Wenzhou shrimp virus

Totiviridae Arthropoda extended_hq

PP215285.1

温州虾病毒

Genome And Source

Length
10,562
Type
ssRNA(+)
GC%
51.8%
Completeness
gene_fragment
Country
China
Year
2020

📋 Data Provenance

🗄️
Source
GenBank / NCBI
🔗
Accession
PP215285.1
📁
Entry Type
complete_genome
🕒
Last Updated
N/A

Genome Browser

No ORF position data available for this genome.

Curation Status

97
Isolates
8
Hosts
1
Proteins
Sequence

Related Viruses

No related viruses found.

Reference

Widespread detection of Wenzhou shrimp virus 8 (WzSV8) and it's implication in cultured shrimp (Penaeus vannamei) farms of India

Praveena PE; Swain S; Allie NU; Kathirkaman V; Kannan S; Balagopal KB; Shreelekha MP; Bhuvaneswari T; Lal KK; Otta SK

Journal of invertebrate pathology 2025

PMID: 40744121 DOI: 10.1016/j.jip.2025.108412

ICTV Mapping

No ICTV mapping is available or reviewed for this record.

Reviewed Evidence

Only manual-checked evidence records are displayed. Inferred records (without direct isolate linkage) are shown with a yellow badge.

Virulence / pathogenicity

Auto-extracted: mortality in 'Widespread detection of Wenzhou shrimp virus 8 (WzSV8) and it's implication in cultured shrimp (Penaeus vannamei) farms of India'
mortality · medium
Finally, nanovaccine efficacy was tested in a lethal WSSV challenge model in vivo in shrimp.
pathogenicity · medium
There was minimal (n = 7) overlap in the differentially expressed miRNAs detected in shrimp and crabs in response to WSSV challenge.
pathogenicity · medium
The shrimp were fed with antibody added to the shrimp diet (10 µg of respective antibody per gram of feed (equivalent to 8% bodyweight/day)) every day for three days prior to the challenge test.
pathogenicity · medium
Case and control farms were detected as below: (1) Cases shrimp farms met two requests: (a) Had at least one pond that was positive for AHPND based on real-time PCR and (b) had tiger shrimps or white leg shrimps in at least one pond, showing at least
pathogenicity · medium
When working with archival DFPE shrimp tissue, there is an additional challenge because shrimp tissues are fixed in Davidson’s fixative instead of formalin.
pathogenicity · medium
With the lack of immortal shrimp cell lines, disease challenges can be used to identify pathogenic agents infecting M.
pathogenicity · medium
However, the histological images of shrimp hepatopancreas indicated that the infection rate significantly reduced from 60.0% to 11.1% in shrimps fed with LAB-supplemented feeds and challenged with AHPND V.
pathogenicity · medium
Molluscan cells in culture: Primary cell cultures and cell lines Detection and Description of a Particular Ostreid Herpesvirus 1 Genotype Associated with Massive Mortality Outbreaks of Pacific oysters, Crassostrea gigas, in France in 2008 Identificat
pathogenicity · medium
The evaluation of the safety of the cellulolytic marine bacterial strains for shrimp was tested by immersion challenge with cellulolytic bacteria.
pathogenicity · medium

Temperature

These findings suggest that the initial stages of infection are key to resistance to WSSV in the crab and highlight possible pathways that could be targeted in farmed crustacean to enhance resistance to WSD.Keywords: white spot disease (WSD), endocyt
temperature · medium
2057 each experiment, shrimp were transferred to an experimental system located at the Laboratory of Virology at Wageningen University and stocked in 180-liter aquariums, each fitted with an individual filter system (Eheim, Germany), heat- ing (Schego
temperature · medium
Oral delivery of WSSV hub dsRNA and WSSV challenge Shrimp Penaeus monodon (10 g body weight) were obtained from a local farm and were acclimatized in a wet laboratory in 1000 liters aquaria containing continuously aerated artificial seawater at 20 pp
temperature · medium
Outlines of the Immune System of Shrimp Fish and shrimp differ significantly in their ability and the degree to which they respond to immune challenge.
Shrimp farming is an aquaculture business for the cultivation of marine shrimps or prawns for human consumption and is now considered as a major economic and food production sector as it is an increasingly important source of protein available for human consumption.
temperature · medium
In order to know the molecular mechanisms of WSS outbreak induced by temperature variation and the biological changes of the host at the initial stage of WSSV acute infection, RNA-Seq technology was used to analyze the differentially expressed genes
temperature · medium
Proteomic analysis of muscle between hybrid abalone andparental lines Haliotis gigantea Reeve and Haliotis discus hannai Ino A proteomic study on postdiapaused embryonic development of brine shrimp (Artemia franciscana) Proteomic Comparison between T
temperature · medium
These results imply that the cellular immune system of shrimp, particularly phagocytosis, is capable of a degree of specificity and shows the phenomenon of ‘immune priming’ reported by other workers.
temperature · medium
Prior to experimental challenges, naïve Pacific whiteleg shrimp Penaeus vannamei (2–5g fresh weight) were purchased from local SPF shrimp broodstock producers and acclimated in the laboratory for 2 days in 20 L artificial seawater (Marinium) at 20 pp
temperature · medium
In this study, using a highly controlled gnotobiotic brine shrimp model system, we aimed to investigate whether phloroglucinol potentiates the generation of prooxidant activity and heat shock protein 70 (Hsp70) production in vivo and whether this put
temperature · medium
qPCR analysis of the distribution of NdTryp in different tissues and during shrimp ontogenesis The melt curve analysis revealed a single peak for the NdTryp gene, indicating the qPCR product has a high degree of specific amplification.
temperature · medium

Diagnostic And Control Records

No curated diagnostic or control records are available for this virus.

