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- W3200977526 endingPage "103449" @default.
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- W3200977526 abstract "Functional trait values and trait responsiveness to different environmental regimes determine the growth and reproduction of wetland plants. Flooding depth and nitrogen (N) supply, which have strong effects on plant functional traits, are important factors affecting the growth of marsh plant species. A greenhouse experiment was conducted to examine the response of growth, clonal reproductive traits, biomass accumulation and allocation of Glyceria spiculosa to changes in flooding depth 0, +5 and +15 cm relative to the soil surface and N supply (0, 12, 20 and 28 mM N, added as urea [CH4N2O]). We found that flooding depth and N supply interactively affected grow, reproduction and biomass cumulation of G. spiculosa. N supply increased plant height (H), leaf area (LA) and above-ground biomass (AGB) and has no effect on leaf dry matter content (LDMC) and root length (RoL) in control treatment, and decreased LDMC and RoL and has no effect on H, LA and AGB in flooding treatment. N supply enhanced ramet number in control and shallow flooding treatment (+5 cm) and had no effect on that in deep flooding depth (+15 cm). Flooding depth has a positive and negative effect on belowground biomass (BGB) and the ratio of belowground to aboveground biomass (BAR), respectively. N supply has a positive effect on rhizome biomass and BGB and a negative effect on BAR. These findings contribute to our understanding of the roles of functional traits in response to habitat changes and of future distribution pattern for G. spiculosa." @default.
- W3200977526 created "2021-09-27" @default.
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- W3200977526 date "2021-10-01" @default.
- W3200977526 modified "2023-10-06" @default.
- W3200977526 title "Functional traits response to flooding depth and nitrogen supply in the helophyte Glyceria spiculosa (Gramineae)" @default.
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- W3200977526 doi "https://doi.org/10.1016/j.aquabot.2021.103449" @default.
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