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<title>Guohuan Su</title>
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<h4>Guohuan Su</h4>
<span>Professor</span>
<br>
<span>IHB, CAS</span>
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<li><a href="#section1">Personal Information</a></li>
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<br>
<b>Tel:</b> +86 13971575022
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<b>E-mail:</b> <a href="mailto:[email protected]">[email protected]</a>
<br>
<a href="mailto:[email protected]">[email protected]</a>
<br>
<b>Address:</b> No. 7 Donghu South Road, Wuchang District, Wuhan, Hubei Province
<br>
<b>Institute:</b><a href=http://english.ihb.cas.cn/ target="_blank"> Institute of Hydrobiology, Chinese Academy of Sciences</a>
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<h2>Experiences</h2>
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<b>04/2023—Present, Professor </b>(Institute of Hydrobiology, Chinese Academy of Sciences).
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<b>01/2021—01/2023, Postdocoral researcher </b>(CASUS - Center for Advanced Systems Understanding, Görlitz, Germany; HZDR – Helmholtz-Zentrum Dresden-Rossendorf).
</p>
<br>
<p align="left" style=font-size:18px>
<b>09/2016—12/2020, Ph.D. in aquatic ecology </b>(Laboratoire Evolution & Diversité Biologique (EDB), Université Paul Sabatier, Toulouse, France).
</p>
<br>
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<b>09/2013—07/2016, M.Sc. in Hydrobiology </b>(Institute of Hydrobiology, CAS, China)
</p>
<br>
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<b>09/2009—07/2013, Bachelor of Engineering in Bioengineering </b> (Kunming University of Science and Technology, Kunming, China).
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<h2>Research Interests</h2>
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<ul>
<li>
<p style=font-size:18px>
Fish biodiversity and river networks relationship
</p>
<p style=font-size:18px>
Functional ecology (using functional traits to analyze the functional diversity of species communities)
</p>
</li>
<li>
<p style=font-size:18px>
Impact of human disturbances (non-native species, dams, etc.) on fish communities and other biotas
</p>
</li>
<li>
<p style=font-size:18px>
Multi-faceted diversity (taxonomic, functional, phylogenetic) changes in different taxa communities
</p>
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<ol>
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<p align="left" style=font-size:18px>
<b>Su, G.</b>, Villéger, S. & Brosse, S. Morphological characteristics of introduced freshwater fishes throughout the world. International Biogeography Society Meeting Humboldt-250, Quito (Ecuador), August 2019.
</p>
</li>
<li>
<p align="left" style=font-size:18px>
<b>Su, G.</b>, Villéger, S. & Brosse, S. Morphological diversity of freshwater fishes differs between realms, but morphologically extreme species are widespread. Sfécologie 2018-the French Ecological and Evolution Society's International Conference, Rennes (France), October 2018.
</p>
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<section class="section publications" data-section="section5">
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<h2>Publications</h2>
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<ol reversed>
<li>
<p style=font-size:18px>
<b>Su, G.</b>, Mertel, A., Brosse, S., & Calabrese, J. M. (2023). Species invasiveness and community invasibility of North American freshwater fish fauna revealed via trait-based analysis. Nature communications, 14(1).
<a href=https://raw.githubusercontent.com/guohuansu/guohuansu.github.io/main/pdf/Su%202023%20Species-invasiveness%20and%20community.pdf download>PDF</a>; 
</p>
</li>
<li>
<p style=font-size:18px>
<b>Su, G.</b>, & Xu, J. (2023). Editorial: Multiple stressors and ecological response in marine fishery ecosystems. Frontiers in Marine Science, 9.
</p>
</li>
<li>
<p style=font-size:18px>
Xu, C., <b>Su, G.</b>, Zhao, K., Wang, H., Xu, X., Li, Z., . . . Xu, J. (2023). Assessment of greenhouse gases emissions and intensity from Chinese marine aquaculture in the past three decades. Journal of Environmental Management, 329.
</p>
</li>
<li>
<p style=font-size:18px>
Zhao, T.,<b> Su, G.</b>, Jiang, J., Li, N., Zhao, C., Sun, Z., & Khatiwada, J. R. (2023). Functional diversity patterns reveal different elevations shaping Himalayan amphibian assemblages, highlighting the importance of morphologically extreme individuals. Ecological indicators, 150, 110260.
</p>
</li>
<li>
<p style=font-size:18px>
Zhao, K., He, Y.,<b>Su, G.</b>, Xu, C., Xu, X., Zhang, M., & Zhang, P. (2022). Implications for functional diversity conservation of China’s marine fisheries. Frontiers in Marine Science, 9.
