
課題組負(fù)責(zé)人簡(jiǎn)介:
馮明,教授,博士、碩士生導(dǎo)師,國(guó)家級(jí)青年人才,泰山學(xué)者青年專家。2019年獲中國(guó)農(nóng)業(yè)大學(xué)觀賞園藝專業(yè)博士學(xué)位,2019年11月至2024年9月在瑞典農(nóng)業(yè)科學(xué)大學(xué)從事博士后研究,2024年10月入職山東農(nóng)業(yè)大學(xué)園藝學(xué)院。長(zhǎng)期致力于園藝植物的生長(zhǎng)發(fā)育和嫁接愈合機(jī)制,揭示了月季植物水通道蛋白RhPIP2作為信號(hào)分子,調(diào)控植物權(quán)衡生長(zhǎng)和干旱應(yīng)激脅迫的平衡機(jī)制;通過微嫁接技術(shù)改善了松樹和云杉的嫁接親和性,并發(fā)現(xiàn)了促進(jìn)嫁接愈合的關(guān)鍵因子-PAT1;揭示了ZAT14轉(zhuǎn)錄因子通過影響PCD過程及EXPAs表達(dá)來調(diào)控木質(zhì)部發(fā)育和耐鹽性的機(jī)制。以第一作者(含并一)或通訊作者在Nature Plants (2篇,2019, 2024),Molecular Plant(2024)和The Plant Cell(2025)等期刊發(fā)表文章。
主要研究方向(主要以月季和菊花為研究材料,但不限于這兩種植物):
植物嫁接口愈合機(jī)制
嫁接是一種在園藝植物中廣泛使用的無性繁殖技術(shù),能夠提升植物的品質(zhì)與抗性,并用于搶救和保護(hù)珍稀物種。然而,只有具有較近親緣關(guān)系的植物才能進(jìn)行嫁接,這在一定程度上限制了優(yōu)良接穗和砧木的組合可能性。此外,嫁接初期,植物組織的切割作為一種非生物脅迫,會(huì)激發(fā)植物的自我防御機(jī)制。而這種防御反應(yīng)和后續(xù)的嫁接再生之間的平衡關(guān)系,也是我們的研究興趣之一。據(jù)此,課題組將通過解析植物的嫁接愈合機(jī)制來改善植物嫁接親和性。
維管束的發(fā)育及再生機(jī)制
維管束是指維管植物(包括蕨類植物、裸子植物和被子植物)的維管組織,由木質(zhì)部和韌皮部成束狀排列形成的結(jié)構(gòu)。作為植物的“運(yùn)輸系統(tǒng)”,維管束不僅負(fù)責(zé)物質(zhì)運(yùn)輸,還對(duì)植物的穩(wěn)固性及抗倒伏能力起著關(guān)鍵作用。此外,維管束的再生和重新連接也是嫁接成功的關(guān)鍵。據(jù)此,課題組將以植物維管束的發(fā)育及再生為方向開展研究。
園藝植物的扦插生根機(jī)制
扦插是一種無性繁殖方法,通過利用植物體的一部分(如莖、葉、根等)插入基質(zhì)中,誘導(dǎo)其生長(zhǎng)出新的根系,形成完整植株的過程。其生根過程涉及復(fù)雜的生理、生化和分子機(jī)制。本課題組將圍繞外界環(huán)境、激素、分子信號(hào)等因素解析植物扦插生根的機(jī)制。
科研項(xiàng)目:
2025年1月-2027年12月,國(guó)家級(jí)海外優(yōu)秀青年人才項(xiàng)目,主持
2025年1月-2027年12月,泰山學(xué)者青年專家項(xiàng)目,主持
2024年10月-2029年9月,山東農(nóng)業(yè)大學(xué)海外引進(jìn)人才啟動(dòng)經(jīng)費(fèi),主持
研究論文:
(1)Ming Feng, Amrit K Nanda, Frauke Augstein, Ai Zhang, Lihua Zhao, Nilam Malankar, Sam W van Es, Bernhard Blob, Shamik Mazumdar, Jung-Ok Heo, Pawel Roszak, Jinbo Hu, Yrj? Helariutta, Charles W Melnyk, The ZAT14 family promotes cell death and regulates expansins to affect xylem formation and salt tolerance in Arabidopsis, The Plant Cell, 2025;, koaf271一作兼共同通訊(Nature Plants期刊以研究亮點(diǎn)形式撰文評(píng)述)
(2)Ming Feng#; Ai Zhang#; Van Nguyen; Anchal Bisht; Curt Almqvist; Lieven De Veylder; Annelie Carlsbecker; Charles W. Melnyk; A conserved graft formation process in Norway spruce andArabidopsis identifies the PAT gene family as central regulators of wound healing, Nature Plants, 2024, 10: 53-65 (Featured Article; Plantae 撰文評(píng)述)
(3)Shuai Zhang#; Ming Feng#; Wen Chen; Yang Zhao; Jingyun Lu; Yaru Wang; Yonghong Li; Cai-Zhong Jiang; Susheng Gan; Nan Ma; Junping Gao ; In rose, transcription factor PTM balances growth and drought survival via PIP2;1 aquaporin, Nature plants, 2019, 5(3): 290-299 (Faculty opinions推薦;高被引)
