DQ189990.1
罗氏沼虾诺达病毒
Genome And Source
Length
606
Type
ssRNA(+)
GC%
39.4%
Completeness
mRNA
Country
Thailand
Year
N/A
📋 Data Provenance
Genome Browser
No ORF position data available for this genome.
Curation Status
100
Isolates
3
Hosts
1
Proteins
✓
Sequence
Related Viruses
No related viruses found.
Outbreak Events
None
Associated with WTD outbreaks in prawn hatcheries; mortality mainly in larval stages with XSV co-infection
Reference
White tail disease of the giant freshwater prawn Macrobrachium rosenbergii in Thailand.
Yoganandhan Kalidoss; Leartvibhas Manee; Sriwongpuk Supamas; Limsuwan Chalor
Diseases of aquatic organisms 2006
PMID: 16724570
DOI: 10.3354/dao069255
ICTV Mapping
No reviewed species-level mapping is available. Family-level ICTV references:
- Alphanodavirus boolarraense (Alphanodavirus)
- Alphanodavirus flockense (Alphanodavirus)
- Alphanodavirus heteronychi (Alphanodavirus)
- Alphanodavirus nodamuraense (Alphanodavirus)
- Alphanodavirus pariacotoense (Alphanodavirus)
Reviewed Evidence
Only manual-checked evidence records are displayed. Inferred records (without direct isolate linkage) are shown with a yellow badge.
Virulence / pathogenicity
mortality_rate: 95
mortality_rate: 95
mortality · medium
Auto-extracted: mortality in 'Genetic Reassortment between Endemic and Introduced'
mortality · medium
Auto-extracted: pathogenicity in 'In vitro replication of Macrobrachium rosenbergii nodavirus and extra small virus in C6/36 mosquito cell line.'
, anorexia and opaqueness of abdominal muscle and 100% mortality was observed at 6 days post-infection.
pathogenicity · medium
Auto-extracted: mortality in 'In vitro replication of Macrobrachium rosenbergii nodavirus and extra small virus in C6/36 mosquito cell line.'
, anorexia and opaqueness of abdominal muscle and 100% mortality was observed at 6 days post-infection.
mortality · medium
Auto-extracted: mortality in 'Experimental transmission and tissue tropism of Macrobrachium rosenbergii nodavirus (MrNV) and its associated extra smal'
tally transmitted to healthy animals, they caused 100% mortality in post-larvae but failed to cause mortality in a
mortality · medium
Auto-extracted: pathogenicity in 'Oral vaccination of Macrobrachium rosenbergii with baculovirus-expressed M. rosenbergii nodavirus (MrNV) capsid protein'
rosenbergii larvae succumbed to death and had 90% mortality, whereas the r-MrNV protein treated groups exhibi
pathogenicity · medium
Auto-extracted: mortality in 'Oral vaccination of Macrobrachium rosenbergii with baculovirus-expressed M. rosenbergii nodavirus (MrNV) capsid protein'
rosenbergii larvae succumbed to death and had 90% mortality, whereas the r-MrNV protein treated groups exhibi
mortality · medium
Auto-extracted: mortality in 'White Tail Disease of Freshwater Prawn, Macrobrachium rosenbergii.'
In experimental infection, these viruses caused 100 % mortality in post-larvae but failed to cause mortality in a
mortality · medium
Auto-extracted: mortality in 'Recombinant viral proteins delivered orally through inactivated bacterial cells induce protection in Macrobrachium rosen'
rols of groups I, II and III showed 100%, 95% and 95% mortality, respectively.
mortality · medium
Auto-extracted: mortality in 'Truncation-Enhanced Aptamer Binding Affinity and Its Potential as a Sensor for Macrobrachium rosenbergii Nodavirus Detec'
ii nodavirus (MrNV) infection, resulting in up to 100% mortality in larvae and post-larvae stages, severely impact
mortality · medium
Temperature
Expression and characterization of hepatitis B virus surface antigen polypeptides in insect cells with a baculovirus expression system Purification and characterization of Nipah virus nucleocapsid protein produced in insect cells Production and biome
temperature · medium
Fulltext: degree, °C
temperature · medium
Fulltext: thermal
temperature · medium
Fulltext: heat shock, degree, °C
temperature · medium
Fulltext: °C
temperature · medium
Fulltext: degree, °C
temperature · medium
Fulltext: thermal
Macrobrachium rosenbergii nodavirus along with a satellite virus, extra small virus (XSV) causes white tail disease (WTD) in the giant freshwater prawn M.
temperature · medium
Fulltext: °C
temperature · medium
Fulltext: thermal, °C
temperature · medium
Macrobrachium rosenbergii nodavirus temperature profile
Optimal replication in larval rearing temps (26-30°C); disease expression requires co-infection with XSV; temperature effect on co-infection dynamics unclear
temperature · high
Hosts
Diagnostic And Control Records
Diagnostic methods
Truncation-Enhanced Aptamer Binding Affinity and Its Potential as a Sensor for Macrobrachium rosenbergii Nodavirus Detec
Immunoassay · target not specified
medium
Proteins
🧬
No protein annotations available
Loading additional protein data...
