Institute, Egypt


Abstract

In Egypt, over 20 species of freshwater snails, 16 land snail species, and three slugs attack approximately 64 plant types. All terrestrial and freshwater snails cause significant damage to crops, in addition to serving as intermediate hosts for numerous parasitic diseases that afflict humans and livestock and sheep. The interactions between nematodes and gastropods range from accidental phoresis to parasitic or pathogenic relationships. Eight species of snail-parasitic nematodes have been identified in Egypt: Phasmarhabditis tawfiki Azzam, P. eagyptiaca Azzam, P. eobaniae Azzam, P. hermaphrodita (Schneider, 1859), Rhabditis sp., Diploscapter sp., Cephalobus sp., and Agfa sp. Consequently, these nematodes must be researched further to determine their potential for biological pest control. Phasmarhabditis eagyptiaca Azzam 2023 was recently reported, and its capability to kill various terrestrial snails, slugs, and aquatic snails was investigated. The present study examines the effect of the nematode P. eagyptiaca on snail mortality across terrestrial and freshwater species under laboratory and outdoor conditions to clarify its potential role in snail control. This investigation showed a significant positive correlation between nematode concentration and mortality rates for both terrestrial and aquatic snails. The time required to reach total mortality decreased as nematode concentration increased. Furthermore, this nematode affects immature snails more rapidly than mature snails. Infected terrestrial snails yielded a higher recovery of nematodes at lower concentrations than at higher ones, though the time of recovery was shorter at higher concentrations. According to the study's findings, this nematode could play an important role in the biological control of terrestrial and freshwater snails. © 2026, Egyptian Society for the Development of Fisheries and Human Health. All rights reserved.


Keywords

Parasitic nematode; Phasmarhabditis; Rhabditidae; Snails


Citation Information

Scopus Citations: 0


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