Showing 141 - 160 results of 15,457 for search 'far is (((((evolved. OR involves.) OR involves.) OR resolveddsds.) OR involved.) OR resulted.)', čas poizvedbe: 0.42s Refine Results
  1. 141

    Image_8_A Rice Autophagy Gene OsATG8b Is Involved in Nitrogen Remobilization and Control of Grain Quality.JPEG od Tian Fan (668300)

    Izdano 2020
    “...The autophagic role of OsATG8b was experimentally confirmed, and it was concluded that OsATG8b-mediated autophagy is involved in N recycling to grains and contributes to the grain quality, indicating that OsATG8b may be a potential gene for molecular breeding and cultivation of rice....”
  2. 142

    Image_7_A Rice Autophagy Gene OsATG8b Is Involved in Nitrogen Remobilization and Control of Grain Quality.TIF od Tian Fan (668300)

    Izdano 2020
    “...The autophagic role of OsATG8b was experimentally confirmed, and it was concluded that OsATG8b-mediated autophagy is involved in N recycling to grains and contributes to the grain quality, indicating that OsATG8b may be a potential gene for molecular breeding and cultivation of rice....”
  3. 143

    Image_9_A Rice Autophagy Gene OsATG8b Is Involved in Nitrogen Remobilization and Control of Grain Quality.TIF od Tian Fan (668300)

    Izdano 2020
    “...The autophagic role of OsATG8b was experimentally confirmed, and it was concluded that OsATG8b-mediated autophagy is involved in N recycling to grains and contributes to the grain quality, indicating that OsATG8b may be a potential gene for molecular breeding and cultivation of rice....”
  4. 144

    Table_1_A Rice Autophagy Gene OsATG8b Is Involved in Nitrogen Remobilization and Control of Grain Quality.DOC od Tian Fan (668300)

    Izdano 2020
    “...The autophagic role of OsATG8b was experimentally confirmed, and it was concluded that OsATG8b-mediated autophagy is involved in N recycling to grains and contributes to the grain quality, indicating that OsATG8b may be a potential gene for molecular breeding and cultivation of rice....”
  5. 145

    Image_6_A Rice Autophagy Gene OsATG8b Is Involved in Nitrogen Remobilization and Control of Grain Quality.TIF od Tian Fan (668300)

    Izdano 2020
    “...The autophagic role of OsATG8b was experimentally confirmed, and it was concluded that OsATG8b-mediated autophagy is involved in N recycling to grains and contributes to the grain quality, indicating that OsATG8b may be a potential gene for molecular breeding and cultivation of rice....”
  6. 146

    Involving patients and the public in medical and health care research studies: An exploratory survey on participant recruiting and representativeness from the perspective of study... od Jonas Lander (668715)

    Izdano 2019
    “...<div><p>Research on patient and public involvement so far concentrates on defining involvement, describing its methods, and analyzing involvement practices in various individual research disciplines. ...”
  7. 147

    Image_5_A Rice Autophagy Gene OsATG8b Is Involved in Nitrogen Remobilization and Control of Grain Quality.TIF od Tian Fan (668300)

    Izdano 2020
    “...The autophagic role of OsATG8b was experimentally confirmed, and it was concluded that OsATG8b-mediated autophagy is involved in N recycling to grains and contributes to the grain quality, indicating that OsATG8b may be a potential gene for molecular breeding and cultivation of rice....”
  8. 148

    Image_4_A Rice Autophagy Gene OsATG8b Is Involved in Nitrogen Remobilization and Control of Grain Quality.TIF od Tian Fan (668300)

    Izdano 2020
    “...The autophagic role of OsATG8b was experimentally confirmed, and it was concluded that OsATG8b-mediated autophagy is involved in N recycling to grains and contributes to the grain quality, indicating that OsATG8b may be a potential gene for molecular breeding and cultivation of rice....”
  9. 149

    Table_2_Identification and expression analysis of the lipid phosphate phosphatases gene family reveal their involvement in abiotic stress response in kiwifruit.xlsx od Yaming Yang (2815477)