Proteins

🧬

No protein annotations available

Related Literature (850 articles)

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Biological Functions of Silver Nanowires in Inhibiting
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Direct LAMP for on-site rapid detection of Vibrio parahaemolyticus in shrimp (Litopenaeus vannamei) aquaculture water.
Pu X, Lu F, Yang Q, Han Z, Zhu X, Chen J, Zhang D, Zhang X
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Transcriptomic study of WSSV infection in Litopenaeus vannamei lymphoid organ via single nuclei RNA sequencing.
Florea A, Wade N, Salisbury SJ, Furniss J, Fraslin C, Chapuis A, Sullivan K, Stewart R, Robledo D, Bean TP
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Insect SVWC Proteins: A Diverse Cytokine-like Family Orchestrating Multilayered Antiviral and Antibacterial Immunity.
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Whole genome and phylogenomic insights into Vibrio parahaemolyticus from Pacific White Shrimp reveal resistance and virulence traits in Bangladeshi aquaculture.
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De novo transcriptome assembly and annotation of Penaeus monodon hemocytes under WSSV infection and STAT knockdown.
Jatuyosporn T, Laohawutthichai P, Cornejo-Granados F, Gallardo-Becerra L, Tassanakajon A, Hurtado-Ramírez JM, Ochoa-Leyva A, Krusong K
2026
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2026
Native
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2026
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Sharma S, Rumahorbo PS, Kondo S, Watanabe S, Okada Y, Gautam BP, Sato K
2026
[A case of cerebellar-limited HIV-associated progressive multifocal leukoencephalopathy diagnosed with the aid of the shrimp sign].
Ojio H, Kuroda T, Nohara T, Matsuoka K, Wada T, Murakami H
2026
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2026
Amarilloviruses of Aquatic Animals.
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2026
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2026
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Crustacean Mab21 proteins drive tissue-specific antiviral immunity by activating IKKε outside the canonical nucleic-acid sensing paradigm.
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AlphaFold modeling of the white spot syndrome virus polymerase.
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2026
White spot syndrome virus IE1 protein hijacks the host pentose phosphate pathway to fuel viral replication.
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2026
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2026
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Changes in Intestinal Microbial Community of the Black Tiger Shrimp
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WSSV-induced reversal of the malate-aspartate shuttle facilitates viral replication in shrimp hemocytes.
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Managing
Jara-Medina NR, Cedeño-Pinargote AC, Beltrán-Noboa A, Tejera E, Machado A
2025
Histone H3K27 acetylation mediated by KAT8 maintains antiviral trained immunity in shrimp induced by inactivated white spot syndrome virus.
Lv LX, Zhang P, Ma Y, Sun Y, Wang H, Zhao XF, Wang JX
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Geographic Distribution

China 96 isolates
India 1 isolates

Taxonomy Information

Family
Totiviridae
Host Phylum
Arthropoda
Genome Type
ssRNA(+)
Discovery Method
metagenomic_with_host_evidence

