Publications by authors named "GuiTang Wang"

Article Synopsis
  • Ichthyophthiriasis, or white spot disease, poses serious economic risks for fish farmers, making it essential to understand its pathogenic mechanisms for effective prevention.
  • This study used single-cell RNA sequencing to analyze the stages of the parasite Ichthyophthirius multifiliis, identifying key proteins involved in its invasion, particularly at the theront stage.
  • The research highlighted the role of cysteine proteases and demonstrated that the inhibitor E-64 effectively kills the theront and protomont stages of the parasite, paving the way for future strategies against Ichthyophthiriasis.
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Background: The Bucephalidae is a large family of digenean trematodes but most previous analyses of its phylogenetic position have relied on a single mitochondrial gene or morphological features. Mitochondrial genomes (mitogenomes) remain unavailable for the entire family. To address this, we sequenced the complete mitogenome of Dollfustrema vaneyi and analyzed the phylogenetic relationships with other trematodes.

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Article Synopsis
  • - The study investigates the "dilution effect" on the transmission of the parasite Gyrodactylus kobayashii among goldfish by examining the impact of different host species and their behaviors while keeping goldfish density constant.
  • - Goldfish paired with low-competence Prussian carp showed a significant reduction in parasite abundance compared to goldfish in isolation, whereas mixing with non-competent grass carp and swordtails did not significantly change infection levels.
  • - Observations reveal that goldfish behavior, including increased distance and decreased swimming speed when mixed with other species, indicates that the presence of low-competence hosts can influence the dynamics of disease transmission.
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  • Ichthyophthirius multifiliis is a significant parasite affecting aquaculture and ornamental fish, with few effective treatment options available.
  • This study employed RT-qPCR to analyze the immune response of the fish species Rhinogobio ventralis, focusing on TLR genes and various cytokines in different tissues during infection.
  • Findings showed upregulation of key immune genes in infected fish, indicating their role in the immune response, while pathological examination revealed severe damage to gills and fins due to the parasite.
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  • Studies on mitochondrial genome evolution show varying results, particularly in flatworms, which have the fastest-evolving mitogenomic sequences among bilaterians.
  • Researchers analyzed 223 flatworm species using phylogenetic models, finding that factors like thermic host environment and longevity had minimal effect on sequence evolution and genome size.
  • The study highlights that parasitism significantly explains branch length variability in flatworms, with free-living turbellaria evolving more quickly than parasitic Neodermata, suggesting the need to consider lineage-specific factors and the episodic nature of evolutionary changes in these analyses.
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The liver fluke disease caused by is one of the most serious food-borne parasitic diseases in China. Many freshwater fish and shrimps can be infected with metacercariae as the second intermediate hosts in endemic regions. Owing to the lack of infected humans and the good administration of pet dogs and cats in cities of non-endemic regions, few fish are expected to be infected with metacercariae in urban lakes.

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Three new species of Gyrodactylus are described from three species of bitterling in Donghu Lake, China: Gyrodactylus ocellorhodei n. sp. from Rhodeus ocellatus; G.

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Article Synopsis
  • - The study focused on Balantidium ctenopharyngodoni, the only ciliate found in the hindgut of grass carp, and successfully cultivated it for genome sequencing.
  • - Researchers created a high-quality genome assembly of 68.66 Mb with 22,334 nanochromosomes, predicting 29,348 protein-coding genes, most of which were supported by RNA sequencing data.
  • - Findings also highlighted genes related to carbohydrate binding, adaptation to anaerobic environments, and provided insights into the genetic and molecular traits of balantidia in herbivorous fish.
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Although parasitic copepods of the genus Ergasilus von Nordmann, 1832 are globally distributed parasites of fish, their phylogenetic relationships with other Copepoda are not clear, and the characteristics of their mitochondrial genomes (mitogenomes) are not thoroughly understood. The objective of this study was to address these knowledge gaps by sequencing the complete mitogenome of Ergasilus tumidus Markevich, 1940. The complete mitogenome (GenBank Acc.

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Gibel carp (Carassius auratus gibelio) is an important economically farmed fish in China. Chilodonella hexasticha parasitizes on the gills and fins of host fish, causing disruption to their normal respiration and movement, ultimately resulting in death of the fish. In this study, a combination of histopathological, immunohistochemical, transferase dUTP nick end labeling (TUNEL), multi-omics, and molecular approaches were employed to identify the immune reaction and cell apoptosis in gill tissue in response to C.

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Background: Gyrodactylus is a lineage of monogenean flatworm ectoparasites exhibiting many features that make them a suitable model to study the host-parasite coevolutionary dynamics. Previous coevolutionary studies of this lineage mainly relied on low-power datasets (a small number of samples and a single molecular marker) and (now) outdated algorithms.

