导师风采
杨平
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个人信息

Personal Information

  • 研究员
  • 导师类别:硕士,博士生导师
  • 性别: 男
  • 学历:博士研究生
  • 学位:博士

联系方式

Contact Information

  • 所属院系:作物科学所
  • 所属专业: 作物遗传育种
  • 邮箱 : yangping@caas.cn
  • 工作电话 : 010-82107467

个人简介

Personal Profile


教育经历
  • 2010.09-2014.03 德国莱布尼茨植物遗传与作物栽培研究所(IPK)/Martin-Luther University Halle Wittenberg,博士
  • 2007.09-2010.06 四川农业大学生物化学与分子生物学专业,硕士,其中2008.06-2010.08 中国科学院遗传与发育生物学研究所客座研究生
  • 2003.09-2007.06 四川农业大学生物技术专业,本科,其中2007.02-2008.04 四川农业科学院作物研究所实习学生
工作经历
  • 2019.01至今 中国农业科学院作物科学研究所,研究员
  • 2017.01-2018.12 中国农业科学院作物科学研究所,所聘研究员
  • 2015.02-2017.04 瑞士苏黎世大学(UZH)植物与微生物学系,博士后,其中2017.01-2017.04为回国过渡期
  • 2014.04-2015.01 德国马克思普朗克植物育种研究所(MPIPZ)植物与微生物互作系,博士后
学术兼职
  • Crop Science编委/Associate editor
  • Frontiers in Microbiology,Frontiers in Plant Science编委/Review editor
  • 植物遗传资源学报英文编辑
  • 中国作物学会大麦专业委员会秘书长
  • 中国农学会植物遗传资源分会委员
荣誉称号
  • 2023年获中国作物学会科学技术成就奖-青年奖
  • 2023年入选中国农业科学院农科英才计划领军人才C类(2024年变更为杰出青年英才)
  • 2022年入选人社部高层次留学回国人才资助计划
  • 2018年入选中国农业科学院农科英才计划青年英才,2023年期满考核优秀


  • 研究方向Research Directions
大麦种质资源创新与利用,子方向-1:大麦种质资源的形成与演化,子方向-2:重要功能基因的克隆和解析,子方向-3:黄花叶病基因发掘和育种利用
2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行整体布局设计。 整体布局设计。
团队展示

2023年6月金彦龙、程春园毕业合影

IMG_7436

2021年爬长城

IMG_20210703_134426

2021年高广奇硕士毕业合影

IMG_8080

2020年春节前年终聚餐

IMG_20210204_200853

2020年蔡羽去德国临别聚会

IMG_20200801_152222

2020年北京最贵麦田大田收种脱粒

微信图片_20201223190356

2018年团队聚餐IMG_20180502_195420


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科研项目
  • 中国农业科学院农科英才计划-杰出青年英才支持经费,主持/在研
  • 国家自然科学基金-德国研究联合会联合资助中德科学中心中德合作交流项目,主持/在研
  • 人社部高层次留学回国人才资助计划,主持/在研
  • 国家自然科学基金-面上项目,主持/在研


研究成果

 #并列第一作者;*并列通讯作者。

  • (23) Guangqi Gao, Luxi Yan, YuCai, Yu Guo, Congcong Jiang, Qiang He, Sarah Tasnim, Zongyun Feng, Jun Liu,Jing Zhang, Takao Komatsuda, Martin Mascher, Ping Yang (2024). Most Tibetanweedy barleys originated via recombination between Btr1 and Btr2 indomesticated barley. Plant Communications 5: 100828.

    (22) Jinhong Kan#, Yu Cai#,Chunyuan Cheng#, Shiqiang Chen, Congcong Jiang, Zhentian He, Ping Yang.CRISPR/Cas9-guided knockout of eIF4E improves Wheat yellow mosaic virusresistance without yield penalty. Plant Biotechnology Journal, 2023, 21:893-895.

    (21) Yanlong Jin#, Shiqiang Chen,Xiao Xu, Congcong Jiang, Zhentian He, Wanquan Ji*, Ping Yang*. Host specificityof soil-borne pathogens in Hordeum species and their relatives. Plant Disease,2023, 107: 1044-1053.