    Izdano 2022
    “...<p>Lipid phosphate phosphatases (LPPs) are a key enzyme in the production and degradation of phosphatidic acid (PA), which plays an important role in plant growth, development, stress resistance and plant hormone response. Thus far, little is known about the LPP family genes in kiwifruit (Actinidia spp.). ...”
  10. 150

    Table_5_Identification and expression analysis of the lipid phosphate phosphatases gene family reveal their involvement in abiotic stress response in kiwifruit.xlsx od Yaming Yang (2815477)

    Izdano 2022
    “...<p>Lipid phosphate phosphatases (LPPs) are a key enzyme in the production and degradation of phosphatidic acid (PA), which plays an important role in plant growth, development, stress resistance and plant hormone response. Thus far, little is known about the LPP family genes in kiwifruit (Actinidia spp.). ...”
  11. 151

    Table_4_Identification and expression analysis of the lipid phosphate phosphatases gene family reveal their involvement in abiotic stress response in kiwifruit.xlsx od Yaming Yang (2815477)

    Izdano 2022
    “...<p>Lipid phosphate phosphatases (LPPs) are a key enzyme in the production and degradation of phosphatidic acid (PA), which plays an important role in plant growth, development, stress resistance and plant hormone response. Thus far, little is known about the LPP family genes in kiwifruit (Actinidia spp.). ...”
  12. 152

    Table_6_Identification and expression analysis of the lipid phosphate phosphatases gene family reveal their involvement in abiotic stress response in kiwifruit.docx od Yaming Yang (2815477)

    Izdano 2022
    “...<p>Lipid phosphate phosphatases (LPPs) are a key enzyme in the production and degradation of phosphatidic acid (PA), which plays an important role in plant growth, development, stress resistance and plant hormone response. Thus far, little is known about the LPP family genes in kiwifruit (Actinidia spp.). ...”
  13. 153

    Table_3_Identification and expression analysis of the lipid phosphate phosphatases gene family reveal their involvement in abiotic stress response in kiwifruit.xlsx od Yaming Yang (2815477)

    Izdano 2022
    “...<p>Lipid phosphate phosphatases (LPPs) are a key enzyme in the production and degradation of phosphatidic acid (PA), which plays an important role in plant growth, development, stress resistance and plant hormone response. Thus far, little is known about the LPP family genes in kiwifruit (Actinidia spp.). ...”
  14. 154

    Table_1_Identification and expression analysis of the lipid phosphate phosphatases gene family reveal their involvement in abiotic stress response in kiwifruit.xlsx od Yaming Yang (2815477)

    Izdano 2022
    “...<p>Lipid phosphate phosphatases (LPPs) are a key enzyme in the production and degradation of phosphatidic acid (PA), which plays an important role in plant growth, development, stress resistance and plant hormone response. Thus far, little is known about the LPP family genes in kiwifruit (Actinidia spp.). ...”
  15. 155
  16. 156

    HLA-DRβ1* residues involved in Pocket 1, 4, 6, 9 formation and differences with <i>Aona</i> DRβ. od Manuel Elkin Patarroyo (355812)

    Izdano 2015
    “...<p>Molecular surface of amino acids involved in Pocket 1, 4, 6 and 9 formation (α-chain in pink and β-chain in blue). ...”
  17. 157

    A Subset of New Platinum Antitumor Agents Kills Cells by a Multimodal Mechanism of Action Also Involving Changes in the Organization of the Microtubule Cytoskeleton od Hana Kostrhunova (2069338)

    Izdano 2019
    “...However, details of the mechanism by which the 5,6-dimethyl-1,10-phenanthroline ligand contributes to the cytotoxicity of <b>5</b> and its derivatives have not been sufficiently clarified so far. Here, we show that <b>5</b> and its Pt­(IV) derivatives exhibit an intriguing potency in the triple-negative breast cancer cells MDA-MB-231. ...”
  18. 158
  19. 159
  20. 160

    Data_Sheet_1_Mechanism of Growth Regulation of Yeast Involving Hydrogen Sulfide From S-Propargyl-Cysteine Catalyzed by Cystathionine-γ-Lyase.DOCX od Zhongkai Gu (3181425)

    Izdano 2021
    “...The results revealed that the yeast could produce H<sub>2</sub>S by catabolizing SPRC, which facilitated the growth of the yeast cells. ...”