
个人简介:
李承道,男,博士,山东农业大学特聘教授,博士生导师。澳大利亚莫道克大学农业科学系教授,澳大利亚技术科学与工程院院士,澳大利亚国家谷物出口创新中心董事,西澳大利亚农业与食品部首席科学家。利用传统育种方法结合基因组学、分子标记、快速育种、基因编辑等技术,构建了优质啤酒大麦高效育种体系。先后在《Nature》等国际期刊发表论文200余篇,出版著作5部。曾荣获西澳经济发展总理奖,2017年澳大利亚外交贸易部“中澳建交45周年的45位杰出人才”以及2019澳大利亚杰出成就农业研究卓越奖等荣誉。
主要研究方向:
长期从事麦类作物遗传资源发掘、基因功能解析、新品种创制,同时开展中澳农业生物技术合作研究。
近年来主持项目:
1. Deeper Roots Stronger Yields: Engineering OPRIII-Mediated Root Architecture for Drought-Resilient Barley in Western Australia,COGGO,Grant No.23467,2026–2027。项目负责人。基于 OPRIII 基因调控根系构型,培育西澳抗旱稳产大麦新材料。
2. Developing a cost-effective and rapid genotyping method for the 7D inversion controlling heading date and yield potential in Oat,COGGO,Grant No.23468,2026–2027。项目负责人。开发低成本快速分型技术,解析燕麦 7D 倒位调控抽穗期与产量,支撑燕麦分子育种。
3. National Industry PhD Program,Commonwealth Department of Education,Grant No.23633,2026–2029。项目负责人。产业博士联合培养,谷物遗传育种方向。
4. National Industry PhD Program,Commonwealth Department of Education,Grant No.23651,2026–2029。项目负责人。产业博士联合培养,谷物遗传育种方向。
5. National Industry PhD Program,Commonwealth Department of Education,Grant No.23650,2026–2029。项目负责人。产业博士联合培养,谷物遗传育种方向。
6. Advancing genetic improvements in barley heat tolerance during flowering and grain fill,GRDC,Grant No.22747,2025–2029。项目负责人。大麦开花与灌浆期耐热遗传改良,挖掘耐热种质与基因资源。
7. AI-driven intelligent drone systems for advanced fungal control in crops with precise UVC light treatment,GRDC,Grant No.23049,2025–2027。项目负责人。AI 无人机结合精准 UVC 紫外光,研发作物真菌病害绿色防控技术。
8. Clean grain clear value: Genomic solutions to the barley black point challenge using pangenomes and precision breeding,WAARC,Grant No.23512,2025–2029。项目负责人。利用大麦泛基因组与精准育种,攻克大麦黑胚病害,提升籽粒商品品质。
9. Genetic and environmental effects on grain weight and alkaloid content in Narrow-leaved lupin,WAARC,Grant No.23511,2025–2028。项目负责人。解析遗传与环境互作调控窄叶羽扇豆粒重与生物碱含量。
10. GRDC GrainData Fusion,GRDC,Grant No.22841,2025–2026。项目负责人。构建谷物多源数据融合平台,整合基因组、表型与环境数据支撑育种决策。
11. Integrative Mechanisms of Aphid (Aphis sp.) Resistance in Narrow-leafed Lupin (Lupinus angustifolius): The Emerging Role of Alkaloids in Plant-Insect Interactions,GRDC,Grant No.23632,2025–2029。项目负责人。解析窄叶羽扇豆抗蚜虫机理,阐明生物碱在植虫互作中的功能。
12. Oat Industry Partnership PhD scholarship -Wangzhen Wu,Meta-Matters,Grant No.23014,2025–2029。项目负责人。燕麦产业合作博士奖学金项目,开展燕麦遗传改良研究。
13. WAARC PhD Scholarship,WAARC,Grant No.23517,2025–2028。项目负责人。西澳农业研究协作体博士奖学金,支撑麦类 / 豆科作物育种研究生培养。
14. ClearVue glasshouse crop trial season 5,CLEARVUE Technologies Ltd,Grant No.23110,2025。项目负责人。光伏温室作物栽培试验,评估新型温室条件下谷物生长表现。
15. Enhancing the nutritional quality of narrow-leafed lupin by reducing anti-nutritional seed alkaloid levels,GRDC,Grant No.22032,2024–2028。项目负责人。降低窄叶羽扇豆种子抗营养生物碱,提升饲用与食用营养品质。
16. Further discovery of improved sources of Septoria resistance,GRDC,Grant No.22031,2024–2028。项目负责人。发掘小麦壳针孢叶枯病新抗源,开展抗病遗传解析。
17. Program 2 - Further discovery of improved sources of Septoria resistance,GRDC,Grant No.22402,2024–2028。项目负责人。小麦壳针孢叶枯病抗性资源挖掘与育种利用。
18. Program 2: Enhancing the agronomic and nutritive value of narrow-leafed lupin by reducing seed coat thickness and increasing protein content,GRDC,Grant No.22076,2024–2028。项目负责人。改良窄叶羽扇豆农艺性状,降低种皮厚度、提高籽粒蛋白。
19. Developing genetic tools to facilitate breeder use and deployment of high value acid soils tolerant chickpea germplasm,GRDC,Grant No.21413,2023–2025。项目负责人。开发分子遗传工具,推进耐酸土鹰嘴豆种质在育种中应用。
20. Genomics to rust proof the humble oat,ARC,Grant No.21692,2023–2027。项目负责人。利用基因组学解析燕麦抗锈遗传机制,构建燕麦抗锈分子育种体系。
近年来主要代表论文:
1. Feng H, Du Q, Jiang Y, Jia Y, He T, Wang Y, Chapman B, Yu J, Zhang H, Gu M, Jiang M, Gao S, Zhang X, Song Y, Garg V, Varshney RK, Wei J, Li C, Zhang X, Li R. Hordeum I genome unlocks adaptive evolution and genetic potential for crop improvement. Nat Plants. 2025 Mar;11(3):438-452.
