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21 results on '"Kang-Lok Lee"'

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1. Differential Responses of Antioxidant Enzymes and Lignin Metabolism in Susceptible and Resistant Sweetpotato Cultivars during Root-Knot Nematode Infection

2. The Defense Response Involved in Sweetpotato Resistance to Root-Knot Nematode Meloidogyne incognita: Comparison of Root Transcriptomes of Resistant and Susceptible Sweetpotato Cultivars With Respect to Induced and Constitutive Defense Responses

3. Flooding Tolerance in Sweet Potato (Ipomoea batatas (L.) Lam) Is Mediated by Reactive Oxygen Species and Nitric Oxide

4. Zinc-dependent regulation of zinc import and export genes by Zur

6. The Defense Response Involved in Sweetpotato Resistance to Root-Knot Nematode Meloidogyne incognita: Comparison of Root Transcriptomes of Resistant and Susceptible Sweetpotato Cultivars With Respect to Induced and Constitutive Defense Responses

7. Factors affecting redox potential and differential sensitivity of SoxR to redox-active compounds

8. Simultaneous Activation of Iron- and Thiol-Based Sensor-Regulator Systems by Redox-Active Compounds

9. Comparative study of SoxR activation by redox-active compounds

10. Conservation of thiol-oxidative stress responses regulated by SigR orthologues in actinomycetes

11. Exercise Induced Left Bundle Branch Block Accompanied by Chest Pain

12. Factors affecting redox potential and differential sensitivity of SoxR to redox-active compounds

13. A reducing system of the superoxide sensor SoxR in Escherichia coli

14. Transcriptional Activation of the Aldehyde Reductase YqhD by YqhC and Its Implication in Glyoxal Metabolism of Escherichia coli K-12▿

15. SoxRS-mediated lipopolysaccharide modification enhances resistance against multiple drugs in Escherichia coli

16. A Case of Pachydermoperiostosis Combined with Undifferentiated Arthritis

17. Simultaneous Activation of Iron- and Thiol-Based Sensor-Regulator Systems by Redox-Active Compounds.

19. Clinical Correlation between Serum Cytokeratin-18 and Metabolic Parameters in Patients with Sonographic Non-alcoholic Fatty Liver Disease

21. Transcriptional Activation of the Aldehyde Reductase YqhD by YqhC and Its Implication in Glyoxal Metabolism of Escherichia coli K-12.

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