Showing 1,521 - 1,540 results of 23,096 for search '(( significant ((role decrease) OR (fold increases)) ) OR ( significant decrease decrease ))', query time: 0.49s Refine Results
  1. 1521
  2. 1522
  3. 1523
  4. 1524
  5. 1525
  6. 1526
  7. 1527
  8. 1528
  9. 1529
  10. 1530
  11. 1531
  12. 1532
  13. 1533
  14. 1534
  15. 1535

    Cis-acting elements in the promoter of PtWRKYs. by Yuzhao Ma (12840632)

    Published 2025
    “…Based on RNA-Seq, we identified 83 <i>WRKYs</i> significantly respond to cadmium (Cd) stress. Subsequently, we conducted a study on <i>WRKY95</i>, which was significantly up-regulated in the roots, stems, and leaves under Cd stress. …”
  16. 1536

    The Ka/Ks values of PtWRKY paralogous gene pairs. by Yuzhao Ma (12840632)

    Published 2025
    “…Based on RNA-Seq, we identified 83 <i>WRKYs</i> significantly respond to cadmium (Cd) stress. Subsequently, we conducted a study on <i>WRKY95</i>, which was significantly up-regulated in the roots, stems, and leaves under Cd stress. …”
  17. 1537

    RNA-seq data of WRKY genes. by Yuzhao Ma (12840632)

    Published 2025
    “…Based on RNA-Seq, we identified 83 <i>WRKYs</i> significantly respond to cadmium (Cd) stress. Subsequently, we conducted a study on <i>WRKY95</i>, which was significantly up-regulated in the roots, stems, and leaves under Cd stress. …”
  18. 1538

    Analysis of PtWRKY genes. by Yuzhao Ma (12840632)

    Published 2025
    “…Based on RNA-Seq, we identified 83 <i>WRKYs</i> significantly respond to cadmium (Cd) stress. Subsequently, we conducted a study on <i>WRKY95</i>, which was significantly up-regulated in the roots, stems, and leaves under Cd stress. …”
  19. 1539

    The primer sequences for RT-qPCR. by Yuzhao Ma (12840632)

    Published 2025
    “…Based on RNA-Seq, we identified 83 <i>WRKYs</i> significantly respond to cadmium (Cd) stress. Subsequently, we conducted a study on <i>WRKY95</i>, which was significantly up-regulated in the roots, stems, and leaves under Cd stress. …”
  20. 1540

    Representative experimental samples. by Weisheng Zhao (3746023)

    Published 2025
    “…Reducing humidity can significantly mitigate strength loss caused by moisture absorption, while increasing temperature plays a supplementary role. …”