</p>
</li>
<li>
<p style=font-size:18px>
Xu, C.,<b>Su, G.</b>, Zhao, K., Xu, X., Li, Z., Hu, Q., . . . Xu, J. (2022). Current status of greenhouse gas emissions from aquaculture in China. Water Biology and Security, 100041.
</p>
</li>
<li>
<p style=font-size:18px>
Dias, M. S., Oikonomou, A., &<b>Su, G.</b> (2022). Biogeographic Regionalization: Freshwater. In Life Sciences: Elsevier.
</p>
</li>
<li>
<p style=font-size:18px>
<b>Su, G.</b>, Tedesco, P., Toussaint, A., Villéger, S., Brosse, S. (2022) Contemporary environment and historical legacy explain functional diversity of freshwater fishes in the world rivers. Global Ecology and Biogeography.
<a href=https://raw.githubusercontent.com/guohuansu/guohuansu.github.io/main/pdf/Contemporary%20environment%20and%20historical%20legacy%20explain%20functional%20diversity%20of%20freshwater%20fishes%20in%20the%20world%20rivers.pdf download>PDF</a>; 
</p>
</li>
<li>
<p style=font-size:18px>
Brosse, S., Charpin, N., <b>Su, G.</b>, Toussaint, A., Herrera-R, G., Tedesco, P., Villéger, S. (2021) FISHMORPH: a global database on morphological traits of freshwater fishes. Global Ecology and Biogeography.
<a href=https://raw.githubusercontent.com/guohuansu/guohuansu.github.io/main/pdf/Brosse%20et%20al%202021%20FISHMORPH%20A%20global%20database%20on%20morphological%20traits%20of%20freshwater%20fishes.pdf download>PDF</a>; 
</p>
</li>
<li>
<p style=font-size:18px>
<b>Su, G.</b>, Logez, M., Xu J., Tao, S. Villéger, S. & Brosse, S. Human impacts on global freshwater fish biodiversity. Science, 2021, 371, 835–838.
<a href=https://raw.githubusercontent.com/guohuansu/guohuansu.github.io/main/pdf/2021_Su%20et%20al_Human%20impacts%20on%20global%20freshwater%20fish%20biodiversity_Science.pdf download>PDF</a>; 
<a href=http://science.sciencemag.org/cgi/content/full/371/6531/835?ijkey=wwR4RVFb3gOXk&keytype=ref&siteid=sci target="_blank">Full text</a>; 
<a href=https://www.eurekalert.org/pub_releases/2021-02/aaft-mth021621.php target="_blank">News release (Science)</a>; 
<a href=https://www.cnrs.fr/en/node/5563 target="_blank">Press release (CNRS)</a>; 
<a href=https://www.bbc.com/news/newsbeat-56101167 target="_blank">BBC News</a>; 
<a href=https://www.bloomberg.com/news/articles/2021-02-18/human-caused-climate-change-threatens-a-quarter-of-freshwater-fish target="_blank">Bloomberg</a>; 
<a href=https://www.theguardian.com/environment/2021/feb/18/very-few-of-worlds-rivers-undamaged-by-humanity-study-finds target="_blank">The Guardian</a>; 
<a href=https://www.newscientist.com/article/2268348-humans-have-severely-affected-fish-biodiversity-in-half-of-all-rivers/ target="_blank">New Scientist</a>; 
<a href=https://www.independent.co.uk/independentpremium/rivers-human-impact-world-b1804263.html target="_blank">The Independent</a>
</p>
</li>
<li>
<p style=font-size:18px>
<b>Su, G.</b>, Villéger, S. & Brosse, S. (2020) Morphological sorting of introduced freshwater fish species within and between donor realms. Global Ecology and Biogeography, 29, 803-813.
<a href=https://raw.githubusercontent.com/guohuansu/guohuansu.github.io/main/pdf/Su%2C%20Vill%C3%A9ger%2C%20Brosse%20-%202020%20-%20Morphological%20sorting%20of%20introduced%20freshwater%20fish%20species%20within%20and%20between%20donor%20realms.pdf download>PDF</a>; 
<a href=https://inee.cnrs.fr/fr/cnrsinfo/les-humains-ne-choisissent-pas-au-hasard-les-poissons-quils-introduisent-dans-de-nouveaux target="_blank">Press release</a>
</p>
</li>
<li>
<p style=font-size:18px>
<b>Su, G.</b>, Villéger, S. & Brosse, S. (2019) Morphological diversity of freshwater fishes differs between realms, but morphologically extreme species are widespread. Global Ecology and Biogeography, 28, 211-221.
