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10 2023.04

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    凌宏清

一、基本信息

姓名:凌宏请

性别:

出生年月:1957.2      

民族:汉

学位:博士        

职称:研究员

主要研究方向:植物基因组学和作物营养分子生物学

博士研究生招生方向:作物遗传育种,植物营养分子生物学

硕士研究生招生方向:作物遗传育种,作物营养学

 

二、联系方式

手机:13911895839

E-mail:hqling@yazhoulabor.com

 

三、教育经历

1989.1-1993.1德国KielChristian-Albrechts大学理学院,植物学专业,理学博士

1985.10-1988.7德国KielChristian-Albrechts大学农学院,遗传育种专业,农学硕士

1977.3-1982.1,四川农学院(现四川农业大学)农学系农学学士

 

四、科研与学术工作经历

2022.3-至今,海南省崖州湾种子实验室,技术支撑部首席科学家

2001.7-2022.2,中国科学院遗传与发育生物学研究所,研究员。

1998.5-2001.6瑞士苏黎世大学植物生物学研究所,科研助理

1993.2-1998.4,德国植物遗传与栽培作物研究所博士后

 

五、科研项目

1.中国科学院战略性科技先导专项(A)类“种子精准设计与创造”子课题,XDA24010104,小麦高产性状的分子基础,2019.10-2024.12450万,在研,子课题负责任

2.国家自然科学基金委创新研究群体项目,31921005,小麦基因组互作的遗传与表观遗传学基础,2020.1.1-2014.12.31150万,在研,参与

3.国家自然科学基金委重大研究计划课题,91935304,小麦产量与品质性状关键基因的图位克隆和遗传网络,2020.1.1-2021.12.31110万,参与

4.国家自然科学基金委重大研究项目课题,31991211,多倍体小麦亚基因组的起源与进化,2020.1.1-2024.12.31150万,在研,参与

5.山东省自然科学基金重大基础研究项目,ZR2019ZD15,小麦高产优质抗逆的重要基因挖掘及分子设计育种,2019.12.1-2024.12.3180万,在研,参与

 

六、代表性论文

1. Shi, X., F. Cui, X. Han, Y. He, L. Zhao, N. Zhang, H. Zhang, H. Zhu, Z. Liu, B. Ma, S. Zheng, W. Zhang, J. Liu, X. Fan, Y. Si, S. Tian, J. Niu, H. Wu, X. Liu, Z. Chen, D. Meng, X. Wang, L. Song, L. Sun, J. Han, H. Zhao, J. Ji, Z. Wang, X. He, R. Li, X. Chi, C. Liang, B. Niu, J. Xiao, J. Li, H.-Q. Ling. Comparative genomic and transcriptomic analyses uncover the molecular basis of high nitrogen-use efficiency in the wheat cultivar Kenong 9204. Molecular Plant, 2022, 15:1440–1456.

2. Si, Y., Q. Lu, S. Tian, J. Niu, M. Cui, X. Liu, Q. Gao, X. Shi, H.‑Q. Ling, S. Zheng. Fine mapping of the tiller inhibition gene TIN5 in Triticum urartu. Theoretical and Applied Genetics, 2022, 135(8):2665-2673.

3. Gu, M., Q. Lu, Y. Liu, M. Cui, Y. Si, H. Wu, T. Chai, H.-Q. Ling. Requirement and functional redundancy of two large ribonucleotide reductase subunit genes for cell cycle, chloroplast biogenesis and photosynthesis in tomato. Annals of Botany, 2022, 130:173–187.

4. Khan, M. S., Q. Lu, M. Cui, H. Rajab, H. Wu, T. Chai, H.-Q. Ling. Crosstalk between iron and sulfur homeostasis networks in Arabidopsis. Frontier in Plant Sciences, Section of Plant Nutrition, 2022, https://doi.org/10.3389/fpls.2022.878418.

5. Si, Y., S. Zheng, J. Niu, S. Tian, M. Gu, Q. Lu, Y. He, J. Zhang, X. Shi, Y. Li, H.-Q. Ling. Ne2, a typical CC-NBS-LRR-type gene, is responsible for hybrid necrosis in wheat. New Phytologist, 2021, 232: 279–289.

6. Si, Y., S. Zheng, J. Niu, S. Tian, X. Shi, Y. He, Y. Li, H.‑Q. Ling. Fine mapping of hybrid necrosis gene Ne1 in common wheat (Triticum aestivum L.). Theoretical and Applied Genetics, 2021, 134:2603–2611.

7. Cui, M., M. Gu, Y. Lu, Y. Zhang, C. Chen, H.-Q. Ling, H. Wu. Glutamate synthase 1 is involved in iron-deficiency response and long-distance transportation in Arabidopsis. Journal of Integrative Plant Biology, 2020, 62(12): 1925-1941.

8. Niu, J., S. Zheng, X. Shi, Y. Si, S. Tian, Y. He, H.-Q. Ling. Fine mapping and characterization of the awn inhibitor B1 locus in common wheat (Triticum aestivum L.). The Crop Journal, 2020, 8(4): 613-622.

9. Zhao, D.-Y., S.-S. Zheng, M. K. Naeem, J.-Q. Niu, N. Wang, Z.-J. Li, H.-L. Wu, H.-Q. Ling. Screening wheat genotypes for better performance on reduced phosphorus supply by comparing glasshouse experiments with field trials. Plant & Soil, 2018, 430:349-360.

