GENOMAR GENETICS AS

Organization number 915894658 · Aksjeselskap

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Source: Firmafakta. Data read and page generated 2026-09-09T22:25:04Z. HTML cache: no-store (TTL 0 seconds). Default TTL for Firmafakta JSON/API responses: 60 seconds.

Facts

Source: Firmafakta, with business data from public registers.

organisasjonsnummer:
915894658
navn:
GENOMAR GENETICS AS
organisasjonsform:
kode:
AS
beskrivelse:
Aksjeselskap
naeringskode1:
kode:
72.100
beskrivelse:
Forskning og eksperimentell utvikling innenfor naturvitenskap og teknikk
antallAnsatte:
not reported by source
hjemmeside:
not reported by source
epostadresse:
firmapost@aquagen.no
telefon:
not reported by source
forretningsadresse:
adresse:
Bolette brygge 1
poststed:
OSLO
postnummer:
0252
kommune:
OSLO
stiftelsesdato:
2015-08-31
registreringsdatoenhetsregisteret:
2015-09-09
aktivitet:
Genetikk innenfor fiskeoppdretts- og aquakulturnæringen
vedtektsfestetFormaal:
Kommersialisering av og handel med bioteknologisk, kunnskap og genetikk samt alt som hermed står i forbindelse innenfor, området oppdretts- og aquakulturnæringen, herunder investere i, selskaper og prosjekter som direkte eller indirekte driver lignende, virksomhet.

View the address in Geonorge

Board and other roles

Source: Firmafakta. Also see the separate Brønnøysund lookup under related lookups.

Regnskapsfører

Revisor

Styre

Owners

Source: Firmafakta shareholder dataset.

  1. BLUE FUTURE HOLDING AS – 100.0 % (1500 shares, share class: Ordinære aksjer)

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Company holdings

No holdings found.

Grants and support

Sources provided through Firmafakta: Innovation Norway, the EU, the Research Council of Norway and SkatteFUNN.

Innovasjon Norge (0)

No registered grants.

EU-tildelinger (0)

No registered grants.

Forskningsrådet (2)

2 results

  1. id:
    80798
    prosjektnummer:
    355480
    prosjekttittel:
    CT-Assisted Increased Fillet Yield through Selective Breeding in Nile Tilapia
    prosjektstart:
    2025
    prosjektslutt:
    2027
    prosjektansvarlig_navn:
    GENOMAR GENETICS AS
    organisasjonsnummer:
    915894658
    sokt_belop:
    Akvakultur
    tildelt_belop:
    0.0
    virkemiddel:
    Felleskostnader
    aktivitet:
    Utlysningsaktiviteter
  2. id:
    76955
    prosjektnummer:
    346374
    prosjekttittel:
    CT-Assisted Increased Fillet Yield through Selective Breeding in Nile Tilapia
    prosjektstart:
    2024
    prosjektslutt:
    2026
    prosjektansvarlig_navn:
    GENOMAR GENETICS AS
    organisasjonsnummer:
    915894658
    sokt_belop:
    Akvakultur
    tildelt_belop:
    0.0
    virkemiddel:
    Felleskostnader
    aktivitet:
    Utlysningsaktiviteter

SkatteFUNN (6)

