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10 merged results for "All-Russian Scientific Research Institute of Flax"

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  1. Data on genetic polymorphism of flax (Linum usitatissimum L.) pathogenic fungi of Fusarium, Colletotrichum, Aureobasidium, Septoria, and Melampsora genera.

    Novakovskiy RO, Dvorianinova EM, Rozhmina TA, Kudryavtseva LP · 2020 · Data in brief

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.1016/j.dib.2020.105710

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  2. Genetic diversity of SAD and FAD genes responsible for the fatty acid composition in flax cultivars and lines.

    Dmitriev AA, Kezimana P, Rozhmina TA, Zhuchenko AA · 2020 · BMC plant biology

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.1186/s12870-020-02499-w

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  3. Isolating Linum usitatissimum L. Nuclear DNA Enabled Assembling High-Quality Genome.

    Dvorianinova EM, Bolsheva NL, Pushkova EN, Rozhmina TA · 2022 · International journal of molecular sciences

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.3390/ijms232113244

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  4. Assembling Quality Genomes of Flax Fungal Pathogens from Oxford Nanopore Technologies Data.

    Sigova EA, Pushkova EN, Rozhmina TA, Kudryavtseva LP · 2023 · Journal of fungi (Basel, Switzerland)

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.3390/jof9030301

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  5. Genes Associated with the Flax Plant Type (Oil or Fiber) Identified Based on Genome and Transcriptome Sequencing Data.

    Povkhova LV, Melnikova NV, Rozhmina TA, Novakovskiy RO · 2021 · Plants (Basel, Switzerland)

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.3390/plants10122616

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  6. Development and Complex Application of Methods for the Identification of Mutations in the FAD3A and FAD3B Genes Resulting in the Reduced Content of Linolenic Acid in Flax Oil.

    Povkhova LV, Pushkova EN, Rozhmina TA, Zhuchenko AA · 2022 · Plants (Basel, Switzerland)

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.3390/plants12010095

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  7. Selection of Flax Genotypes for Pan-Genomic Studies by Sequencing Tagmentation-Based Transcriptome Libraries.

    Pushkova EN, Borkhert EV, Novakovskiy RO, Dvorianinova EM · 2023 · Plants (Basel, Switzerland)

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.3390/plants12213725

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  8. Expression of FAD and SAD Genes in Developing Seeds of Flax Varieties under Different Growth Conditions.

    Pushkova EN, Povkhova LV, Dvorianinova EM, Novakovskiy RO · 2024 · Plants (Basel, Switzerland)

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.3390/plants13070956

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  9. Progress in Flax Genome Assembly from Nanopore Sequencing Data.

    Pushkova EN, Arkhipov AA, Bolsheva NL, Rozhmina TA · 2026 · Plants (Basel, Switzerland)

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.3390/plants15010151

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  10. The Influence of Cryopreservation and Low-Temperature Seed Storage on the Morphological and Agronomical Characteristics of Fiber Flax.

    Pavlov AV, Porokhovinova EA, Pavlov AV, Kiseleva IV · 2026 · Plants (Basel, Switzerland)

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.3390/plants15040602

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer