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王宝生
baosheng.wang@scbg.ac.cn
中文, 英语
广东
中国科学院大学
Life Sciences
  • 2009-09--2013-10 博士: 瑞典Umeå大学
  • 2004-09--2009-07 博士: 中科院北京植物研究所
  • 2000-09--2004-07 学士: 扬州大学
  • 2018-03~现在 - 中国科学院华南植物园 - 研究员
  • 2017-10~2018-03 - 美国杜克大学 - 博士后
  • 2015-01~2017-09 - 瑞典乌普萨拉大学 / 美国杜克大学 - 博士后
  • 2013-11~2014-12 - 瑞典Umeå大学 - 博士后
  • 2009-09~2013-10 - 瑞典Umeå大学 - 博士
  • 2004-09~2009-07 - 中科院北京植物研究所 - 博士
  • 2000-09~2004-07 - 扬州大学 - 学士
群体遗传学
进化生物学
基因组学
  • Genomic vulnerability to climate change in Quercus acutissima, a dominant tree species in East Asian deciduous forests, Molecular Ecology, 2023
  • Chromosome-scale genome assembly of sweet tea (Lithocarpus polystachyus Rehder), Scientific Data, 2023
  • Phylogenomic analyses highlight innovation and introgression in the continental radiations of Fagaceae across the Northern Hemisphere, NATURE COMMUNICATIONS, 2022
  • Linked selection shapes the landscape of genomic variation in three oak species, NEW PHYTOLOGIST, 2022
  • Genetic architecture and adaptation of flowering time among environments, NEW PHYTOLOGIST, 2021
  • Linked selection, ancient polymorphism, and ecological adaptation shape the genomic landscape of divergence in Quercus dentata, Journal of Systematics and Evolution, 2021
  • Microhomologies Are Associated with Tandem Duplications and Structural Variation in Plant Mitochondrial Genomes, GENOME BIOLOGY AND EVOLUTION, 2020
  • Complete chloroplast genome sequence of the Mongolian oak, Quercus mongolica (Fagaceae), MITOCHONDRIAL DNA PART B-RESOURCES, 2019
  • Ancient polymorphisms contribute to genome-wide variation by long-term balancing selection and divergent sorting in Boechera stricta (vol 20, 126, 2019), GENOME BIOLOGY, 2019
  • Correction to: Ancient polymorphisms contribute to genome-wide variation by long-term balancing selection and divergent sorting in Boechera stricta, GENOME BIOLOGY, 2019
  • Ancient polymorphisms contribute to genome-wide variation by long-term balancing selection and divergent sorting in Boechera stricta, GENOME BIOLOGY, 2019
  • Combining mitochondrial and nuclear genome analyses to dissect the effects of colonization, environment, and geography on population structure in Pinus tabuliformis, EVOLUTIONARY APPLICATIONS, 2018
  • Young inversion with multiple linked QTLs under selection in a hybrid zone, NATURE ECOLOGY & EVOLUTION, 2017
  • Balancing selection and trans-specific polymorphisms, GENOME BIOLOGY, 2017
  • Horizontal gene transfer from a flowering plant to the insular pine Pinus canariensis (Chr. Sm. Ex DC in Buch), HEREDITY, 2015
  • Optimization of the genotyping-by-sequencing strategies for population genomic analysis in conifers, Molecular Ecology Resources, 2015
  • Weak crossability barrier but strong juvenile selection supports ecological speciation of the hybrid pine pinus densata on the tibetan plateau, EVOLUTION, 2014
  • Mitochondrial DNA capture and divergence in Pinus provide new insights into the evolution of the genus, MOLECULAR PHYLOGENETICS AND EVOLUTION, 2014
  • Extremely low nucleotide polymorphism in Pinus krempfii Lecomte, a unique flat needle pine endemic to Vietnam, ECOLOGY AND EVOLUTION, 2014
  • Impact of Geography and Climate on the Genetic Differentiation of the Subtropical Pine Pinus yunnanensis, PLOS ONE, 2013
  • Demography and speciation history of the homoploid hybrid pine Pinus densata on the Tibetan Plateau, MOLECULAR ECOLOGY, 2012
  • DEVELOPMENT AND CHARACTERIZATION OF 10 MICROSATELLITE LOCI IN PAEONIA LACTIFLORA (PAEONIACEAE), AMERICAN JOURNAL OF BOTANY, 2011
  • Genetic differentiation of Wolffia globosa in China, JOURNAL OF SYSTEMATICS AND EVOLUTION, 2011
  • Colonization of the Tibetan Plateau by the homoploid hybrid pine Pinus densata, MOLEC
遗传变异 自然选择 遗传漂变 基因流动 突变 适应 物种形成 系统发育 基因组测序 生物信息学

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