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1. Rice calcium/calmodulin-dependent protein kinase directly phosphorylates a mitogen-activated protein kinase kinase to regulate abscisic acid responses.

2. The transcription factor ZmNAC49 reduces stomatal density and improves drought tolerance in maize.

3. Xyloglucan endotransglucosylase-hydrolase30 negatively affects salt tolerance in Arabidopsis.

4. Abscisic Acid Inhibits Rice Protein Phosphatase PP45 via H 2 O 2 and Relieves Repression of the Ca 2+ /CaM-Dependent Protein Kinase DMI3.

5. ABA Affects Brassinosteroid-Induced Antioxidant Defense via ZmMAP65-1a in Maize Plants.

6. Calcium and ZmCCaMK are involved in brassinosteroid-induced antioxidant defense in maize leaves.

7. A novel rice C2H2-type zinc finger protein, ZFP36, is a key player involved in abscisic acid-induced antioxidant defence and oxidative stress tolerance in rice.

8. MAP65-1a positively regulates H2O2 amplification and enhances brassinosteroid-induced antioxidant defence in maize.

9. ZmCPK11 is involved in abscisic acid-induced antioxidant defence and functions upstream of ZmMPK5 in abscisic acid signalling in maize.

10. Nitric oxide-activated calcium/calmodulin-dependent protein kinase regulates the abscisic acid-induced antioxidant defence in maize.

11. Ascorbic acid and reactive oxygen species are involved in the inhibition of seed germination by abscisic acid in rice seeds.

12. Nitric oxide mediates brassinosteroid-induced ABA biosynthesis involved in oxidative stress tolerance in maize leaves.

13. ZmMPK5 is required for the NADPH oxidase-mediated self-propagation of apoplastic H2O2 in brassinosteroid-induced antioxidant defence in leaves of maize.

14. Positive feedback regulation of maize NADPH oxidase by mitogen-activated protein kinase cascade in abscisic acid signalling.

15. Abscisic acid is a key inducer of hydrogen peroxide production in leaves of maize plants exposed to water stress.

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