6 results

  1. id:
    63484
    innsendt_dato:
    2021-09-01
    prosjektnummer:
    330903
    bedriftsnavn:
    GENOMAR GENETICS AS
    prosjekttittel:
    Robust Tilapia
    organisasjonsnummer:
    915894658
    fylke:
    Oslo
    kommunenavn:
    Oslo
    poststed:
    OSLO
    soknad_godkjent:
    JA
    soknad_avslatt:
    NEI
    vedtaksdato:
    2021-12-06
    prosjekt_fra_ar:
    2021
    prosjekt_til_ar:
    2023
    sammendrag:
    Developing a strain of more robust tilapia Tilapia is one of the most popular aquaculture species in the world and is farmed in more than 120 countries and territories, and the global tilapia market reached a volume of 6.6 million tons in 2019. The fish is reared in many different conditions, with environments ranging from shallow earthen ponds to industrialized cage farms in lakes. Other factors also vary a lot, e.g., temperature (high, low or fluctuating), feeding rate and quality of feed or water. Also, the ongoing climate change has an impact on the production conditions leading to more varying and unpredictable environments in several important production areas. We know from other livestock and fish species that there can be significant genotype by environment interactions (GxE); animals with genetics that perform well in one environment may not be the best choice in a different location with different conditions. Evidence of GxE have also been seen in Tilapia but have not been thoroughly studied until now. With this background we want to develop a more robust tilapia strain that can perform well over a broad range of environmental conditions. The initial step for developing the robust tilapia will be to test the current product to different climatic conditions and managemental practises to see the performance in different environments. The current commercial fingerlings will be sent to multiple countries in Asia and to Brasil; and will be grown in ponds and cages of farmers. We will collect data for growth and survival, and the extent of GxE for various sites will be estimated. The 3 most important trait/environment combinations based on the estimated GxE effects will be chosen and used in an selection index for selection of the new robust line.Using genomic selection tools the best fish will be selected from our breeding nucleus based on the robust performance index. These fish will be used as parents for the new robust tilapia product line.
  2. id:
    69206
    innsendt_dato:
    2023-09-01
    prosjektnummer:
    348948
    bedriftsnavn:
    GENOMAR GENETICS AS
    prosjekttittel:
    CT-Assisted Increased Fillet Yield through Selective Breeding in Nile Tilapia
    organisasjonsnummer:
    915894658
    fylke:
    Oslo
    kommunenavn:
    Oslo
    poststed:
    OSLO
    soknad_godkjent:
    JA
    soknad_avslatt:
    NEI
    vedtaksdato:
    2023-12-04
    prosjekt_fra_ar:
    2023
    prosjekt_til_ar:
    2026
    sammendrag:
    The project aims to use human grade CT-scan to develop and implement accurate methods for measuring fillet yield in live Nile tilapia & utilize this information in a breeding program to improve genetic gain for the sustainable tilapia industry. By increasing the proportion of fillet in tilapia, the project seeks to enhance feed conversion efficiency, industry profitability, and sustainability. The tilapia fillet industry produces a large amount of by-products estimated at 60%–70% of the total weight. In Nile tilapia, fast growth alone does not guarantee an increase in fillet yield, as fillet proportions vary among individuals and show no genetic correlation with growth. Unfortunately, current classical approaches have yielded limited genetic progress due to phenotypic data being obtained from siblings and the presence of significant measurement errors. Implementing innovative non-invasive methods like CT will lead to improved selection accuracy and higher genetic gains.
  3. id:
    59322
    innsendt_dato:
    2020-08-28
    prosjektnummer:
    318581
    bedriftsnavn:
    GENOMAR GENETICS AS
    prosjekttittel:
    GxE interactions between different production environments in Tilapia
    organisasjonsnummer:
    915894658
    fylke:
    Oslo
    kommunenavn:
    Oslo
    poststed:
    OSLO
    soknad_godkjent:
    NEI
    soknad_avslatt:
    JA
    vedtaksdato:
    2020-12-12
    prosjekt_fra_ar:
    2020
    prosjekt_til_ar:
    2023
    sammendrag:
    The global tilapia market reached a volume of 6.6 Million Tons in 2019, and the fish is reared in many different conditions. Environments range from shallow earthen ponds to industrialized cage farms in lakes. Other factors also vary a lot, e.g. temperature (high, low or fluctuating), feeding rate and quality of feed or water quality. Also, the size of the fish at harvest may vary in different locations, ranging from small portion fish(2-300g) to large fish for filleting (1-1,5 kg). Evidence of genotype by environment interactions (GxE) have been seen in Tilapia, fish with genetics that perform well in one environment may not be the best choice in a different location with other conditions. For a supplier of genetic material like Genomar it is important to know the magnitude of these effects and which traits are influenced. If correlation between performance in two environments is to low, it might be necessary to do selection based on both conditions and/or have different products for the two environments. The goal is to get a have more knowledge of the correlation between performance in different rearing conditions for our Tilapia strain. We will grow fish both in our breeding nucleus under several other different conditions to estimate the correlation of important traits in different environments. With the collected data we will be able to estimate the genetic parameters and magnitude of GxE for the recorded traits. This information will be used to make decisions for our breeding programs. For environments where we find low genetic correlation in performance, e.g. between growth in pond and cage, information from both environments will be used for future selection in our breeding programs. For some environments we will also likely produce separate lines specifically selected to perform well in those conditions.
  4. id:
    47159
    innsendt_dato:
    2017-09-01
    prosjektnummer:
    279888
    bedriftsnavn:
    GENOMAR GENETICS AS
    prosjekttittel:
    Selection for streptococcus resistance and tolerance in Tilapia
    organisasjonsnummer:
    915894658
    fylke:
    Oslo
    kommunenavn:
    Oslo
    poststed:
    OSLO
    soknad_godkjent:
    JA
    soknad_avslatt:
    NEI
    vedtaksdato:
    2017-11-08
    prosjekt_fra_ar:
    2017
    prosjekt_til_ar:
    2018
    sammendrag:
    not reported by source
  5. id:
    47160
    innsendt_dato:
    2017-09-01
    prosjektnummer:
    279889
    bedriftsnavn:
    GENOMAR GENETICS AS
    prosjekttittel:
    Evaluating and implementing genomic selection in a tilapia breeding program
    organisasjonsnummer:
    915894658
    fylke:
    Oslo
    kommunenavn:
    Oslo
    poststed:
    OSLO
    soknad_godkjent:
    JA
    soknad_avslatt:
    NEI
    vedtaksdato:
    2017-11-08
    prosjekt_fra_ar:
    2017
    prosjekt_til_ar:
    2019
    sammendrag:
    not reported by source
  6. id:
    56200
    innsendt_dato:
    2019-09-01
    prosjektnummer:
    308024
    bedriftsnavn:
    GENOMAR GENETICS AS
    prosjekttittel:
    Breeding for increased disease resistance in Tilapia
    organisasjonsnummer:
    915894658
    fylke:
    Oslo
    kommunenavn:
    Oslo
    poststed:
    OSLO
    soknad_godkjent:
    JA
    soknad_avslatt:
    NEI
    vedtaksdato:
    2019-11-25
    prosjekt_fra_ar:
    2019
    prosjekt_til_ar:
    2021
    sammendrag:
    Losses due to different diseases are a large problem in the tilapia industry today, with outbreaks causing huge mortalities and economic losses. Previous work done by Genomar Genetic have shown large genetic variation in resistance to Streptococcus infection in tilapia, and selection for resistance to have produced a line with significant reduction in mortality in challenge tests. Based on these results we would like to continue our work on Streptococcus and also expand our testing and selection to other common diseases. A tilapia strain more resistant to the most important diseases would not only help avoid losses in production but also decrease the need for antibiotics and vaccines in the industry. The main bacterial and viral diseases under consideration will be the ones caused by infection of flavobacterium columnare, francisella and tilapia lake virus (TiLV).

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