Related Isolates

Accession Length GC Completeness Country Year
KM817746.1 898 48.8 gene_fragment China 2013
KX882860.1 2,685 51.0 genome_segment China 2013
KX882861.1 1,924 53.5 genome_segment China 2013
KX883298.1 9,997 42.1 gene_fragment China 2013
KX883551.1 3,186 50.6 gene_fragment China 2013
KX883617.1 3,195 50.4 gene_fragment China 2013
KX883794.1 10,472 50.8 gene_fragment China 2013
KX883826.1 10,183 50.2 gene_fragment China 2014
KX883978.1 10,331 44.4 gene_fragment China 2013
KX883979.1 8,524 44.8 gene_fragment China 2013
KX883980.1 9,999 41.8 gene_fragment China 2013
KX883984.1 10,445 52.2 gene_fragment China 2013
KX883985.1 8,077 46.7 gene_fragment China 2013
KX884312.1 9,716 42.4 gene_fragment China 2014
KX884315.1 8,664 35.2 gene_fragment China 2014
KX884317.1 10,528 43.6 gene_fragment China 2014
KX884321.1 9,887 41.1 gene_fragment China 2014
KX884322.1 9,291 30.5 gene_fragment China 2014
KX884347.1 8,636 46.6 gene_fragment China 2013
KX884348.1 10,378 44.5 gene_fragment China 2013
KX884352.1 9,997 42.1 gene_fragment China 2013
KX884450.1 11,938 41.9 gene_fragment China 2014
KX884451.1 6,699 46.7 gene_fragment China 2014
KX884452.1 4,615 47.9 gene_fragment China 2014
KX884453.1 6,746 41.0 gene_fragment China 2014
KX884454.1 4,083 42.1 gene_fragment China 2014
KX884456.1 11,560 49.7 gene_fragment China 2014
KX884457.1 7,447 45.4 gene_fragment China 2014
KX884458.1 11,119 57.0 gene_fragment China 2014
KX884856.1 6,691 39.2 gene_fragment China 2014
KX884857.1 3,267 38.6 gene_fragment China 2014
KX884858.1 799 44.2 gene_fragment China 2014
KX884859.1 6,496 30.8 gene_fragment China 2014
KX884860.1 1,517 36.5 gene_fragment China 2014
KX884861.1 8,923 36.7 gene_fragment China 2014
KX884862.1 8,078 38.6 gene_fragment China 2014
MT520807.1 1,361 49.4 complete_genome China 2013
MZ868508.1 560 51.4 partial_sequence China 2015
NC_031290.1 898 48.8 gene_fragment China 2013
NC_032143.1 6,691 39.2 gene_fragment China 2014
NC_032144.1 3,267 38.6 gene_fragment China 2014
NC_032145.1 799 44.2 gene_fragment China 2014
NC_032420.1 9,997 42.1 gene_fragment China 2013
NC_032739.1 11,938 41.9 gene_fragment China 2014
NC_032781.1 11,560 49.7 gene_fragment China 2014
NC_032784.1 10,472 50.8 gene_fragment China 2013
NC_032793.1 7,447 45.4 gene_fragment China 2014
NC_032802.1 11,119 57.0 gene_fragment China 2014
NC_032810.1 9,716 42.4 gene_fragment China 2014
NC_032825.1 8,524 44.8 gene_fragment China 2013
NC_032830.1 8,664 35.2 gene_fragment China 2014
NC_032839.1 10,528 43.6 gene_fragment China 2014
NC_032852.1 10,445 52.2 gene_fragment China 2013
NC_032858.1 9,887 41.1 gene_fragment China 2014
NC_032864.1 9,291 30.5 gene_fragment China 2014
NC_032989.1 8,636 46.6 gene_fragment China 2013
NC_032996.1 10,378 44.5 gene_fragment China 2013
NC_033065.1 10,183 50.2 gene_fragment China 2014
NC_033164.1 3,195 50.4 gene_fragment China 2013
NC_033291.1 6,699 46.7 gene_fragment China 2014
NC_033292.1 4,615 47.9 gene_fragment China 2014
NC_033293.1 6,746 41.0 gene_fragment China 2014
NC_033294.1 4,083 42.1 gene_fragment China 2014
NC_033295.1 1,924 53.5 genome_segment China 2013
NC_033300.1 2,685 51.0 genome_segment China 2013
PP178640.1 482 50.8 partial_sequence India 2022
PP214947.1 6,270 52.1 partial_sequence China 2020
PP214948.1 3,754 52.5 partial_sequence China 2018
PP214949.1 3,715 52.1 partial_sequence China 2018
PP214950.1 4,102 52.9 partial_sequence China 2018
PP214951.1 4,529 53.0 partial_sequence China 2018
PP214952.1 4,306 52.4 partial_sequence China 2019
PP214953.1 4,184 52.6 partial_sequence China 2020
PP215283.1 10,570 51.5 gene_fragment China 2020
PP215284.1 10,558 51.8 gene_fragment China 2020
PP215285.1 10,562 51.8 gene_fragment China 2020
PP215286.1 10,563 51.7 gene_fragment China 2020
PP215287.1 10,561 51.8 gene_fragment China 2020
PP215288.1 10,565 51.8 gene_fragment China 2020
PP215289.1 10,564 51.7 gene_fragment China 2020
PP215290.1 10,567 51.8 gene_fragment China 2020
PP215291.1 10,571 51.7 gene_fragment China 2020
PP215292.1 10,572 51.7 gene_fragment China 2020
PP215293.1 10,473 51.9 gene_fragment China 2020
PP215294.1 10,569 51.9 gene_fragment China 2020
PP215295.1 10,572 51.6 gene_fragment China 2020
PP215296.1 10,568 51.7 gene_fragment China 2020
PP215297.1 10,567 51.8 gene_fragment China 2020
PP215298.1 10,578 51.6 gene_fragment China 2020
PP215299.1 10,384 51.9 gene_fragment China 2020
PP215300.1 10,569 51.8 gene_fragment China 2020
PP215301.1 10,537 51.9 gene_fragment China 2020
PP215302.1 10,551 51.7 gene_fragment China 2020
PP215303.1 10,551 51.7 gene_fragment China 2020
PP215304.1 10,567 51.8 gene_fragment China 2020
PP215305.1 10,564 51.7 gene_fragment China 2020
PP334143.1 2,986 53.2 unknown China 2019

Sequence

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