<a href=https://raw.githubusercontent.com/guohuansu/guohuansu.github.io/main/pdf/Su%2C%20Vill%C3%A9ger%2C%20Brosse%20-%202019%20-%20Morphological%20diversity%20of%20freshwater%20fishes%20differs%20between%20realms%2C%20but%20morphologically%20extreme%20species%20a.pdf download>PDF</a>; 
<a href=http://www.cnrs.fr/fr/la-forte-diversite-morphologique-des-poissons-deau-douce-enfin-revelee target="_blank">Press release</a>
</p>
</li>
<li>
<p style=font-size:18px>
Xu, J., García Molinos, J., <b>Su, G.</b>, Matsuzaki, S. I. S., Akasaka, M., Zhang, H., & Heino, J. (2019). Cross‐taxon congruence of multiple diversity facets of freshwater assemblages is determined by large‐scale processes across China. Freshwater Biology, 64(8), 1492-1503.
<a href=https://raw.githubusercontent.com/guohuansu/guohuansu.github.io/main/pdf/xu%20-%202019%20-%20Cross-taxon%20congruence%20of%20multiple%20diversity%20facets%20of%20freshwater%20assemblages%20is%20determined%20by%20large-scale%20processes%20across%20China.pdf download>PDF</a>
</p>
</li>
<li>
<p style=font-size:18px>
Zhang, M., García Molinos, J., <b>Su, G.</b>, Zhang, H., & Xu, J. (2019). Spatially structured environmental variation plays a prominent role on the biodiversity of freshwater macrophytes across China. Frontiers in plant science, 10, 161.
<a href=https://raw.githubusercontent.com/guohuansu/guohuansu.github.io/main/pdf/Zhang%20et%20al.%20-%202019%20-%20Spatially%20Structured%20Environmental%20Variation%20Plays%20a%20Prominent%20Role%20on%20the%20Biodiversity%20of%20Freshwater%20Macrophytes.pdf download>PDF</a>
</p>
</li>
<li>
<p style=font-size:18px>
<b>Su, G.</b>, Xu, J., Akasaka, M., Molinos, J. G., & Shin-ichiro, S. M. (2015). Human impacts on functional and taxonomic homogenization of plateau fish assemblages in Yunnan, China. Global Ecology and Conservation, 4, 470-478.
<a href=https://raw.githubusercontent.com/guohuansu/guohuansu.github.io/main/pdf/Su%20et%20al.%20-%202015%20-%20Human%20impacts%20on%20functional%20and%20taxonomic%20homogenization%20of%20plateau%20fish%20assemblages%20in%20Yunnan%2C%20China.pdf download>PDF</a>
</p>
</li>
<li>
<p style=font-size:18px>
Xu, J., <b>Su, G.</b>, Xiong, Y., Akasaka, M., Molinos, J. G., Shin-ichiro, S. M., & Zhang, M. (2015). Complimentary analysis of metacommunity nestedness and diversity partitioning highlights the need for a holistic conservation strategy for highland lake fish assemblages. Global Ecology and Conservation, 3, 288-296.
<a href=https://raw.githubusercontent.com/guohuansu/guohuansu.github.io/main/pdf/Xu%20et%20al.%20-%202015%20-%20Complimentary%20analysis%20of%20metacommunity%20nestedness%20and%20diversity%20partitioning%20highlights%20the%20need%20for%20a%20holistic%20cons.pdf download>PDF</a>
</p>
</li>
<li>
<p style=font-size:18px>
Sha, Y., <b>Su, G.</b>, Zhang, P., Zhang, H., & Xu, J. (2015). Diverse dietary strategy of lake anchovy Coilia ectenes taihuensis in lakes with different trophic status. Journal of ichthyology, 55(6), 866-873.
<a href=https://raw.githubusercontent.com/guohuansu/guohuansu.github.io/main/pdf/sha%20-%202015%20-%20Diverse%20dietary%20strategy%20of%20lake%20anchovy%20Coilia%20ectenes%20taihuensis%20in%20lakes%20with%20different%20trophic%20status.pdf download>PDF</a>
</p>
</li>
<li>
<p style=font-size:18px>
<b>Su, G.</b>, Sha, Y. C., Xiong, Y., Zhang, P. Y., & Xu, J. (2015). Changes of functional diversity in fish community before and after a dam closure in the Guanyinyan Hydropower Station. Resources and Environment in the Yangtze Basin, 24(6), 965-970.
</p>
</li>
<li>
<p style=font-size:18px>
Sha, Y., Zhang, P., Zhang, H., <b>Su, G.</b>, & Xu, J. (2015) Impacts of habitat environment on trophic niches of a local population: a case study of yellow catfish." Acta Ecologica Sinica 35(5), 1-12.
</p>
</li>
<li>
<p style=font-size:18px>
Xiong, Y., Zhang, M., Zhang, H., <b>Su, G.</b>, Sha, Y., & Xu, J. (2015). Preliminary research on relationship between fish functional morphology and trophic position. Journal of Lake Sciences, 27(3), 466-474.
</p>
</li>
</ol>
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