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Showing 181 - 200 results of 15,538 for search 'far is (((((remove. OR involves.) OR involves.) OR evolvedssdddss.) OR involved.) OR results.)*', 查询时间: 0.63s Refine Results
  1. 181

    Image_6_Systematic Analysis of Cotton Non-specific Lipid Transfer Protein Family Revealed a Special Group That Is Involved in Fiber Elongation.JPEG Chengsheng Meng (5768057)

    出版 2018
    “...<p>Non-specific lipid transfer proteins (nsLTPs) had been previously isolated from cotton fiber but their functions were unclear so far. Bioinformatic analysis of the tetraploid cotton genome database identified 138 nsLTP genes, falling into the 11 groups as reported previously. ...”
  2. 182

    Table_3_Systematic Analysis of Cotton Non-specific Lipid Transfer Protein Family Revealed a Special Group That Is Involved in Fiber Elongation.XLS Chengsheng Meng (5768057)

    出版 2018
    “...<p>Non-specific lipid transfer proteins (nsLTPs) had been previously isolated from cotton fiber but their functions were unclear so far. Bioinformatic analysis of the tetraploid cotton genome database identified 138 nsLTP genes, falling into the 11 groups as reported previously. ...”
  3. 183

    Table_1_Systematic Analysis of Cotton Non-specific Lipid Transfer Protein Family Revealed a Special Group That Is Involved in Fiber Elongation.XLSX Chengsheng Meng (5768057)

    出版 2018
    “...<p>Non-specific lipid transfer proteins (nsLTPs) had been previously isolated from cotton fiber but their functions were unclear so far. Bioinformatic analysis of the tetraploid cotton genome database identified 138 nsLTP genes, falling into the 11 groups as reported previously. ...”
  4. 184

    Table_4_Systematic Analysis of Cotton Non-specific Lipid Transfer Protein Family Revealed a Special Group That Is Involved in Fiber Elongation.XLSX Chengsheng Meng (5768057)

    出版 2018
    “...<p>Non-specific lipid transfer proteins (nsLTPs) had been previously isolated from cotton fiber but their functions were unclear so far. Bioinformatic analysis of the tetraploid cotton genome database identified 138 nsLTP genes, falling into the 11 groups as reported previously. ...”
  5. 185

    Presentation_2_Transcriptome Profiling Reveals Differential Gene Expression of Secreted Proteases and Highly Specific Gene Repertoires Involved in Lactarius–Pinus Symbioses.PPTX Nianwu Tang (5283641)

    出版 2021
    “...Up- or down-regulated genes are involved in signaling pathways, nutrient transport, cell wall modifications, and plant defenses. ...”
  6. 186

    Presentation_3_Transcriptome Profiling Reveals Differential Gene Expression of Secreted Proteases and Highly Specific Gene Repertoires Involved in Lactarius–Pinus Symbioses.PPTX Nianwu Tang (5283641)

    出版 2021
    “...Up- or down-regulated genes are involved in signaling pathways, nutrient transport, cell wall modifications, and plant defenses. ...”
  7. 187

    Table_1_Transcriptome Profiling Reveals Differential Gene Expression of Secreted Proteases and Highly Specific Gene Repertoires Involved in Lactarius–Pinus Symbioses.xlsx Nianwu Tang (5283641)

    出版 2021
    “...Up- or down-regulated genes are involved in signaling pathways, nutrient transport, cell wall modifications, and plant defenses. ...”
  8. 188

    Table_3_Transcriptome Profiling Reveals Differential Gene Expression of Secreted Proteases and Highly Specific Gene Repertoires Involved in Lactarius–Pinus Symbioses.XLSX Nianwu Tang (5283641)

    出版 2021
    “...Up- or down-regulated genes are involved in signaling pathways, nutrient transport, cell wall modifications, and plant defenses. ...”
  9. 189

    Presentation_1_Transcriptome Profiling Reveals Differential Gene Expression of Secreted Proteases and Highly Specific Gene Repertoires Involved in Lactarius–Pinus Symbioses.PPTX Nianwu Tang (5283641)

    出版 2021
    “...Up- or down-regulated genes are involved in signaling pathways, nutrient transport, cell wall modifications, and plant defenses. ...”
  10. 190

    Presentation_4_Transcriptome Profiling Reveals Differential Gene Expression of Secreted Proteases and Highly Specific Gene Repertoires Involved in Lactarius–Pinus Symbioses.PPTX Nianwu Tang (5283641)