Methods: To investigate the coevolutionary relationship of gyrodactylids and their fish hosts in high resolution, we used complete mitogenomes (including two newly sequenced Gyrodactylus species), a large number of species in the single-gene dataset, and four different coevolutionary algorithms.

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Article Synopsis
  • The study researched the prevalence of a specific parasite in fish from natural water bodies in Tibet during September 2020 and August 2021.
  • The parasite was most prevalent in one species of fish at 33.73%, and overall, exotic fish showed no signs of infection.
  • Results indicated higher infection rates in certain locations, like Boqu Zangbo and Cuona Lake, compared to Lhasa region sites, highlighting the need for urgent measures to protect indigenous fish from the parasite.
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The genomic evolution of Polyopisthocotylea remains poorly understood in comparison to the remaining three classes of Neodermata: Monopisthocotylea, Cestoda, and Trematoda. Moreover, the evolutionary sequence of major events in the phylogeny of Neodermata remains unresolved. Herein we sequenced the mitogenome and transcriptome of the polyopisthocotylean Diplorchis sp.

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Background: Hosts, parasites, and microbiota interact with each other, forming a complex ecosystem. Alterations to the microbial structure have been observed in various enteric parasitic infections (e.g.

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Introduction: Parasitic ciliates are protozoans with a global distribution. Along with the gut microbiota, they have formed a micro-ecosystem that affects the host's nutrition, metabolism, and immunity. The interactions and relationships among the three components of this microecosystem (protozoa, gut microbiota, and host) remain only partially understood.

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Anaerobic parasitic ciliates are a specialized group of ciliates that are adapted to anoxic and oxygen-depleted habitats. Among them, Balantidium polyvacuolum, which inhabits the hindgut of Xenocyprinae fishes, has received very limited scientific attention, so the molecular mechanism of its adaptation to the digestive tract microenvironment is still unclear. In this study, transmission electron microscopy (TEM) and single-cell transcriptome analysis were used to uncover the metabolism of B.

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The evidence that parasitic animals exhibit elevated mitogenomic evolutionary rates is inconsistent and limited to Arthropoda. Similarly, the evidence that mitogenomic evolution is faster in species with low locomotory capacity is limited to a handful of animal lineages. We hypothesised that these two variables are associated and that locomotory capacity is a major underlying factor driving the elevated rates in parasites.

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Antibiotic resistance genes (ARGs), emerging environmental contaminants, have become challenges of public health security. However, the distribution and drivers of ARGs, especially high-risk ARGs, in large-scale aquaculture sediments remain unknown. Here, we collected sediment samples from 40 crayfish ponds in seven main crayfish culture provinces in China and then investigated the distribution and risk of ARGs based on high-throughput sequencing and quantitative PCR techniques.

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is a harmful parasitic ciliate that can cause severe damage to fish and high mortalities worldwide. Its congeneric species, , is a facultative parasite that not only can be free-living but also can parasitize on fish gills and fins. In this study, single-cell transcriptomes of these two species were assembled and characterized.

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Copepoda is a large and diverse group of crustaceans, which is widely distributed worldwide. It encompasses roughly 9 orders, whose phylogeny remains unresolved. We sequenced the complete mitochondrial genome (mitogenome) of (Markevich, 1940) and used it to explore the phylogeny and mitogenomic evolution of Copepoda.

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We describe the characterization of a novel fish leech species found on the gills of bighead carp () from lakes and reservoirs in China. This leech is morphologically similar to recorded on goldfish and common carp. However, there are 0-2 pairs of symmetrical or asymmetrical eyes and 10 pairs of pulsatile vesicles in the newly discovered leech, in remarkable contrast to .

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Background: Chilodonella uncinata is an aerobic ciliate capable of switching between being free-living and parasitic on fish fins and gills, causing tissue damage and host mortality. It is widely used as a model organism for genetic studies, but its mitochondrial metabolism has never been studied. Therefore, we aimed to describe the morphological features and metabolic characteristics of its mitochondria.

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The rare minnow is an ideal model organism for toxicological research. species are usually found on the gills of this rare minnow in laboratory farming systems. Dactylogyrid infection may change the sensibility of fish to toxicants and affect toxicological evaluations.

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Antibiotics are largely applied in aquaculture to increase production and control diseases, while how the antibiotics used in pond farming influence the distribution of antibiotics in receiving water seasonally is still not well understood. In this study, the variations of 15 frequently used antibiotics in Honghu Lake and surrounding ponds were investigated seasonally to figure out the impact of pond farming on antibiotics distributions in Honghu Lake. Results showed that the antibiotic concentrations in fish ponds ranged from 11.

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