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郑明,副研究员,男,1986年8月出生,土家族,中共党员。中国农业科学院“杰出青年英才”,现任中国农业科学院油料作物研究所”油料作物分子改良理论与技术创新团队”党支部书记、执行首席。2022年入选农业农村部“神农青年英才”和“湖北省青年拔尖人才”计划。主要从事油菜功能基因组学与株型分子改良研究:创新性提出油菜株型基因组设计育种的理论与方法,建立高效的基因编辑遗传转化技术平台,首次揭示油菜叶型多样化的遗传基础,利用多途径创制出油菜耐密高产株型种质,为油菜高产品种培育提供了理论依据。在Nat Genet,Trends Plant Sci,New Phytol,Plant Biotechnol J,Plant Physiol等杂志发表论文30余篇;主持承担国家重点研发计划课题、国家自然科学基金等项目10余项;获批国家发明专利6项;获湖北省自然科学一等奖1项,中国农科院青年科技创新奖1项。
1. 国家重点研发计划项目课题“2023YFF1000703,油菜抗性性状形成的分子调控网络”,615万元,主持 2. 中国农科院青年创新专项任务“Y2022QC21,油菜高产株型调控机理研究与种质创制”,150万元,主持 3. 国家重点研发计划项目子课题“2022YFD1200401, 油菜和花生高产关键基因位点挖掘, 50万元,子任务 4. 国家自然科学基金“32172095,油菜株型调控基因DMB1的功能研究”,56万元,主持 5. 国家自然科学基金“31801402,甘蓝型油菜矮杆基因ED1的图位克隆与功能分析”,21万元,主持 6. 湖北省自然科学基金“2016CFB286,甘蓝型油菜株高性状A2主效QTL的功能基因鉴定”,3万元,主持 7. 国家重点研发计划项目子课题“2016YFD0101007,油菜、蔬菜重要性状的功能基因组与调控网络”,50 万元,子任务 8. 中国农科院重大科研任务“CAAS-ZDRW202105,油菜双超新品种培育”,180万元,承担 9. 中国农科院基本科研业务费(成果转化)“2019CGZH15,油菜矮杆、多分枝、高产新种质创制与转化育种”,12万元,主持 10. 中国农科院重大产出科研选题“CAAS-ZDXT201800,主要农作物优质、多抗、高效基因资源挖掘”,48万元,承担 11. 中国农科院基本科研业务费(杰出人才培育), “1610172017004,油菜矮杆基因ED1的图位克隆与功能分析”,50万元,主持 |
通讯作者论文(含共同通讯):
1. Nian Liu et al, MingZheng*. BAPID suppresses the inhibition of BRM on Di19-PR modulein response to drought. Plant J,2024, 通讯作者;
2. Chengke Pang et al., MingZheng*. BnaC03.BIN2 regulates plant height by affecting the maininflorescence length and first effective branch height in Brassica napus L. Crop J, 2024, 通讯作者
3. Huiying Wang et al, MingZheng*. DELAYED GREENING 409 encodes a dual-localizedpentatricopeptide repeat protein required for chloroplast and mitochondrialdevelopment. Plant Physiol,2023, 通讯作者;
4. Xiaodong Wang et al, MingZheng* & Jiefu Zhang*. BnaSD.C3 is a novel majorquantitative trait locus affecting semi-dwarf architecture in Brassica napus L.J Integr Agr, 2023, 共同通讯作者;
5. Nian Liu et al,Ming Zheng*. An integrated omics analysis reveals the geneexpression profiles of maize, castor bean, and rapeseed for seed oilbiosynthesis. BMC Plant Biol, 2022, 22:153. 通讯作者;
6. Shihang Fan et al,Ming Zheng*. CRISPR/Cas9-targeted mutagenesis of the BnaA03.BPgene confers semi-dwarf and compact architecture to rapeseed (Brassica napusL.). Plant Biotechnol J, 2021,2383-2385. 通讯作者;
7. Hongli Yang et al, MingZheng*. Genome-wide identification, phylogenetic and expressionanalysis of the SMAX1-Like gene in rapeseed (Brassica napus L.). OIL CROPSCIENCE, 2018, 3(2): 71-85. 通讯作者.
第一作者论文(含共同第一):
1. Ming Zheng etal, Wei Hua*. Integrated Strategies for Increasing RapeseedYield. Trends Plant Sci, 2022,742-745. 第一作者;
2. Lei Kang#,Lunwen Qian#, Ming Zheng# et al, Wei Hua*,Zhongsong Liu*. Genomic insights into the origin, domestication anddiversification of Brassica juncea. Nat Genet, 2021, s41588-021-00922-y. 共同第一作者
3. Ming Zheng etal, Wei Hua*. Knockout of two BnaMAX1 homologs byCRISPR/Cas9-targeted mutagenesis improves plant architecture and increasesyield in rapeseed (Brassica napus L.). Plant Biotechnol J, 2020, 644-654. 第一作者;
4. Xiaodong Wang#,Ming Zheng# et al, Wei Hua*. Fine‑mapping and transcriptomeanalysis of a candidate gene controlling plant height in Brassica napus L. Biotechnol Biofuels, 2020, 13:42. 共同第一作者;
5. Ming Zheng etal, Wei Hua*. Three BnaIAA7 homologs are involved inauxin/brassinosteroid-mediated plant morphogenesis in rapeseed (Brassica napusL.). Plant Cell Rep, 2019,s00299-019-02410-4. 第一作者;
6. Ming Zheng etal, Hanzhong Wang*. Genome-wide association study revealscandidate genes for control of plant height, branch initiation height andbranch number in rapeseed (Brassica napus L.). Front Plant Sci, 2017, 8:1246. 第一作者;
7. Ming Zheng etal, Jianmin Wan*. The RICE MINUTE-LIKE1 (RML1) gene, encodinga ribosomal large subunit protein L3B, regulates leaf morphology and plantarchitecture in rice. J Exp Bot,2016, 67(11):3457-3469. 第一作者;
8. Ming Zheng etal, Jianmin Wan*. DEFORMED FLORAL ORGAN1 (DFO1) regulates floralorgan identity by epigenetically repressing the expression of OsMADS58 in rice(Oryza sativa). New Phytol, 2015, 1476-1490. 第一作者;
9. Ming Zheng etal, Wei Hua*. Cotyledons: a useful biological material fortransient gene expression analysis in rapeseed (Brassica napus L.). OIL CROPSCIENCE, 2018, 3 (1): 12-20.
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