(4) Ming Feng; Frauke Augstein; Abdul Kareem; Charles W. Melnyk; Plant grafting: Molecular
mechanisms and applications, Molecular Plant, 2024, 17(1): 75-91 (高被引)
(5) Yi Zhang#; Zhicheng Wu#; Ming Feng; Jiwei Chen; Meizhu Qin; Wenran Wang; Ying Bao; Qian Xu; Ying Ye; Chao Ma; Cai-Zhong Jiang; Su-Sheng Gan; Hougao Zhou; Youming Cai; Bo Hong; Junping Gao; Nan Ma ; The circadian-controlled PIF8–BBX28 module regulates petal senescence in rose flowers by governing mitochondrial ROS homeostasis at night, The Plant Cell, 2021, 33(8): 2716-2735
(6) Martina Leso; Anna Kokla; Ming Feng; Charles W Melnyk ; Pectin modifications promote
haustoria development in the parasitic plant Phtheirospermum japonicum, Plant Physiology, 2023, 194(1): 229-242
(7)Phanu T. Serivichyaswat; Abdul Kareem; Ming Feng; Charles W. Melnyk ; Auxin signaling in the cambium promotes tissue adhesion and vascular formation during Arabidopsis graft healing. Plant Physiol. 2024 Oct 1;196(2):754-762
(8) Lin Wu#; Ming Feng#; Yangchao Jia; Honglei Li; Yiqing Liu; Yusong Jiang ; Involvement of
cytokinin response regulator RhRR1 in the control of flowering, Acta Physiologiae Plantarum,
2019, 41(7): 121
(9) Lin Wu; Nan Ma; Yangchao Jia; Yi Zhang; Ming Feng; Cai-Zhong Jiang; Chao Ma; Junping Gao; An Ethylene-Induced Regulatory Module Delays Flower Senescence by Regulating Cytokinin Content, Plant Physiology, 2016, 173(1): 853-862
(10) Mingjun Li; Jiao Zhang; Ming Feng; Xianyou Wang; Chen Luo; Qi Wang; Yuqin Cheng ;
Characterization of silencing suppressor p24 of Grapevine leafroll‐associated virus 2, Molecular Plant Pathology, 2018, 19(2): 355-368
(11) Jiwei Chen; Qian Zhang; Qigang Wang; Ming Feng; Yang Li; Yonglu Meng; Yi Zhang; Guoqin Liu; Zhimin Ma; Hongzhi Wu; Junping Gao; Nan Ma ; RhMKK9, a rose MAP KINASE KINASE gene, is involved in rehydration-triggered ethylene production in rose gynoecia, BMC Plant Biology, 2017, 17(51): 1-11
(12) Qing Liu; Ran Guo; Mingjun Li; Ming Feng; Xianyou Wang; Qi Wang; Yuqin Cheng;
Critical regions and residues for self-interaction of grapevine leafroll-associated virus 2
protein p24, VIRUS RESEARCH, 2016, 220(220): 57-63
研究生招生計(jì)劃:
每年招收博士1-2名,學(xué)碩1-2,專碩1名
聯(lián)系方式:
通訊地址:山東省泰安市岱宗大街61號(hào)
E-mail: yyfengming@163.com
聯(lián)系地址:山東農(nóng)業(yè)大學(xué)岱宗校區(qū)近南門東側(cè)實(shí)驗(yàn)樓102室
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