Water controls the divergent responses of terrestrial plant photosynthesis under nitrogen enrichment
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Quantifying leaf photosynthetic response to nitrogen (N) deposition under contrasting water conditions is important for reliably modeling terrestrial carbon and water cycles, a topic that has not been well understood.
Here, we analyzed 737 paired observations from 102 publications to assess the response of eleven leaf photosynthesis-related properties to N addition under different water conditions. Our research includes global experiments, with 19 conducted in the field and 83 in greenhouses. Treatments without water reduction were classified as 'no water change', while those with reduced water or precipitation causing physiological drought were categorized as 'drought'.
We found that, compared to the control group, N addition significantly increased leaf photosynthetic rate (Pn; 20.9%), leaf transpiration (E; 8.3%), and stomatal conductance (gs; 14.1%). However, the decrease in Pn (-11.6%), E (-24.7%), and gs (-23.9%) under the combination of N addition and drought indicated that N add..., We systematically searched the journal articles via Web of Science, Google Scholar, and China National Knowledge Infrastructure, using the following keywords: âdroughtâ or âwater stressâ or âwater deficitâ or âreduced precipitationâ or âreduced rainfallâ and ânitrogen additionâ or âN additionâ and âleaf photosynthesisâ or âplant photosynthesisâ. The preliminary screened articles were then refined based on the following criteria:
1) Studies that did not investigate both the individual and combined effects of drought and N addition on leaf photosynthesis were excluded.
2) Experiments that manipulated only water or N availability or warming and eCO2 simultaneously were not considered.
3) Control and experimental plots should be established in the same location or soil condition to ensure consistency in microclimate and soil nutrient conditions.
4) The studies we selected contained at least one of the following target variables: leaf photosynthetic rate (Pn), stomatal conductance (gs), wate..., , # Data from: Water controls the divergent responses of terrestrial plant photosynthesis under nitrogen enrichment
[https://doi.org/10.5061/dryad.p5hqbzkz0](https://doi.org/10.5061/dryad.p5hqbzkz0)
## Description of the data and file structure
The data of 7 leaf photosynthetic properties were extracted, including
1. leaf photosynthetic rate (**Pn**, µmol mâ2 sâ1),
2. leaf transpiration (**E**, µmol mâ2 sâ1),
3. stomatal conductance (**gs**, mol mâ2 sâ1),
4. optimal photochemical efficiency of PSII (**Fv/Fm**),
5. maximum rate of carboxylation by Rubisco (**Vcmax**, µmol mâ2 sâ1),
6. maximum electron transparent rate (**Jmax**, µmol mâ2 sâ1),
7. water use efficiency (**WUE**, calculated from gas exchange measurement of A and gs/E).
Additionally, **SPAD was not the only indicator of leaf chlorophyll, it also included data on actual leaf chlorophyll content**. Considering the majority of the observations were SPAD-based, we used SPAD to represent chlorophyll in our study.Moreover, 4...
创建时间:
2024-08-28



