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张奠湘

性别:

职称:研究员

邮箱:zhangdianxiang@xtbg.ac.cn

研究方向:

利用自己作为一个分类学工作者的优势,在类群分类与系统发育的基础上开展进化生态学与繁殖生态学的研究。主要研究内容包括二型花柱进化、维持与破损的生态与分子机制的研究(报春花科、茜草科、木樨科等);真菌异养植物与菌根真菌互动进化的生态机制(水玉簪科)。

学习经历

1981.09-1985.07,湖南师范大学生物系生物专业,理学学士学位

1985.09-1988.07,中国科学院华南植物研究所植物专业,理学硕士学位

1995.07-1999.03,香港大学生态与分类学系,哲学博士学位

工作经历

1988.08-1990.11,研究实习员

1990.12-1995.11,中国科学院华南植物研究所,助理研究员

1992.02-1993.03,丹麦奥尔胡斯大学系统植物学研究所,访问学者(丹麦资助)

1995.12-1999.11,中国科学院华南植物研究所,副研究员

1999.12-至今,中国科学院华南植物研究所,研究员

2000.11-2001.02,美国密苏里植物园、哈佛大学 访问学者

2002,中国科学院华南植物研究所,博士生导师

2002,中国科学院华南植物研究所,创新工程系统发育研究组首席研究员

2003,中国科学院华南植物园,系统演化中心主任(2012年卸任),标本馆馆长(2021年卸任)

2005, 享受国务院特殊津贴

2005,迁地保护与繁殖生物学重点实验室主任(2010年卸任)

2005.09-2005.12,荷兰国家标本馆访问学者

2006, 获聘任为国家自然科学基金委员会第11届生命科学部专家评审组专家

2006,中国科学院华南植物园:植物系统与进化生物学学科领域首席研究员

2007,三级研究员

2008,二级研究员

2025.05-至今,中国科学院西双版纳热带植物园,特聘专家 

近五年代表论著

1. Qin,M.,C.J. Zhu,J.B. Yang,M. Vatanparast,R. Schley,Q. Lai,T.Y.Tu*,B.B. Klitgaard*,S.J. Li* & D. X. Zhang (2020) Comparative analysis of complete plastid genome reveals powerful barcode regions for identifying wood of Dalbergia odorifera and D. tonkinensis (Leguminosae).  J. Syst. Evol. DOI: 10.1111/jse.12598

2. Wang,X.P.,Wen,M.,Wu,M.,Xu Y.Q.,Zhang K. & D.X. Zhang*.(2020) Gynodioecy or leaky dioecy?The unusual sexual system of a coral dune-habitant Tournefortia argentea (Boraginaceae). Plant Syst Evol 306,70. https://doi.org/10.1007/s00606-020-01698-0

3. Wang,X.P.,Zeng,T.,Wu,M.S.,& Zhang,D.X.* (2020) Seasonal dynamic variation of pollination network is associated with the number of species in flower in an oceanic island community. Journal of Plant Ecology,DOI: https://doi.org/10.1093/jpe/rtaa054

4. Wang,X.P.,Wen,M.H.,Qian,X.,Pei,N.C. & Zhang,D. X.* (2020) Plants are visited by more pollinator species than pollination syndromes predicted in an oceanic island community. Scientific Reports,10(1):13918.

5. Zhao,ZT,XJ Li,MF Liu,VSFT Merckx,RMK Saunders & D.X. Zhang* (2021) Specificity of assemblage,not fungal partner species,explains mycorrhizal partnerships of mycoheterotrophic Burmannia plants. The ISME Journal DOI: 10.1038/s41396-020-00874-x

6. Shi,C.,H.H. Cai,R.X. Jiang,S. Wang*…….,D.X. Zhang*,……,& R.A. Spicer* 2021. Balance scientific and ethical concerns to achieve a nuanced perspective on ‘blood amber’. Nature Ecol. Evol. 5,705–706 (2021). https://doi.org/10.1038/s41559-021-01479-z

