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姓 名:
 侯宏伟
性 别:
 男
职 称:
 研究员
学 历:
 研究生
电 话:
 86-27-68780159
电子邮件:
 houhw@ihb.ac.cn

简历:

  男,研究员,博士生导师, 水生植物生理学学科组长。1989年本科毕业于河南师范大学生物系,2004年毕业于北京大学生命科学学院植物分子及发育生物学系,获博士学位,之后在多伦多大学、加拿大农业部研究中心等学术单位从事访学研究,2014年2月作为优秀人才引进。

  招生专业:遗传学     

  研究领域: 植物生理生态、发育及分子生物学、植物生物技术    

  研究兴趣: 大型水生植物生理、生态、发育和应用,主要包括: 

  1.大型水生植物形态建成和异形叶发育分子机制研究。    

  2.水生植物生物多样性和适应性研究。    

  3.水生植物与生态修复研究。 

  4.水生植物生物技术及应用。 


研究方向:

高等水生植物生理学,生态学,分子及发育生物学,遗传学     


专家类别:

职务:

社会任职:

获奖及荣誉:
代表论著:

1. Li, G.Hu, S.Yang, J.Schultz, E.Clarke, K.Hou, H. 2017. Water-Wisteria as an ideal plant for heterophylly study in higher aquatic plants. Plant Cell Reports, 36:1225–1236. https://doi.org/10.1007/s00299-017-2148-6 

2. Hu, S., Li, G., Yang, J., Hou, H. 2017. Aquatic plant genomics: advances, applications, and prospects. International Journal of Genomics, 2017: 1-9. https://doi.org/10.1155/2017/6347874 

3. Mariyamma, N., Clarke, K., Yu, H., Hou, H., Wilton, E., Dyk, J., Schultz, E. 2017. Members of the Arabidopsis FORKED1-LIKE gene family act to localize PIN1 in developing veins. Journal of Experimental Botany. Submitted. MS ID#: JEXBOT/2017/218875 

4. Wu, Z., Wu, J., Wang, Y., Hou, H. 2017. Development of EST-derived microsatellite markers in the aquatic macrophyte Ranunculus bungei (Ranunculaceae). Applications in Plant Sciences, 5: 1700022. http://www.bioone.org/doi/10.3732/apps.1700022 

5. Mariyamma, N., Hou, H., Carland, F., Nelson, T., Schultz, E. 2017. Localization of Arabidopsis FORKED1 to a RABA positive compartment suggests a role in secretion. Journal of Experimental Botany, 68: 3375–3390. https://doi.org/10.1093/jxb/erx180 

6. Suliman, K., Siddique, R., Nabi, G., Li, Q., Hou, H. 2017. Investigation of sewage and drinking water in major healthcare centres for bacterial and viral pathogens. Hydrology Current Research, 8: 1000272. https://doi.org/10.4172/2157-7587.1000272 

7. Shen, S., Hou, H., Ding, C., Bing, D., Lu, Z. 2016. Protein content correlates with starch morphology, composition and physicochemical properties in field peas. Canadian Journal of Plant Sciences, 96: 404–412. https://doi.org/10.1139/cjps-2015-0231 

8. Khan, S., Ullah, M., Siddique, R., Nabi, G., Manan, S., Yousaf, M., Hou, H. 2016. Role of recombinant DNA technology to improve life. International Journal of Genomics, 2016: 1-14. http://dx.doi.org/10.1155/2016/2405954 

9. *Held, M., *Hou, H., *Miri, M., Huynh, C., Ross, L., Hossain, S., Sato, S., Tabata, S., Perry, J., Wang, T., Szczyglowski, K. 2014. Lotus japonicus cytokinin receptors work partially redundantly to mediate nodule formation. The Plant Cell, 26:678-694 (*co-first author). http://dx.doi.org/10.1105/tpc.113.119362 

10. Yoon, H., Shakhawat, H., Held, M., Hou, H., Kehl, M., Tromas, A., Sato, S., Tabata, S., Stougaard, J., Ross, L., Szczyglowski, K. 2014. Lotus japonicus SUNERGOS1 encodes a predicted subunit A of a DNA topoisomerase VI and is required for nodule differentiation and accommodation of rhizobial infection. The Plant Journal, 78: 811-821. http://dx.doi.org/10.1111/tpj.12520 

11. Hou, H., Zhang, Z., Zhao, W. 2012. Generating DNA sequences encoding tandem peptide repeats suitable for expression and immunological application. World Journal of Microbiology and Biotechnology, 28: 2175-2180. http://dx.doi.org/ 10.1007/s11274-012-1023-4 

12. Garrett, J., Meents, M., Blackshaw, M., Blackshaw, L., Hou, H., Styranko, D., Kohalmi, S., Schultz, E. 2012. A novel, semi-dominant allele of MONOPTEROS provides insight into leaf initiation and vein pattern formation. Planta, 236: 297-312. http://dx.doi.org/10.1007/s00425-012-1607-0 

13. Hou, H., Erickson, J., Meservy, J., Schultz, E. 2010. FORKED1 encodes a PH domain protein that is required for PIN1 canalization in developing leaf veins. The Plant Journal, 63: 960–973. http://dx.doi.org/10.1111/j.1365-313X.2010.04291.x 

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