Show/Hide Menu
Hide/Show Apps
Logout
Türkçe
Türkçe
Search
Search
Login
Login
OpenMETU
OpenMETU
About
About
Open Science Policy
Open Science Policy
Open Access Guideline
Open Access Guideline
Postgraduate Thesis Guideline
Postgraduate Thesis Guideline
Communities & Collections
Communities & Collections
Help
Help
Frequently Asked Questions
Frequently Asked Questions
Guides
Guides
Thesis submission
Thesis submission
MS without thesis term project submission
MS without thesis term project submission
Publication submission with DOI
Publication submission with DOI
Publication submission
Publication submission
Supporting Information
Supporting Information
General Information
General Information
Copyright, Embargo and License
Copyright, Embargo and License
Contact us
Contact us
Nitrogen sources and concentrations shape algal odor compounds: Key drivers of <i>β</i>-cyclocitral and <i>β</i>-ionone in water bodies of the lower Yangtze River
Date
2026-10-01
Author
Yin, Sicheng
Hu, Youyin
Xing, Yawei
Wang, Xianyun
Jeppesen, Erik
Wang, Liqing
Zhang, Wei
Metadata
Show full item record
This work is licensed under a
Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License
.
Item Usage Stats
45
views
0
downloads
Cite This
Taste and odor (T&O) compounds derived from cyanobacterial blooms pose escalating threats to freshwater security worldwide, yet the drivers of specific T&O metabolites remain poorly constrained. Here, we investigated the dual effects of nitrogen (N) sources and concentrations on the production of p-cyclocitral and p-ionone, two algal-derived T&O compounds, through integrated field surveys (54 sites across lakes and rivers) in the eutrophic lower Yangtze River, China, and laboratory cultivation of typical cyanobacteria (Microcystis aeruginosa and Pseudanabaena cinerea). Our field data revealed that the concentrations of p-cyclocitral and p-ionone in lakes and rivers were not significantly different, but increased with the trophic level index. Redundancy analysis and Mantel analysis showed that Microcystis and Pseudanabaena were potentially dominant contributors to pcyclocitral and p-ionone in the water column. Structural equation modeling and variation partitioning analysis showed that enhanced nitrate (NO3--N) significantly promoted the production of these compounds. Laboratory experiments demonstrated that inorganic N (NaNO3) maximized total T&O yields by promoting algal biomass, whereas organic N (urea and glutamic acid) elevated the T&O production per unit biomass by 1.5-to 9.5-fold. Notably, Pseudanabaena exhibited a 2.3-fold higher p-ionone yield than Microcystis, with greater sensitivity to N concentrations. Our study highlights the critical role of nitrogen pollution, both source and concentration, in the production of T&O compounds by phytoplankton and provides reference data for managing T&O issues in rivers and shallow lakes.
URI
https://hdl.handle.net/11511/120324
Journal
JOURNAL OF ENVIRONMENTAL SCIENCES
DOI
https://doi.org/10.1016/j.jes.2026.02.047
Collections
Department of Biology, Article
Citation Formats
IEEE
ACM
APA
CHICAGO
MLA
BibTeX
S. Yin et al., “Nitrogen sources and concentrations shape algal odor compounds: Key drivers of <i>β</i>-cyclocitral and <i>β</i>-ionone in water bodies of the lower Yangtze River,”
JOURNAL OF ENVIRONMENTAL SCIENCES
, vol. 168, pp. 456–465, 2026, Accessed: 00, 2026. [Online]. Available: https://hdl.handle.net/11511/120324.