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王坤

领域:生物产业 学校:武汉大学职称:副研究员

1. 棉属基因组进化;2. 棉纤维发育的遗传与表观遗传学研究;...

具体了解该专家信息,请致电:027-87555799 邮箱 haizhi@uipplus.com

教育背景

2005-2009 武汉大学分子遗传学专业,博士
2003-2005 武汉大学分子遗传学专业,硕士
1999-2003 华中师大生物科学专业,学士

工作经历

2017-2018 比利时根特大学/VIB研究所,博士后
2016-2017 比利时根特大学/VIB研究所,访问学者
2014- 武汉大学生命科学学院,副研究员
2013-2014 中国科学院武汉植物园,副研究员
2011-2013 中国科学院武汉植物园,助理研究员
2009-2011 武汉大学化学分子学院,博士后

项目课题经历

国家科技部重大专项
国家自然科学基金面上项目
国家自然科学基金国际交流项目

论文、成果、著作等

1. Wang DH#, Fan WL#, Guo XL#, Wu K, Zhou SY, Chen ZG, Li DY, Wang K*, Zhu YX*, Zhou Y*(2019). MaGenDB: a functional genomic hub for Malvaceae plants. Nucleic Acids Research, DOI: 10.1093/nar/gkz953

2. Wang K#, Wang DH #, Zheng XM, Qing A, Guo BY, Chen YJ, Ye W, Zhou Y*, Zhu YX*(2019). Multi-strategic RNA-seq analysis reveals a high-resolution transcriptional landscape in cotton. Nature Communications, DOI:10.1038/s41467-019-12575-x.

3. Houbaert A, Zhang C, Tiwari M, Wang K, de Marcos Serrano A, Savatin DV, Urs MJ, Zhiponova MK, Gudesblat GE, Vanhoutte I, Eeckhout D, Boeren S, Karimi M, Betti C, Jacobs T, Fenoll C, Mena M, de Vries S, De Jaeger G, Russinova E*(2019). POLAR-Guided Signaling Complex Assembly and Localization Drive Asymmetric Cell Division. Nature, 563(7732):574-578. DOI:10.1038/s41586-018-0714-x.

4. Li T, Natran A, Chen YJ, Vercruysse J, Wang K, Gonzalez N, Dubois M and Inze D* (2019) A genetics screen highlights emerging roles for CPL3, RST1 and URT1 in RNA metabolism and silencing, Nature Plants, 5:539-550. DOI:10.1038/s41477-019-0419-7

5. Wang K, Wang X, Shi T, Yang PF* (2017) Low genetic diversity and functional constraint of miRNA genes participating pollen–pistil interaction in rice, Plant Molecular Biology, DOI:10.1007/s11103-017-0638-0

6. Gao F#, Wang K#, Liu Y Chen YP, Chen P, Shi ZY, Luo J, Jiang DQ, Fan FF, Zhu YG, Li SQ* (2015) Blocking miR396 Increases Rice Yield by Shaping Inflorescence Architecture, Nature Plants, DOI:10.1038/nplants.2015.196

7. Wang K, Huang G, Zhu YX* (2016) Transposable elements play an important role during cotton genome evolution and fiber cell development. Sci China Life Sci, DOI:10.1007/s11427-015-4928-y

8. Li M#, Wang K# Yang PF*. (2016) Exploration of rice pistil responses during early post-pollination through a combined proteomic and transcriptomic analysis, Journal of Proteomics, DOI:10.1016/j.jprot.2015.11.004

9. Wang K, Deng J, Damaris RN, Yang M, Xu LM, Yang PF* (2015) LOTUS-DB:an integrative and interactive database for Nelumbo nucifera study, DATABASE, DOI:10.1093/database/bav023

10. Wang K#, Zhao Y#, Li M#, Gao F, Yang MK, Yang PF* (2014) Analysis of phosphoproteome in rice pistil, Proteomics,14: 2319-2334. DOI:10.1002/pmic.201400004

11. Wang K, Gao F, Ji Y, Liu Y, Dan ZW, Yang PF, Zhu YG, Li SQ* (2013) ORFH79 Impairs Mitochondrial Function via Interaction with a Subunit of Electron Transport Chain Complex III in Honglian Cytoplasmic Male Sterile Rice, New Phytologist, 198(2):408-418. DOI:10.1111/nph.12180

12. Shi T, Wang K and Yang PF* (2017) The evolution of plant microRNAs: insights from a basal eudicot sacred lotus, Plant Journal, 89:442-457. DOI: 10.1111/tpj.13394

13. Han C, Wang K, Yang PF* (2014) Gel-based comparative phosphoproteomic analysis on rice embryo during germination, Plant and cell physiology, 55(8):1376-1394. DOI:10.1093/pcp/pcu060

14. Li M, Wang K, Wang X, Yang PF* (2014) Morphological and proteomic analysis reveal the role of pistil under pollination in Liriodendron chinense (Hemsl.) Sarg, PLoS ONE, 9(6):e99970. DOI:10.1371/journal.pone.0099970

15. Wang K, Peng XJ, Ji YX, Zhu YG, Yang PF, Li SQ* (2013) Gene, protein and network of male sterility in rice, Frontiers in Plant Science, 4:92. DOI:10.3389/fpls.2013.00092

16. Wang K, Li M, Gao F, Li SQ, Zhu YG, Yang PF* (2012) Identification of conserved and novel microRNAs from Liriodendron chinense floral tissues, PloS One, 7(9): e44696. DOI:10.1371/journal.pone.0044696

17. Hu J, Wang K, Huang WC, Liu G, Gao Y, Wang JM, Huang Q, Ji YX, Qin XJ, Wan L, Zhu RS, Li SQ, Yang DC, Zhu YG* (2012) The rice pentatricopeptide repeat protein RF5 restores fertility in Hong-Lian cytoplasmic male-sterile lines via a complex with the glycine-rich protein GRP162, Plant cell, 24(1):109-122. DOI:10.1105/tpc.111.093211

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