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21 results on '"Yueh-Ju Hou"'

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1. Arabidopsis Duodecuple Mutant of PYL ABA Receptors Reveals PYL Repression of ABA-Independent SnRK2 Activity

2. The SnRK2 kinases modulate miRNA accumulation in Arabidopsis.

3. Type One Protein Phosphatase 1 and Its Regulatory Protein Inhibitor 2 Negatively Regulate ABA Signaling.

4. MET18 Connects the Cytosolic Iron-Sulfur Cluster Assembly Pathway to Active DNA Demethylation in Arabidopsis.

5. Electric-Double-Layer (EDL)-Gated FET Aptasensors for Highly Sensitive MMP7 Detection

7. Arabidopsis Duodecuple Mutant of PYL ABA Receptors Reveals PYL Repression of ABA-Independent SnRK2 Activity

8. A pair of transposon-derived proteins function in a histone acetyltransferase complex for active DNA demethylation

9. HOS1 regulates Argonaute1 by promoting transcription of the microRNA geneMIR168bin Arabidopsis

10. Reciprocal Regulation of the TOR Kinase and ABA Receptor Balances Plant Growth and Stress Response

11. Nitric oxide negatively regulates abscisic acid signaling in guard cells by S-nitrosylation of OST1

12. Specific but interdependent functions for <scp>A</scp> rabidopsis <scp>AGO</scp> 4 and <scp>AGO</scp> 6 in <scp>RNA</scp> ‐directed <scp>DNA</scp> methylation

13. Sulfamethazine Suppresses Epigenetic Silencing in Arabidopsis by Impairing Folate Synthesis

14. Type One Protein Phosphatase 1 and Its Regulatory Protein Inhibitor 2 Negatively Regulate ABA Signaling

15. Specific but interdependent functions for Arabidopsis AGO4 and AGO6 in RNA-directed DNA methylation

16. The ABA Receptor PYL8 Promotes Lateral Root Growth by Enhancing MYB77-Dependent Transcription of Auxin-Responsive Genes

17. The unique mode of action of a divergent member of the ABA-receptor protein family in ABA and stress signaling

18. Quantitative phosphoproteomics identifies SnRK2 protein kinase substrates and reveals the effectors of abscisic acid action

19. Nitric oxide negatively regulates abscisic acid signaling in guard cells by S-nitrosylation of OST1.

21. Quantitative phosphoproteomics identifies SnRK2 protein kinase substrates and reveals the effectors of abscisic acid action.

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