王宝生

岗  位: 研究员
邮政编码: 510650
学  历: 博士
邮箱地址: baosheng.wang@scbg.ac.cn
通讯地址: 广州市天河区兴科路723号
简历:

2017至今,中国科学院华南植物园,研究员

2015 – 2017年,美国杜克大学,博士后

2013 – 2014年,瑞典于默奥大学, 博士后

2009 – 2013年,瑞典于默奥大学,博士学位

2004 – 2009年,中国科学院植物研究所,博士学位

2000 – 2004年,扬州大学, 园艺系,学士学位

 

研究领域:

1.利用全基因组测序,在群体水平研究基因组的变异模式,探讨导致遗传分化的中性与选择性因素,以及适应性的基因组基础。

2.利用全基因组关联分析,寻找控制重要适应性性状的功能位点;结合温室和野外移栽实验,研究自然选择发生的过程和作用机制。

3.结合遗传和生态数据研究种间杂交的遗传后果和适应性意义。

承担科研项目情况:

1.广东省杰出青年科学基金,亚热带常绿阔叶林生物多样性形成与维持机制,2018-2022 (主持)

2.国家自然科学基金面上项目,栎属近缘种基因组分化和物种形成机制的研究,2020-2023(主持)

3.广东省基础与应用基础研究旗舰项目,广东植物多样性全域调查与评估,2023-2027(课题负责人)

4.国家自然科学基金国际(地区)合作与交流项目,Dimensions合作研究项目:中美栎树异交群遗传多样性对其功能性状、适应性及共生微生物多样性的影响,2021-2026(参与)

代表论著:

1 Yuan Shuai, Shi Yong, Zhou Biao-Feng, Liang Yi-Ye, Chen Xue-Yan, An Qing-Qing, Fan Yan-Ru, Shen Zhao, Ingvarsson Paer K, Wang Baosheng*. Genomic vulnerability to climate change in Quercus acutissima, a dominant tree species in East Asian deciduous forests. Molecular Ecology, 2023, 32, 1639-1655.

2 Guo Jing-Fang#, Wang Baosheng#, Liu Zhan-Lin#, Mao Jian-Feng, Wang Xiao-Ru, Zhao Wei*. Low genetic diversity and population connectivity fuel vulnerability to climate change for the Tertiary relict pine Pinus bungeana. Journal of Systematics and Evolution, 2023, 61, 143-156.

3 Zhou Biao-Feng#, Yuan Shuai#, Crowl Andrew A#, Liang Yi-Ye, Shi Yong, Chen Xue-Yan, An Qing-Qing, Kang Ming, Manos Paul S*, Wang Baosheng*. Phylogenomic analyses highlight innovation and introgression in the continental radiations of Fagaceae across the Northern Hemisphere. Nature Communications, 2022, 13, 1320. (Featured Article, ESI Highly Cited Paper, ESI Hot Paper)

4 Liang Yi-Ye, Shi Yong, Yuan Shuai, Zhou Biao-Feng, Chen Xue-Yan, An Qing-Qing, Ingvarsson Paer K, Plomion Christophe, Wang Baosheng*. Linked selection shapes the landscape of genomic variation in three oak species. New Phytologist, 2022, 233, 555-568.

5 Zhou Biao-Feng, Shi Yong, Chen Xue-Yan, Yuan Shuai, Liang Yi-Ye, Wang Baosheng*. Linked selection, ancient polymorphism, and ecological adaptation shape the genomic landscape of divergence in Quercus dentata. Journal of Systematics and Evolution, 2022, 60, 1344-1357.

6 Liang Yi-Ye#, Chen Xue-Yan#, Zhou Biao-Feng, Mitchell-Olds Thomas, Wang Baosheng*. Globally relaxed selection and local adaptation in Boechera stricta. Genome Biology and Evolution, 2022, 14, evac043.

7 Yan Wenjie, Wang Baosheng*, Chan Emily, Mitchell-Olds Thomas*. Genetic architecture and adaptation of flowering time among environments. New Phytologist, 2021, 230, 1214-1227.

8 Xia Hanhan, Zhao Wei, Shi Yong, Wang Xiao-Ru, Wang Baosheng*. Microhomologies are associated with tandem duplications and structural variation in plant mitochondrial genomes. Genome Biology and Evolution, 2020, 12, 1965-1974.

9 Wang Baosheng*, Mojica Julius P, Perera Nadeesha, Lee Cheng-Ruei, Lovell John T, Sharma Aditi, Adam Catherine, Lipzen Anna, Barry Kerrie, Rokhsar Daniel S, Schmutz Jeremy, Thomas Mitchell-Olds*. Ancient polymorphisms contribute to genome-wide variation by long-term balancing selection and divergent sorting in Boechera stricta. Genome biology, 2019, 20, 1-15.

10Xia Hanhan#, Wang Baosheng#, Zhao Wei, Pan Jin, Mao Jian-Feng*, Wang Xiao-Ru*. Combining mitochondrial and nuclear genome analyses to dissect the effects of colonization, environment, and geography on population structure in Pinus tabuliformis. Evolutionary Applications, 2018, 11, 1931-1945.

11      Wang B, Mitchell-olds T. Balancing selection and trans-specific polymorphisms. Genome Biology, 2017, 18, 231.

12Lee CR#, Wang B#, et al. Young inversion with multiple linked QTLs under selection in a hybrid zone. 2017, Nature Ecology & Evolution, 1, 0119.

13Wang B*, Climent J, Wang XR. Horizontal gene transfer from a flowering plant to the insular pine Pinus canariensis (Chr. Sm. Ex DC in Buch). Heredity, 2015, 114, 413-418. ( Corresponding author)

14Pan J#, Wang B# Pei ZY, Zhao Wei, Gao J, Mao JF, Zeng QY, Wang XR. Optimization of the genotyping-by-sequencing strategies for population genomic analysis in conifers. Molecular Ecology Resources, 2015, 15, 711-722.

15Wang B*, Wang XR. Mitochondrial DNA capture and divergence in Pinus provide new insights into the evolution of the genus. Molecular Phylogenetics and Evolution, 2014, 80, 20-30.

16Wang B, Khalili Mahani M, Ng WL, Kusumi J, Phi HH, Inomata N, Wang XR, Szmidt A. Extremely low nucleotide polymorphism in Pinus krempfii Lecomte, a unique flat needle pine endemic to Vietnam. Ecology and Evolution, 2014, 4, 2228-2238.

17Wang B, Mao JF, Zhao W, Wang XR. Impact of geography and climate on the genetic differentiation of the subtropical pine Pinus yunnanensis. PLoS One, 2013, 8, e67345.

18Gao J#, Wang B#, Mao JF, Ingvarsson P, Zeng QY, Wang XR. Demography and speciation history of the homoploid hybrid pine Pinus densata on the Tibetan Plateau. Molecular Ecology, 2012, 21, 4811–4827. (*Co-first Author)

19Wang B, Mao JF, Gao J, Zhao W, Wang XR. Colonization of the Tibetan Plateau by the homoploid hybrid pine Pinus densata. Molecular Ecology, 2011, 20, 3796-3811. (Cover story, highlight of the issue)

20Wang B, Ding Z, Liu W, Pan J, Li C, Ge S, Zhang D. Polyploid evolution in Oryza officinalis complex of the genus Oryza. BMC Evolutionary Biology, 2009, 9, 250.