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Frontiers in Plant Science|February 9, 2017
Overexpression of MpCYS4, A Phytocystatin Gene from Malus prunifolia (Willd.) Borkh., Enhances Stomatal Closure to Confer Drought Tolerance in Transgenic Arabidopsis and AppleYanxiao Tan, Mingjun Li, Yingli Yang, et al.Plant Science : an International Journal of Experimental Plant Biology|November 12, 2021
Overexpression of the tyrosine decarboxylase gene MdTyDC in apple enhances long-term moderate drought tolerance and WUEYanpeng Wang, Qi Chen, Jiangzhu Zheng, et al.Journal of Pineal Research|October 10, 2013
Delay in leaf senescence of Malus hupehensis by long-term melatonin application is associated with its regulation of metabolic status and protein degradationPing Wang, Xun Sun, Cong Chang, et al.Plant Physiology and Biochemistry : PPB|July 24, 2012
Differential expression of ion transporters and aquaporins in leaves may contribute to different salt tolerance in Malus speciesChanghai Liu, Chao Li, Dong Liang, et al.International Journal of Molecular Sciences|September 19, 2018
Genome-Wide Identification and Analysis of Apple NITRATE TRANSPORTER 1/PEPTIDE TRANSPORTER Family (NPF) Genes Reveals MdNPF6.5 Confers High Capacity for Nitrogen Uptake under Low-Nitrogen ConditionsQian Wang, Changhai Liu, Qinglong Dong, et al.Journal of Food Biochemistry|April 29, 2022
Kaempferol inhibits the growth of Helicobacter pylori in a manner distinct from antibioticsRuijia Yang, Jiajia Li, Jingru Wang, et al.International Journal of Biological Macromolecules|June 6, 2025
The inositol-phosphate synthase gene, MdMIPS1, enhances cold stress tolerance in transgenic apple plantsWenjing Sun, Jingyun Zhang, Xiaoyan Li, et al.Plant, Cell & Environment|July 12, 2024
Glycosylation mode of phloretin affects the morphology and stress resistance of apple plantHaojie Wang, Liru Jian, Zhipeng Wang, et al.Plant Physiology and Biochemistry : PPB|December 28, 2023
γ-Aminobutyric acid enhances salt tolerance by sustaining ion homeostasis in applesYanjiao Shi, Yuxing Li, Tanfang Liu, et al.Plos Genetics|June 25, 2026
Cold-responsive interaction between MdRAD23D1 and MdMYB15 confers cold stress tolerance via the CBF pathway in apple (Malus domestica)Xiaoli Zhang, Benzhou Zhao, Xiaoyan Li, et al.Pageof 36