Area of research
Insect Science · Health, Toxicology and Mutagenesis
Research interest
Research interests include Biology, Pomacea canaliculata, Snail, Ecology, Microplastics, and Gut flora.
Pomacea canaliculata alters the composition, diversity, function, and assembly of bacterial community in freshwater plastisphere, shifting it closer to gut microbiota
Exploiting the gut microbiota of aquatic animals as indicators of microplastic pollution using interpretable machine learning models
Invasive apple snails with their core microbes are underestimated hotspots for disseminating antibiotic resistance genes and virulence factors in aquatic habitats
Integrated Analysis of Survival, Physiological‐Biochemical, and Transcriptomic Changes Reveals the Impact of Saline Stress on the Freshwater Snail <i>Pomacea canaliculata</i>
Microplastics predominantly affect gut microbiota by altering community structure rather than richness and diversity: A meta-analysis of aquatic animals
More deterministic assembly constrains the diversity of gut microbiota in freshwater snails
Strategies of invasive snail <scp><i>Pomacea canaliculata</i></scp> during hibernation in rice fields of south China: effects of body size, sex, and soil depth
Cold Tolerance and Physiological Response of Natural Overwintering <i>Pomacea canaliculata</i> in South China
Effect of Metaldehyde on Survival, Enzyme Activities, and Histopathology of the Apple Snail Pomacea canaliculata (Lamarck 1822)
Niche conservatism and geographical range expansion of Pomacea canaliculata and Pomacea maculata in non-native United States and China
Addition of organic amendments derived from invasive apple snails alleviated soil acidification, improved soil nitrogen and phosphorus effectiveness, microbial growth and maize yield in South China
A Bibliometric Analysis of Research on Apple Snails (Ampullariidae)
Ca2+ addition facilitates the shell repair with eggs production of Pomacea canaliculata through biomineralization and food intaking regulation