10. Cui, Y., C.-L. Chen, M. Cui, W.-J. Zhou, H.-L. Wu, H.-Q. Ling. Four IVa bHLH transcription factors are novel interactors of FIT and mediate JA inhibition of iron uptake in Arabidopsis. Molecular Plant, 2018, 11:1166-1183.

11. Chen, C.-L., Y. Cui, M. Cui, W.-J. Zhou, H.-L. Wu, H.-Q. Ling. A FIT-binding protein is involved in modulating iron and zinc homeostasis in Arabidopsis. Plant, Cell & Environment, 2018, 41:1698-1714.

12. Ling, H.-Q., B. Ma, X. Shi, H. Liu, L. Dong, H. Sun, Y. Cao, S. Zheng, Ye Li, Y. Yu, H. Du, M. Qi, Yan Li, H. Lu, H. Yu, Y. Cui, N. Wang, C. Chen, H. Wu, Y. Zhao, J. Zhang, Y.W. Li, W. Zhou, B. Zhang, W. Hu, M.J.T. Eijk, J. Tang, H. M.A. Witsenbore, S. Zhao, Z. Li, A. Zhang, D. Wang, C. Liang. Genome sequence of the progenitor of wheat A subgenome Triticum urartu. Nature, 2018, 557: 424-428.

13. Li, Y., H. Wu, T. Zhao, H.-Q. Ling. Characterization of the AtSXP3 promoter elucidates its complex regulation in response to phosphorus deficiency. Plant & Cell Physiology, 2016, 57: 1767-1778.

14. Yang, K., Z. Tian, C. Chen, L. Luo, B. Zhao, Z. Wang, L. Yu, Y. Li, Y. Sun, W. Li, Y. Chen, Y. Li, Y. Zhang, D. Ai, J. Zhao, C. Shang, Y. Ma, B. Wu, M. Wang, L. Gao, D. Sun, P. Zhang, F. Guo, W. Wang, Y. Li, J. Wang, R.K. Varshney, J. Wang, H.-Q. Ling, P. Wan. Genome sequencing of adzuki bean (Vigna angularis) provides insight into high starch and low fat accumulation and domestication. Proc. Natl. Acad. Sci. USA, 2015, 112:13213-13218.

15. Du, J., Z. Huang, B. Wang, H. Sun, C. Chen, H.-Q. Ling and H. Wu. SlbHLH068 interacts with FER to regulate the iron-deficiency response in tomato. Annals of Botany, 2015, 116:23-34.

16. Sun, H., F.-J. Fan, H.-Q. Ling. Genome-wide identification and characterization of the bHLH gene family in tomato. BMC Genomics, 2015, 16:9.

17. Zhang, Y., H.L. Wu, N. Wang, J. Fan, C.L. Chen, Y. Cui, H.F. Liu, H.-Q. Ling. Mediator subunit 16 functions in the regulation of iron uptake gene expression in Arabidopsis. New Phytologist, 2014, 203:770-783.

18. Fan, H.J., Z.L. Zhang, N. Wang, Y. Cui, H. Sun, Y. Liu, H.L. Wu, S.S. Zheng, S.L. Bao, H.-Q. Ling. SKB1/PRMT5-mediated histone H4R3 dimethylation of 1 Ib subgroup bHLH genes negatively regulates iron homeostasis in Arabidopsis thaliana. The Plant Journal, 2014, 77:209-221.

19. Ling H.-Q., S. Zhao, D. Liu, J. Wang, H. Sun, C. Zhang, H. Fan, D. Li, L. Dong, Y. Tao, C. Gao, H. Wu., Y. Li, Y. Cui, X. Guo, S. Zheng, B. Wang, K. Yu, Q. Liang, W. Yang, X. Lou, J. Chen, M. Feng, J. Jian, X. Zhang, G. Luo, Y. Jiang, J. Liu, Z. Wang, Y. Sha, B. Zhang, H. Wu, D. Tang, Q. Shen, P. Xue, S. Zou, X. Wang, X. Liu, F. Wang, Y. Yang, X. An, Z. Dong, K. Zhang, X. Zhang, M.-C. Luo, J. Dvorak, Y. Tong, Ji. Wang, H. Yang, Z. Li, D. Wang, A. Zhang, Ju. Wang. Draft genome of the wheat A-genome progenitor Triticum urartu. Nature, 2013, 496:87-90.

20. Wang N., Cui Y., Liu Y., Fan H., Du J., Huang Z., Yuan Y., Wu H., Ling H.-Q. Requirement and functional redundancy of Ib subgroup bHLH proteins for iron deficiency responses and uptake in Arabidopsis thanilana. Molecular Plant, 2013, 6:503-513.

21. The Tomato Consortium. The tomato genome sequence provides insight into fleshy fruit evolution. Nature, 2012, 485: 635-641.

22. Wu H., C. Chen, J. Du, H. Liu, Y. Cui, Y. Zhang, Y. He, Y. Wang, C. Chu, Z. Feng, J. Li, H.-Q. Ling. Co-overexpression FIT with AtbHLH38 or AtbHLH39 in Arabidopsis enhanced cadmium tolerance via increased cadmium sequestration in roots and improved iron homeostasis of shoots. Plant Physiology, 2012, 158:790-800.

 

 

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