    出版 2021
    “...Up- or down-regulated genes are involved in signaling pathways, nutrient transport, cell wall modifications, and plant defenses. ...”
  11. 191

    Table_2_Transcriptome Profiling Reveals Differential Gene Expression of Secreted Proteases and Highly Specific Gene Repertoires Involved in Lactarius–Pinus Symbioses.XLSX Nianwu Tang (5283641)

    出版 2021
    “...Up- or down-regulated genes are involved in signaling pathways, nutrient transport, cell wall modifications, and plant defenses. ...”
  12. 192

    Table_4_Transcriptome Profiling Reveals Differential Gene Expression of Secreted Proteases and Highly Specific Gene Repertoires Involved in Lactarius–Pinus Symbioses.XLSX Nianwu Tang (5283641)

    出版 2021
    “...Up- or down-regulated genes are involved in signaling pathways, nutrient transport, cell wall modifications, and plant defenses. ...”
  13. 193

    Trajectory of a trapped atom involving many lobes of the circular optical lattice in (a) the transverse plane and several potential wells in (d) the axial direction J A Castañeda (557403)

    出版 2013
    “...</strong> Trajectory of a trapped atom involving many lobes of the circular optical lattice in (a) the transverse plane and several potential wells in (d) the axial direction. ...”
  14. 194

    Image_4_ANXC7 Is a Mitochondrion-Localized Annexin Involved in Controlling Conidium Development and Oxidative Resistance in the Thermophilic Fungus Thermomyces lanuginosus.TIF Xiang-Li Xie (5737343)

    出版 2018
    “...Taken together, our data indicate that ANXC7 localizes to the mitochondria and is involved in controlling conidium development and oxidative resistance in T. lanuginosus....”
  15. 195

    Image_2_ANXC7 Is a Mitochondrion-Localized Annexin Involved in Controlling Conidium Development and Oxidative Resistance in the Thermophilic Fungus Thermomyces lanuginosus.TIF Xiang-Li Xie (5737343)

    出版 2018
    “...Taken together, our data indicate that ANXC7 localizes to the mitochondria and is involved in controlling conidium development and oxidative resistance in T. lanuginosus....”
  16. 196

    Image_3_ANXC7 Is a Mitochondrion-Localized Annexin Involved in Controlling Conidium Development and Oxidative Resistance in the Thermophilic Fungus Thermomyces lanuginosus.TIF Xiang-Li Xie (5737343)

    出版 2018
    “...Taken together, our data indicate that ANXC7 localizes to the mitochondria and is involved in controlling conidium development and oxidative resistance in T. lanuginosus....”
  17. 197

    Image_1_ANXC7 Is a Mitochondrion-Localized Annexin Involved in Controlling Conidium Development and Oxidative Resistance in the Thermophilic Fungus Thermomyces lanuginosus.TIF Xiang-Li Xie (5737343)

    出版 2018
    “...Taken together, our data indicate that ANXC7 localizes to the mitochondria and is involved in controlling conidium development and oxidative resistance in T. lanuginosus....”
  18. 198

    <i>De novo</i> Assembly of the Indo-Pacific Humpback Dolphin Leucocyte Transcriptome to Identify Putative Genes Involved in the Aquatic Adaptation and Immune Response Duan Gui (451411)

    出版 2013
    “...A large number of unigenes were predicted to be involved in immune response, and many genes were predicted to be relevant to adaptive evolution and cetacean-specific traits....”
  19. 199

    Selection and Validation of Reference Genes for qRT-PCR Expression Analysis of Candidate Genes Involved in Olfactory Communication in the Butterfly <i>Bicyclus anynana</i> Alok Arun (707878)

    出版 2015
    “...Although several butterfly species (Lepidoptera) have become important models in molecular evolutionary ecology, so far no study aimed at identifying reference genes for accurate data normalization for any butterfly is available. ...”
  20. 200

    Transcriptome Analysis of Walnut (Juglans regia L.) Embryos Reveals Key Developmental Stages and Genes Involved in Lipid Biosynthesis and Polyunsaturated Fatty Acid Metabolism Ruimin Huang (1341213)

    出版 2020
    “...Walnut (Juglans regia L.) is a widely cultivated woody oilseed tree species, and its embryo is rich in polyunsaturated fatty acids. Thus far, the pathways and essential genes involved in oil biosynthesis in developing walnut embryos remain largely unclear. ...”