    (20) Linli Huang#,Guangqi Gao#,Congcong Jiang, Guimei Guo, Qiang He, Yingjie Zong, Chenghong Liu*, PingYang*(2023). Generating homozygous mutant populations of barley microspores by ethylmethanesulfonate treatment. aBIOTECH,4: 212-212.

    (19) Congcong Jiang#, MiaomiaoLei#, Yu Guo#, Guangqi Gao#, Lijie Shi, Yanlong Jin, Yu Cai, Axel Himmelbach,Shenghui Zhou, Qiang He, Xuefeng Yao, Jinhong Kan, Georg Haberer, FengyingDuan, Lihui Li, Jun Liu, Jing Zhang, Manuel Spannagl, Chunming Liu, Nils Stein,Zongyun Feng, Martin Mascher*, Ping Yang*. A reference-guided TILLING by amplicon-seq platformsupports forward and reverse genetics in barley. Plant Communications, 2022, 3:100317.

    (18) Jinhong Kan#, Yu Cai#,Chunyuan Cheng, Congcong Jiang, Yanlong Jin, Ping Yang. Simultaneous editingof host factor gene TaPDIL5-1 homoeoalleles confers wheat yellow mosaic virusresistance in hexaploid wheat. New Phytologist, 2022, 234: 340-344.

    (17) Chunyuan Chen#, JinhongKan#*, Shanshan Li#, Congcong Jiang, Xiaoyan He, Huiquan Shen, Rugen Xu, BoqunLi, Zongyun Feng, Ping Yang*. Mutation of barley HvPDIL5-1 improves resistanceto yellow mosaic virus disease without growth or yield penalties. Frontiers inPlant Science. 2022, 13: 1018379.

    (16) Congcong Jiang#, MiaomiaoLei#, Haiye Luan, Yuhan Pan, Li Zhang, Shenghui Zhou, Yu Cai, Xiao Xu, HuiquanShen, Rugen Xu, Zongyun Feng, Jing Zhang, Ping Yang. Genomic and pathogenicdiversity of barley yellow mosaic virus and barley mild mosaic virus isolatesin fields of China and their compatibility with resistance genes of cultivatedbarley. Plant Disease, 2022, 106: 2201-2210.

    (15) Ping Yang, DanielaScheuermann, Bettina Kessel, Teresa Koller, Julian R. Greenwood, SeverineHurni, Gerhard Herren, Shenghui Zhou, William Marande, Thomas Wicker, Simon G.Krattinger*, Milena Ouzunova*, Beat Keller*. Alleles of a wall-associatedkinase gene account for three of the major northern corn leaf blight resistanceloci in maize. Plant Journal, 2021, 106: 526-535.

    (14) Jinhong Kan#, Guangqi Gao#,Qiang He#, Qian Gao#, Congcong Jiang, Sunny Ahmar, Jun Liu, Jing Zhang, PingYang. Genome-wide characterization of WRKY transcription factors revealed geneduplication and diversification in populations of wild to domesticated barley.International Journal of Molecular Sciences, 2021, 22: 5354.

    (13) Guangqi Gao#, Jinhong Kan#,Congcong Jiang, Sunny Ahmar, Jing Zhang, Ping Yang. Genome-wide diversityanalysis of TCP transcription factors revealed cases of selection from wild tocultivated barley. Functional & Integrative Genomics, 2021, 21: 31-42.

    (12) Congcong Jiang#, JinhongKan#, Frank Ordon, Dragan Perovic, Ping Yang, Bymovirus-induced yellow mosaicdiseases in barley and wheat: viruses, genetic resistances and functionalaspects. Theoretical and Applied Genetics, 2020, 133: 1623–1640.

    (11) Miaomiao Lei#, Murad Ali#,Congcong Jiang, Zhenzhen Shen, Yu Cai, Ping Yang*, Zongyun Feng*.Marker-assisted selection in a global barley (Hordeum vulgare subsp. vulgare)collection revealed a unique genetic determinant of the naked barley controlledby the nud locus. Genetic Resources Crop Evolution, 2020, 67(2): 273-280.

