当前位置: X-MOL首页全球导师 国内导师 › 王瑜晖

个人简介

毕业院校 美国威斯康星麦迪逊分校 学科专业 植物遗传育种 任课名称 智慧园艺概论 学习和工作简历 2005-2009 中国农业大学 种子科学与工程 学士 2009-2012 中国农业大学 种子科学 硕士 2012-2017 美国威斯康星麦迪逊分校 植物遗传育种 博士 2017-2020 美国威斯康星麦迪逊分校 园艺系 助理科学家 2020.9-至今 南京农业大学园艺学院 蔬菜学科 副教授

研究领域

主要针对葫芦科作物的抗病性及重要园艺性状,开展数量遗传学、群体遗传学、基因组学、生物信息学、表型组学等方向的研究。

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1. Wang YH, Jiang B, Dymerski R, et al (2021) Quantitative trait loci for horticulturally important traits defining the Sikkim cucumber, Cucumis sativus var. sikkimensis. Theor Appl Genet 134:229–247. 2. Wang YH, Bo K, Gu X, Pan P, Li Y, ChenJ , Wen C, Ren ZH, Ren HZ, Chen X, Grumet R, Weng Y(2020). Molecularly Tagged Genes and Quantitative Trait Loci in Cucumber - And recommendation of controlled vocabulary for QTL mapping. Horticulture Research 7 (3) 3. Wang YH, Tan J, Wu Z, Wen C, VandenLangenberg K, Wehner TC, Thornton A, Zheng X, Owens K, Hoeft E, Kraan PAG, Suelmann J, Pan J, Weng Y (2019) STAYGREEN, STAY HEALTHY: a loss-of-susceptibility mutation in the STAYGREEN gene provides durable, broad-spectrum disease resistances for over 50 years of US cucumber production. New Phytologist 221:415–430. 4. Wang YH, VandenLangenberg K, Wen CL, Wehner TC, Weng Y (2018) QTL mapping of downy and powdery mildew resistances in PI 197088 cucumber with genotyping-by- sequencing in RIL population. Theoretical and Applied Genetics (131): 597. 5. Wang YH, VandenLangenberg K, Wehner TC, Kraan PAG, Suelmann J, Zheng XY, Owens K, Weng Y (2016) QTL mapping for downy mildew resistance in cucumber inbred line WI7120 (PI 330628). Theoretical and Applied Genetics (129): 1493. 6. Wang YH, VandenLangenberg K, Wehner TC, Weng Y. 2014. QTLs for Downy mildew resistance and their association with LRR-RLK resistance gene analogs in cucumber. Proc Cucurbitaceae 2014, pp 17-20. 7. Pan, Y., Wang, Y., McGregor, C., Liu, S., Luan, F., Gao, M. and Weng, Y. (2020) Genetic architecture of fruit size and shape variation in cucurbits: a comparative perspective. Theor. Appl. Genet., 133, 1–21. Available at: https://doi.org/10.1007/s00122-019-03481-3. 8. Li, Z., Han, Y., Niu, H., Wang, Y., Jiang, B. and Weng, Y. (2020) Gynoecy instability in cucumber (Cucumis sativus L.) is due to unequal crossover at the copy number variation-dependent Femaleness (F) locus. Hortic. Res., 7. Available at: http://dx.doi.org/10.1038/s41438-020-0251-2. 9. Pan, Y., Wen, C., Han, Y., Wang, Y., Li, Y., Li, S., Cheng, X. and Weng, Y. (2020) QTL for horticulturally important traits associated with pleiotropic andromonoecy and carpel number loci, and a paracentric inversion in cucumber. Theor. Appl. Genet., 133, 2271–2290. Available at: https://doi.org/10.1007/s00122-020-03596-y. 10. Wen, C., Zhao, W., Liu, W., Yang, L., Wang, Y., et al. (2019) CsTFL1 inhibits determinate growth and terminal flower formation through interaction with CsNOT2a in cucumber. Development, 146. 11. Rett-Cadman, S., Colle, M., Mansfeld, B., Barry, C.S., Wang, Y., Weng, Y., Gao, L., Fei, Z. and Grumet, R. (2019) QTL and Transcriptomic Analyses Implicate Cuticle Transcription Factor SHINE as a Source of Natural Variation for Epidermal Traits in Cucumber Fruit. Front. Plant Sci., 10, 1–16. 12. Yagcioglu, M., Jiang, B., Wang, P., Wang, Y., Ellialtioglu, S.S. and Weng, Y. (2019) QTL mapping of low temperature germination ability in cucumber. Euphytica, 215, 84. Available at: http://link.springer.com/10.1007/s10681-019- 2408-3. 13. Pan, J., Tan, J., Wang, Y., Zheng, X., Owens, K., Li, D., Li, Y. and Weng, Y. (2018) STAYGREEN (CsSGR) is a candidate for the anthracnose (Colletotrichum orbiculare) resistance locus cla in Gy14 Cucumber. Theor. Appl. Genet. 14. Bo, K., Wang, H., Pan, Y., Behera, T., Pandey, S., Wen, C., Wang, Y., et al. (2016) SHORT HYPOCOTYL1 encodes a SMARCA3-Like chromatin remodeling factor regulating elongation. Plant Physiol., 172, 1273–1292. Available at: http://www.plantphysiol.org/lookup/doi/10.1104/pp.16.00501. 15. Weng, Y., Colle, M., Wang, Y., Yang, L., Rubinstein, M., Sherman, A., Ophir, R. and Grumet, R. (2015) QTL mapping in multiple populations and development stages reveals dynamic quantitative trait loci for fruit size in cucumbers of different market classes. Theor. Appl. Genet., 128, 1747–1763.

推荐链接