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Unknown (pending verification)
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Unknown (pending verification)
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Wan H, Yu L, Cui X, Guo S, Mu S, Kang X
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Du J, Tang Y, Chu J, Yang Q, Qian X, Wan Y, Lu Y, Zhang L, Wang W
2024
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2024
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2024
The identification of a serpin with immune defense role in oriental river prawn Macrobrachium nipponense.
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Isolation and characterization of a lectin-like chitinase from the hepatopancreas of freshwater prawn, Macrobrachium rosenbergii.
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2024
Loading additional literature...
Geographic Distribution
Canada
17 isolates
China
15 isolates
Australia
14 isolates
India
11 isolates
Thailand
8 isolates
Taiwan
8 isolates
South Korea
3 isolates
Malaysia
2 isolates
Taxonomy Information
Family
Nodaviridae
Host Phylum
Arthropoda
Genome Type
ssRNA(+)
Discovery Method
metagenomic_with_host_evidence
Related Isolates
| Accession | Length | GC | Completeness | Country | Year |
|---|---|---|---|---|---|
| AM114036.1 | 384 | 43.2 | partial_sequence | Canada | 2023 |
| AY222839.1 | 3,202 | 44.2 | complete_genome | Canada | 2023 |
| AY222840.1 | 1,175 | 40.3 | complete_genome | Canada | 2023 |
| AY231436.2 | 3,199 | 44.4 | partial_sequence | China | 2001 |
| AY231437.2 | 1,175 | 39.8 | gene_fragment | China | 2001 |
| AY313773.1 | 630 | 46.5 | partial_sequence | N/A | 2005 |
| AY655724.2 | 872 | 42.9 | mRNA | China | 2001 |
| DQ011290.1 | 622 | 42.9 | partial_sequence | India | 2016 |
| DQ146969.1 | 859 | 43.2 | partial_sequence | India | 2008 |
| DQ189990.1 | 606 | 39.4 | mRNA | Thailand | 1999 |
| DQ459203.1 | 592 | 43.9 | partial_sequence | Taiwan | 2000 |
| DQ459204.1 | 592 | 43.9 | partial_sequence | Taiwan | 2000 |
| DQ459205.1 | 592 | 43.8 | partial_sequence | Taiwan | 2000 |
| DQ459206.1 | 592 | 43.8 | partial_sequence | Taiwan | 2000 |
| DQ459207.1 | 592 | 43.8 | partial_sequence | Taiwan | 2000 |
| DQ459208.1 | 592 | 43.9 | partial_sequence | Taiwan | 2000 |
| DQ521574.1 | 856 | 43.9 | partial_sequence | Taiwan | 2000 |
| DQ521575.1 | 1,121 | 40.7 | genome_segment | Taiwan | 2000 |
| EU150126.1 | 1,172 | 40.4 | gene_fragment | Thailand | 2007 |
| EU150127.1 | 1,170 | 40.4 | gene_fragment | Thailand | 2007 |
| EU150128.1 | 1,171 | 40.5 | gene_fragment | Thailand | 2007 |
| EU150129.1 | 1,170 | 40.9 | gene_fragment | Thailand | 2007 |
| FJ360617.1 | 302 | 39.4 | partial_sequence | Thailand | 2007 |
| FJ360618.1 | 302 | 39.7 | partial_sequence | Thailand | 2007 |
| FJ379530.1 | 682 | 39.4 | partial_sequence | Australia | 2007 |
| FJ379531.1 | 861 | 42.6 | partial_sequence | Australia | 2007 |
| FJ751225.1 | 1,175 | 39.8 | complete_genome | China | 2006 |
| FJ751226.1 | 3,126 | 44.2 | partial_sequence | China | 2006 |
| GU300102.1 | 1,116 | 41.0 | gene_fragment | India | 2011 |
| GU300103.1 | 402 | 50.2 | gene_fragment | India | 2011 |
| GU476556.1 | 658 | 38.5 | partial_sequence | Canada | 2023 |
| GU476557.1 | 477 | 39.4 | partial_sequence | Canada | 2023 |
| GU476558.1 | 657 | 38.8 | partial_sequence | Canada | 2023 |
| GU476559.1 | 472 | 37.9 | partial_sequence | Canada | 2023 |
| GU476560.1 | 336 | 38.7 | partial_sequence | Canada | 2023 |
| GU476561.1 | 658 | 38.5 | partial_sequence | Canada | 2023 |
| GU476562.1 | 658 | 38.5 | partial_sequence | Canada | 2023 |
| GU476563.1 | 658 | 38.5 | partial_sequence | Canada | 2023 |
| GU476564.1 | 626 | 36.7 | partial_sequence | Canada | 2023 |