    (10) Lijie Shi#, Congcong Jiang#,Qiang He, Antje Habekuss, Frank Ordon, Haiye Luan, Huiquan Shen, Jun Liu,Zongyun Feng, Jing Zhang, Ping Yang. Bulked segregant RNA-sequencing (BSR-seq)identified a novel rare allele of eIF4E effective against multiple isolates of BaYMV/BaMMV.Theoretical and Applied Genetics, 2019, 132(6): 1777-1788.

    (9) Ping Yang, Coraline Praz,Beibei Li, Jyoti Singla, Chritelle A.M. Robert, Bettina Kessel, DanielaScheuermann, Linda Luthi, Milena Ouzunova, Matthias Erb*, Simon G. Krattinger*,Beat Keller*. Fungal resistance mediated by maize wall-associated kinaseZmWAK-RLK1 correlates with reduced benzoxazinoid content. New Phytologist,2019, 221(2): 976-987.

    (8) Beibei Li#, ChristianeFörster, Christelle A.M. Robert, Tobias Züst, L. Hu, R. A. R. Machado, J.D.Berset, V. Handrick, T. Knauer, Goetz Hensel, Wanxin Chen, Jochen Kumlehn, PingYang, Beat Keller, Jonathan Gershenzon, Georg Jander, Tobias G. Köllner*,Matthias Erb*. Convergent evolution of a metabolic switch between aphid andcaterpillar resistance in cereal. Science Advances, 2018, 4(12): eaat6797.

    (7) Yiming Wang#, Stefan Schuck,Jingni Wu, Ping Yang, Anne-Christin Doering, Jürgen Zeier*, Kenichi Tuda*. AMPK3/6-WKRY33-ALD1-Pipecolic acid regulatory loop contributes to systemicacquired resistance. Plant Cell, 2018, 30: 2480-2494.

    (6) Ping Yang, Gerhard Herren,Simon G. Krattinger and Beat Keller*. Large-scale Maize Seedling Infection withExserohilum turcicum in the Greenhouse. Bio-protocol, 2017, 7(19): e2567.

    (5) Ping Yang, Antje Habekuss,Bernhard J. Hofinger, Kostya Kanyuka, Benjamin Kilian, Andreas Graner, FrankOrdon, Nils Stein*. Sequence diversification in recessive alleles of two hostfactor genes for Bymovirus infection suggests adaptive selection for bymovirusresistance in cultivated barley from East Asia. Theoretical and AppliedGenetics, 2017, 130(2):331-344.

    (4) Justine Sucher#, Rainer Boni,Ping Yang, Peter Rogowsky, Heike Buchner, Cristine Kastner, Jochen Kumlehn,Simon G. Krattinger, Beat Keller*. The durable wheat disease resistance geneLr34 confers common rust and northern corn leaf blight resistance in maize.Plant Biotechnology Journal, 2017, 15: 489-496.

    (3) Ping Yang, Antje Habekuss,Frank Ordon, Nils Stein*. Analysis of bymovirus resistance genes on proximalbarley chromosome 4HL provides the basis for precision breeding for BaMMV/BaYMVresistance. Theoretical and Applied Genetics, 2014, 127(7): 1625-1634.

    (2) Ping Yang, Thomas Lüpken,Antje Habekuss, Goetz Hensel, Burkhard Steuernagel, Benjamin Kilian, RuviniAriyadasa, Axel Himmelbach, Jochen Kumlehn, Uwe Scholz, Frank Ordon*, NilsStein*. PROTEIN DISULFIDE ISOMERASE LIKE 5-1 is a susceptibility factor toplant viruses. Proceedings of the National Academy of Sciences of the UnitedStates of America, 2014, 111(6), 2104-2109.

    (1) Ping Yang, Dragan Perovic,Antje Habekuss, Rounan Zhou, Andreas Graner, Frank Ordon, Nils Stein*.Gene-based high-density mapping of rym7 (rmm7) conferring resistance to Barleymild mosaic virus (BaMMV). Molecular breeding, 2013, 32(1): 27-37.


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