ABRC
| PI新主頁 2026-05-13 | |
| 名言 2026-05-13 | |
| 論文著作 (2018) N-hydroxy-pipecolic acid is a mobile metabolite that induces systemic disease resistance in Arabidopsis. Proceedings of the National Academy of Sciences of the United States of America | |
| 論文著作 (2019) An engineered pathway for N-hydroxy-pipecolic acid synthesis enhances systemic acquired resistance in tomato. Science signaling | |
| 論文著作 (2021) Arabidopsis UGT76B1 glycosylates N-hydroxy-pipecolic acid and inactivates systemic acquired resistance in tomato. The Plant cell | |
| 重要發現與突破 (2025) 發現植物系統性誘導免疫的新成員: 阿拉伯芥DAWDLE 基因對N-羥基哌啶酸訊息傳遞路徑的重要性 | |
| 最新研究 (2025) N-羥基哌啶酸介導訊息傳遞及抗性需要DAWDLE PLANT PHYSIOLOGY, 2025 Oct 31;199(3):kiaf536. | ![]() |
| 論文著作 (2025-10-23) N-hydroxy-pipecolic acid-mediated signal transduction and resistance requires DAWDLE PLANT PHYSIOLOGY | |
| 論文著作 (2024) Multiple acquisitions of XopJ2 effectors in populations of Xanthomonas perforans. Molecular plant-microbe interactions : MPMI | |
| 論文著作 (2021) Arabidopsis UGT76B1 glycosylates N-hydroxy-pipecolic acid and inactivates systemic acquired resistance in tomato Plant Cell | |
| 論文著作 (2019) An engineered pathway for Nhydroxy- pipecolic acid synthesis enhances systemic acquired resistance in tomato Science Signaling | |
| 論文著作 (2018) N-hydroxy-pipecolic acid is a mobile metabolite that induces systemic disease resistance in Arabidopsis Proc Natl Acad Sci U S A | |
| 論文著作 (2018) Tomato 14-3-3 proteins are required for Xv3 disease resistance and interact with a subset of Xanthomonas euvesicatoria effectors Mol. Plant-Microbe Inter | |
| 論文著作 (2016) A WD40 protein, AtGHS40, negatively modulates abscisic acid degrading and signaling genes during seedling growth under high glucose conditions J Plant Res | |
| 論文著作 (2014) AtRH57, a DEAD-box RNA helicase, is involved in feedback inhibition of glucose-mediated abscisic acid accumulation during seedling development and additively affects pre-ribosomal RNA processing with high glucose Plant J | |
| 學經歷 2021-11-8 學經歷 | |
| 論文著作 (2014) Characterization of a lily anther specific gene encoding cytoskeleton-binding glycoproteins and overexpression of the gene causes severe inhibition of pollen tube growth Planta | |
| 實驗室成員 2021-11-3 實驗室成員 | |
| 研究方向 2021-11-3 研究方向 |
