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1. The BTB‐BACK‐TAZ domain protein MdBT2 reduces drought resistance by weakening the positive regulatory effect of MdHDZ27 on apple drought tolerance via ubiquitination.

8. R2R3-MYB Transcription Factor MdMYB73 Confers Increased Resistance to the Fungal Pathogen Botryosphaeria dothidea in Apples via the Salicylic Acid Pathway

9. R2R3-MYB Transcription Factor MdMYB73 Confers Increased Resistance to the Fungal Pathogen Botryosphaeria Dothidea via the Salicylic acid Pathway in Apple

16. The apple bHLH transcription factor MdbHLH3 functions in determining the fruit carbohydrates and malate.

20. R2R3-MYB Transcription Factor MdMYB73 Confers Increased Resistance to the Fungal Pathogen Botryosphaeria dothideain Apples viathe Salicylic Acid Pathway

25. Ectopic expression of the apple nucleusencoded thylakoid protein MdY3IP1 triggers early-flowering and enhanced salt-tolerance in Arabidopsis thaliana.

26. The R2R3- MYB transcription factor Md MYB73 is involved in malate accumulation and vacuolar acidification in apple.

27. Functional characterization of MdMYB73reveals its involvement in cold stress response in apple calli and Arabidopsis

28. The MADS transcription factor CmANR1 positively modulates root system development by directly regulating CmPIN2in chrysanthemum

29. MdSOS2L1 forms a complex with MdMYB1 to control vacuolar pH by transcriptionally regulating MdVHA-B1in apples

30. Conserved vacuolar H+-ATPase subunit B1 improves salt stress tolerance in apple calli and tomato plants.

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