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1. The MdVQ37‐MdWRKY100 complex regulates salicylic acid content and MdRPM1 expression to modulate resistance to Glomerella leaf spot in apples

2. Glucose uptake from the rhizosphere mediated by MdDOF3‐MdHT1.2 regulates drought resistance in apple.

3. The chromatin remodeller MdRAD5B enhances drought tolerance by coupling MdLHP1‐mediated H3K27me3 in apple.

5. Histone deacetylase MdHDA6 is an antagonist in regulation of transcription factor MdTCP15 to promote cold tolerance in apple.

7. Chromosome‐scale reference genome provides insights into the genetic origin and grafting‐mediated stress tolerance of Malus prunifolia

8. Fine‐tuning of SUMOylation modulates drought tolerance of apple

10. Insights into the effect of human civilization on Malus evolution and domestication

11. The m6A reader MhYTP2 regulates MdMLO19 mRNA stability and antioxidant genes translation efficiency conferring powdery mildew resistance in apple.

14. Heterologous expression of the apple hexose transporter MdHT2.2 altered sugar concentration with increasing cell wall invertase activity in tomato fruit.

17. A Ma10 gene encoding P‐type ATPase is involved in fruit organic acid accumulation in apple.

18. Single‐base methylome analysis reveals dynamic epigenomic differences associated with water deficit in apple.

19. Improvement of drought tolerance by overexpressing <italic>MdATG18a</italic> is mediated by modified antioxidant system and activated autophagy in transgenic apple.

20. The m 6 A reader MhYTP2 regulates MdMLO19 mRNA stability and antioxidant genes translation efficiency conferring powdery mildew resistance in apple.

21. Improvement of drought tolerance by overexpressing MdATG18a is mediated by modified antioxidant system and activated autophagy in transgenic apple.

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