| GU476565.1 | 622 | 37.3 | partial_sequence | Canada | 2023 |
| GU476566.1 | 637 | 36.4 | partial_sequence | Canada | 2023 |
| GU476567.1 | 658 | 38.6 | partial_sequence | Canada | 2023 |
| HM565741.1 | 1,072 | 41.2 | partial_sequence | India | 2010 |
| HQ287005.1 | 681 | 39.4 | partial_sequence | China | 2001 |
| HQ637179.1 | 1,121 | 40.9 | gene_fragment | India | 2008 |
| JN187416.1 | 3,199 | 44.5 | gene_fragment | Malaysia | 2011 |
| JN571287.1 | 423 | 41.6 | partial_sequence | China | 2001 |
| JN571288.1 | 205 | 44.4 | partial_sequence | China | 2001 |
| JN619369.1 | 3,203 | 44.5 | complete_genome | Australia | 2004 |
| JN619370.1 | 1,173 | 39.6 | complete_genome | Australia | 2004 |
| JQ418295.1 | 3,126 | 44.4 | partial_sequence | India | 2008 |
| JQ418296.1 | 1,116 | 40.7 | gene_fragment | India | 2008 |
| JQ418297.1 | 402 | 50.2 | gene_fragment | India | 2008 |
| JQ418298.1 | 1,175 | 40.2 | genome_segment | India | 2008 |
| JQ965671.1 | 1,121 | 40.4 | gene_fragment | China | 2003 |
| JQ965672.1 | 1,121 | 40.3 | gene_fragment | China | 2011 |
| JQ965673.1 | 1,121 | 40.8 | gene_fragment | China | 2001 |
| JQ965674.1 | 1,121 | 41.2 | gene_fragment | China | 2011 |
| JQ965675.1 | 1,121 | 40.4 | gene_fragment | China | 2011 |
| JQ965676.1 | 1,121 | 41.2 | gene_fragment | China | 2011 |
| KF824532.1 | 1,112 | 40.9 | partial_sequence | Indonesia | 2011 |
| KF824533.1 | 1,312 | 46.0 | partial_sequence | Indonesia | 2011 |
| KJ000009.1 | 1,125 | 39.7 | genome_segment | Malaysia | 2010 |
| KP941742.1 | 1,138 | 40.3 | gene_fragment | China | 2001 |
| KY496616.1 | 1,175 | 40.6 | mRNA | Thailand | 2015 |
| MG063722.1 | 205 | 43.4 | mRNA | India | 2017 |
| NC_005094 | 3,202 | 44.2 | unknown | N/A | N/A |
| NC_005094.1 | 3,202 | 44.2 | complete_genome | Canada | 2023 |
| NC_005095 | 1,175 | 40.3 | unknown | N/A | N/A |
| NC_005095.1 | 1,175 | 40.3 | complete_genome | Canada | 2023 |
| OP434475.1 | 205 | 43.9 | partial_sequence | South Korea | 2021 |
| OP434476.1 | 205 | 43.9 | partial_sequence | South Korea | 2021 |
| OP434477.1 | 205 | 43.9 | partial_sequence | South Korea | 2021 |
| OP508292.1 | 3,117 | 44.7 | gene_fragment | Australia | 2020 |
| OP508293.1 | 3,117 | 44.7 | gene_fragment | Australia | 2020 |
| OP508294.1 | 3,117 | 44.6 | gene_fragment | Australia | 2020 |
| OP508295.1 | 3,117 | 44.1 | gene_fragment | Australia | 2020 |
| OP508296.1 | 3,117 | 44.1 | gene_fragment | Australia | 2020 |
| OP508297.1 | 1,116 | 40.5 | gene_fragment | Australia | 2020 |
| OP508298.1 | 1,116 | 40.4 | gene_fragment | Australia | 2020 |
| OP508299.1 | 1,116 | 40.2 | gene_fragment | Australia | 2020 |
| OP508300.1 | 1,116 | 40.3 | gene_fragment | Australia | 2020 |
| OP508301.1 | 1,116 | 40.4 | gene_fragment | Australia | 2020 |
| PX942099.1 | 5,295 | 37.0 | unknown | N/A | N/A |
| PX942102.1 | 5,435 | 35.0 | unknown | N/A | N/A |
| PX942105.1 | 5,703 | 38.9 | unknown | N/A | N/A |
| PX942111.1 | 3,391 | 37.3 | unknown | N/A | N/A |
| PX942113.1 | 5,072 | 34.9 | unknown | N/A | N/A |
| PX942134.1 | 3,395 | 54.5 | unknown | N/A | N/A |
| PX942135.1 | 3,401 | 54.7 | unknown | N/A | N/A |
| PX942143.1 | 3,365 | 54.1 | unknown | N/A | N/A |
| PX942152.1 | 3,334 | 41.9 | unknown | N/A | N/A |
| PX942153.1 | 3,656 | 40.0 | unknown | N/A | N/A |
| PX942158.1 | 3,452 | 54.8 | unknown | N/A | N/A |
| PX942167.1 | 4,560 | 51.3 | unknown | N/A | N/A |
| PX942190.1 | 3,331 | 55.1 | unknown | N/A | N/A |
| PX942191.1 | 3,412 | 54.0 | unknown | N/A | N/A |
| PX942207.1 | 3,366 | 55.0 | unknown | N/A | N/A |
| PX942217.1 | 3,351 | 53.8 | unknown | N/A | N/A |
| PZ065988.1 | 2,726 | 42.3 | unknown | N/A | N/A |
Sequence
Loading sequence...