7. Xu,Y.-Q.,Luo,Z.-L.*,Wang,J.,Pei,N.-C. & Zhang,D.-X. (2021),Secondary pollen presentation: More than to increase pollen transfer precision. J. Syst. Evol. https://doi.org/10.1111/jse.12729

8. Zeng,T.,M. M. Shi*,Z. M. Zhong & Zhang,D. X. (2022),Development of microsatellite markers for the mycoheterotrophic species Burmannia nepalensis (Miers) Hook.f. based on RAD sequencing. Genes & Genetic Systems 96,p. 1–6. https://doi.org/10.1266/ggs.21-00052

9. Gui Zeng,Spencer Barrett,Shuai Yuan*,and Dianxiang Zhang. (2022)The evolutionary breakdown of distyly to homostyly is accompanied by reductions of floral scent in Primula oreodoxa[J]. J Syst Evol. https: //doi.org/10.1111/jse.12834

10. Tang,S.,Liu,J.,Gilliam,F.S.,Hietz,P.*,Wang,Z.,Lu,X.,Zeng,F.,Wen,D.,Hou,E.,Lai,Y.,Fang,Y.,Tu,Y.,Xi,D.,Huang,Z.,Zhang,D.*,Wang,R. and Kuang,Y.* (2022),Drivers of foliar 15N trends in southern China over the last century. Global Change Biol. https://doi.org/10.1111/gcb.16285

11. Zhao,Z.,Zhang,Y.,Shi,M.,Liu,Z.,Xu,Y.,Luo,Z.,Yuan,S.,Tieyao,T.,Sun,Z.,Zhang,D.* and Barrett,S.C.H. (2023),Genomic evidence supports genetic convergence of a supergene controlling the distylous floral syndrome. New Phytol. 237(2):601-614. https://doi.org/10.1111/nph.18540

12. Yuan,S.,G. Zeng,K. Zhang,M.S. Wu,D. X. Zhang*,L. D. Harder & S. C. H. Barrett* (2023) Diverse mating consequences of the evolutionary breakdown of the sexual polymorphism heterostyly. PNAS 120 (2):e2214492120. Doi: 10.1073/pnas.2214492120

13. Park,D.S.,X. Feng,S. Akiyama,……D.X. Zhang,F. O. Zuloaga & C. C. Davis. 2023. The colonial legacy of herbaria. Nature Human Behaviour. 7: 1059–1068. https://doi.org/10.1038/s41562-023-01616-7

14. Li,S.,Tu,T.*,Li,S.,Yang,X.,Zheng,Y.,Guo,L.-D.,Zhang,D.*,Jiang,L.* 2023. Different mechanisms underlie similar species-area relationships in two tropical archipelagoes. Plant Diversity https://doi.org/10.1016/j.pld.2023.08.006

15. Chen,M.,Yang,J.,Xue,C. *,Tu,T.Y.,Su,Z.Y.,Feng,H.H.,Shi,M.M.,Zeng,G., Zhang,D.X. * & Qian X. * 2024. Community composition of phytopathogenic fungi significantly influences ectomycorrhizal fungal communities during subtropical forest succession. Appl. Microbiol. Biotechnol. 108,99 (2024). https://doi.org/10.1007/s00253-023-12992-5

16. Gu,S.-R.,Zeng,Q.-B.,Clark,R.,Jiang,K.-W.,Pérez-Escobar,O.A.,Li,S.-J.,Tan,W.-N.,Xie,Z.,Mattapha,S.,Shi,M.-M.,Wang,X.-P.,Zhao,Z.-T.,Antonelli,A.,Tu,T.-Y.,Wen,J. and Zhang,D.-X. (2024),Phylogeny and re-circumscription of Cheniella (Leguminosae: Cercidoideae) based on plastome data and morphology,with description of three new species. TAXON. https://doi.org/10.1002/tax.13177.

17. 涂铁要 张奠湘 任海 (主编) 2023. 中国热带海岛植被. 重庆大学出版社。

18. 涂铁要 张奠湘 任海 (主编) 2024. 中国西沙群岛野生植物资源. 重庆大学出版社。