2. Chapman, B., Dang, V., He, T., Hill, C.B., Hu, H., Wang, P., Bayer, P.E., Edwards, D., Keeble-Gagnère, G., Tibbits, J.F., & Li, C. (2026). The graphical barley pangenome reveals micro- and macro-scale genetic variation. Agriculture Communications.
3. Hu H, Wang P, Angessa TT, Zhang XQ, Chalmers KJ, Zhou G, Hill CB, Jia Y, Simpson C, Fuller J, Saxena A, Al Shamaileh H, Iqbal M, Chapman B, Kaur P, Dudchenko O, Aiden EL, Keeble-Gagnere G, Westcott S, Leah D, Tibbits JF, Waugh R, Langridge P, Varshney R, He T, Li C. Genomic signatures of barley breeding for environmental adaptation to the new continents. Plant Biotechnol J. 2023 Sep;21(9):1719-1721.
4. Wang J, Yang W, Zhang S, Hu H, Yuan Y, Dong J, Chen L, Ma Y, Yang T, Zhou L, Chen J, Liu B, Li C, Edwards D, Zhao J. A pangenome analysis pipeline provides insights into functional gene identification in rice. Genome Biology. 2023 Jan;24(1):19.
5. Karunarathne S, Walker E, Sharma D, Li C, Han Y. Genetic resources and precise gene editing for targeted improvement of barley abiotic stress tolerance. J Zhejiang Univ Sci B. 2023 Jul 3;24(12):1069-1092.
6. Zeng Z, Jia Y, Huang X, Chen Z, Xiang T, Han N, Bian H, Li C. Transcriptional and protein structural characterization of homogentisate phytyltransferase genes in barley, wheat, and oat. BMC Plant Biol. 2023 Oct 31;23(1):528.
7. Pan R, Hu H, Xiao Y, Xu L, Xu Y, Ouyang K, Li C, He T, Zhang W. High-quality wild barley genome assemblies and annotation with Nanopore long reads and Hi-C sequencing data. Sci Data. 2023 Aug 10;10(1):535.
8. Robertson BC, Han Y, Li C. A Comparison of Different Stomatal Density Phenotypes of Hordeum vulgare under Varied Watering Regimes Reveals Superior Genotypes with Enhanced Drought Tolerance. Plants (Basel). 2023 Aug 1;12(15):2840.
9. Hu H, Wang P, Angessa TT, Zhang XQ, Chalmers KJ, Zhou G, Hill CB, Jia Y, Simpson C, Fuller J, Saxena A, Al Shamaileh H, Iqbal M, Chapman B, Kaur P, Dudchenko O, Aiden EL, Keeble-Gagnere G, Westcott S, Leah D, Tibbits JF, Waugh R, Langridge P, Varshney R, He T, Li C. Genomic signatures of barley breeding for environmental adaptation to the new continents. Plant Biotechnol J. 2023 Sep;21(9):1719-1721.
10. Qin DD, Liu R, Xu F, Dong G, Xu Q, Peng Y, Xu L, Cheng H, Guo G, Dong J, Li C. Characterization of a barley (Hordeum vulgare L.) mutant with multiple stem nodes and spikes and dwarf (msnsd) and fine-mapping of its causal gene. Front Plant Sci. 2023 Jul 6;14:1189743.
11. Qiu CW, Ma Y, Wang QQ, Fu MM, Li C, Wang Y, Wu F. Barley HOMOCYSTEINE METHYLTRANSFERASE 2 confers drought tolerance by improving polyamine metabolism. Plant Physiol. 2023 Aug 31;193(1):389-409.
12. Li T, Kong C, Deng P, Li C, Zhao G, Li H, Gao L, Cui D, Jia J. Intra-Varietal Diversity and Its Contribution to Wheat Evolution, Domestication, and Improvement in Wheat. Int J Mol Sci. 2023 Jun 16;24(12):10217.
联系方式:
通讯地址:山东省泰安市泰山区岱宗大街61号山东农业大学农学院
邮编:271018
电子邮箱:C.Li@murdoch.edu.au

