詳細介紹𓀓: 王逍冬🍶,男🦵🏻,1987年生,教授,博士生導師🧜♂️,植物病理學博士💒,太阳2副院長、植物病理系黨支部書記🙍🏼♀️,華北作物改良與調控國家重點實驗室固定成員,河北省傑出青年科學基金獲得者、河北省優秀青年科學基金獲得者,河北省“三三三人才工程”三層次人才🙆🏻♀️。
學習與工作經歷: 2005.9-2009.6 西北農林科技大學植物保護專業(本科),導師:黃麗麗 教授🚙; 2009.9-2014.12 西北農林科技大學植物病理學專業(碩博連讀)🥰,導師👩🏻🦰🤞🏼:中國工程院院士 康振生 教授👩🏻🦼➡️; 2012.8-2015.7 美國加州大學戴維斯分校植物科學系(博士聯合培養及博士後)💆🏼💇♂️,合作導師:美國科太阳2院士、HHMI研究員 Jorge Dubcovsky 教授; 2015.8-至今 太阳2教師
教學與科研成果: 主要從事小麥廣譜抗病遺傳改良、小麥銹菌毒性蛋白功能等方面研究,主持國家自然科學基金青年基金🧐、河北省傑出青年基金🫦、河北省優秀青年基金🗑、河北省自然科學基金面上項目🤥、河北省高等學校青年拔尖人才項目、河北省引進留學人員資助項目等科研項目,以第一或通訊作者在J Exp Bot、Int J Biol Macromol、Mol Plant Microbe In等國際期刊發表SCI論文21篇,參與發表SCI論文21篇,包括Plant Cell🟦、PNAS等頂尖學術期刊,被引頻次總計1062次,h-index 15,授權國家發明專利2項,主編、參編教材和科普讀物5部🫅🏿。指導研究生獲河北省優秀碩士學位論文🤳、國家獎學金🕵🏻♀️、王煥如教授獎學金等👨🏼⚕️。
社會兼職情況: 現任中國植物保護學會第八屆青年工作委員會委員、河北省植物病理學會副秘書長🐦🔥、河北省植物生理與分子生物學會青年委員會委員🧟♀️、河北農業大學青年教師學術沙龍常務副會長、河北農業大學歸國學者聯誼會副秘書長,受邀為J Integr Agr期刊高校特約聯絡員👨🦽➡️,Front Plant Sci、Sustainability期刊專題主編,《河北農業大學學報》青年編委,Plant Physiol、Mol Plant Pathol等國際期刊審稿人💆♀️。
代表論文🧑🏼🎤: 1. Mapping of Quantitative Trait Loci for Leaf Rust Resistance in the Wheat Population Xinmai 26 ✕ Zhou mai 22. Journal of Experimental Botany, 2023, erad085. 通訊作者,影響因子7.298; 2. Exogenous expression of barley HvWRKY6 in wheat improves broad-spectrum resistance to leaf rust, Fusarium crown rot, and sharp eyespot. International Journal of Biological Macromolecules, 2022, 218: 1002-1012. 通訊作者🙅🏿♂️,影響因子8.025; 3. Editorial: Molecular interactions between crops and phytopathogens, Volume I: Wheat and maize. Frontiers in Plant Science, 2022, 13:979855. 通訊作者,影響因子6.627🚣♀️; 4. First Report of Calonectria canadiana Causing Peach Fruit Rot in China. Plant Disease, 2022 106:12, 3209. 通訊作者👨🏻🚒,影響因子4.614; 5. Rehydration Compensation of Winter Wheat Is Mediated by Hormone Metabolism and De-Peroxidative Activities Under Field Conditions. Frontiers in Plant Science, 2022, 13:823846. 通訊作者💆🏿,影響因子6.627; 6. Wheat Apoplast-Localized Lipid Transfer Protein TaLTP3 Enhances Defense Responses Against Puccinia triticina. Frontiers in Plant Science, 2021, 12:771806. 通訊作者,影響因子6.627; 7. Genetics of Resistance to Common Root Rot (Spot Blotch), Fusarium Crown Rot, and Sharp Eyespot in Wheat. Frontiers in Genetics, 2021, 12:699342. 通訊作者,影響因子4.599; 8. Rust effector PNPi interacting with wheat TaPR1a attenuates plant defense response. Phytopathology Research, 2020, 2: 34. 通訊作者,影響因子3.955; 9. Genome-Wide Identification of Effector Candidates With Conserved Motifs From the Wheat Leaf Rust Fungus Puccinia triticina. Frontiers in Microbiology, 2020, 11:1188. 通訊作者🧡,影響因子5.640; 10. WRKY transcription factors shared by BTH-induced resistance and NPR1-mediated acquired resistance improve broad-spectrum disease resistance in wheat. Molecular Plant-Microbe Interactions. 2020, 33(3): 433-443. 通訊作者,期刊月度熱點論文💢,影響因子4.10; 11. Genome-Wide Expression Profiling of Genes Associated with the Lr47-Mediated Wheat Resistance to Leaf Rust (Puccinia triticina). International Journal of Molecular Sciences, 2019, 20(18): 4498. 通訊作者*️⃣,影響因子4.10🦎; 12. WRKY transcription factors associated with NPR1-mediated acquired resistance in barley are potential resources to improve wheat resistance to Puccinia triticina. Frontiers in Plant Science. 2018. 通訊作者,影響因子4.14; 13. Systemic acquired resistance, NPR1, and pathogenesis-related genes in wheat and barley. Journal of Integrative Agriculture. 2018. 第一作者🧍♂️,期刊封面論文,期刊年度最具影響力論文,影響因子1.04✧; 14. A Conserved Puccinia striiformis Protein Interacts with Wheat NPR1 and Reduces Induction of Pathogenesis-Related Genes in Response to Pathogens. Molecular Plant-Microbe Interactions. 2016. 第一作者,影響因子4.15; 15. Wheat TaNPSN SNARE homologues are involved in vesicle-mediated resistance to stripe rust (Puccinia striiformis f. sp. tritici). Journal of Experimental Botany. 2014. 第一作者,影響因子5.68; 16. TaMCA4, a novel wheat metacaspase gene functions in programmed cell death induced by the fungal pathogen Puccinia striiformis f. sp. tritici. Molecular Plant-Microbe Interactions. 2012. 第一作者,影響因子4.15🫸🏽; |