Publications

(2023). Involvement of SlSTOP1 Regulated SlFDH Expression in Aluminum Tolerance by Reducing NAD+ to NADH in the Tomato Root Apex. The Plant Journal.

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(2022). Abscisic Acid-dependent PMT1 Expression Regulates Salt Tolerance by Alleviating Abscisic Acid-mediated Reactive Oxygen Species Production in Arabidopsis. Journal of Integrative Plant Biology.

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(2022). The Tomato Transcription Factor SlNAC063 Is Required for Aluminum Tolerance by Regulating SlAAE3-1 Expression. Frontiers in Plant Science.

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(2022). Research Advances in the Mutual Mechanisms Regulating Response of Plant Roots to Phosphate Deficiency and Aluminum Toxicity. International Journal of Molecular Sciences.

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(2021). Genome-Wide Identification and Gene Expression Analysis of Acyl-Activating Enzymes Superfamily in Tomato (Solanum Lycopersicum) Under Aluminum Stress. Frontiers in Plant Science.

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(2020). Genome-Wide Identification and Expression Analysis of the NAC Transcription Factor Family in Tomato (Solanum Lycopersicum) during Aluminum Stress. BMC Genomics.

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(2020). A NAC-type Transcription Factor Confers Aluminium Resistance by Regulating Cell Wall-Associated Receptor Kinase 1 and Cell Wall Pectin. Plant, Cell & Environment.

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(2019). FeSTAR2 Interacted by FeSTAR1 Alters Its Subcellular Location and Regulates Al Tolerance in Buckwheat. Plant and Soil.

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(2019). Low Phosphate Represses Histone Deacetylase Complex1 to Regulate Root System Architecture Remodeling in Arabidopsis. New Phytologist.

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(2018). A Half-Type ABC Transporter FeSTAR1 Regulates Al Resistance Possibly via UDP-glucose-based Hemicellulose Metabolism and Al Binding. Plant and Soil.

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(2018). LeSPL-CNR Negatively Regulates Cd Acquisition through Repressing Nitrate Reductase-Mediated Nitric Oxide Production in Tomato. Planta.

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(2018). Alleviation by Abscisic Acid of Al Toxicity in Rice Bean Is Not Associated with Citrate Efflux but Depends on ABI5-mediated Signal Transduction Pathways: Cross-Talk between Al and ABA Signals. Journal of Integrative Plant Biology.

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(2017). Genome-Wide Transcriptome Analysis Reveals Conserved and Distinct Molecular Mechanisms of Al Resistance in Buckwheat (Fagopyrum Esculentum Moench) Leaves. International Journal of Molecular Sciences.

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(2017). Transcriptome Analysis of Al-induced Genes in Buckwheat (Fagopyrum Esculentum Moench) Root Apex: New Insight into Al Toxicity and Resistance Mechanisms in an Al Accumulating Species. Frontiers in Plant Science.

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(2016). An Oxalyl-CoA Synthetase Is Involved in Oxalate Degradation and Aluminum Tolerance. Plant Physiology.

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