| Literature DB >> 22802021 |
William R DeMott1, Ellen Van Donk.
Abstract
The dynamic interactions among nutrients, algae and grazers were tested in a 2 × 3 factorial microcosm experiment that manipulated grazers (Entities:
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Year: 2012 PMID: 22802021 PMCID: PMC3538120 DOI: 10.1007/s00442-012-2404-y
Source DB: PubMed Journal: Oecologia ISSN: 0029-8549 Impact factor: 3.225
Fig. 1Effects of three algal treatments on a Daphnia population density, b clutch size, and c proportion of adults during the 25 day experiment. Algal treatments include Ankistrodesmus (circles), Oocystis (squares), or a mixture (triangles). Data are mean ± SE for 3 replicate mesocosms. p values are from one-way ANOVAs. Note log scale in (a)
Fig. 2Effects of Daphnia presence (filled symbols) or absence (open symbols) and three algal treatments on a particulate organic carbon, and b molar C:P ratio. Algal treatments include Ankistrodesmus (circles), Oocystis (squares), or a mixture (triangles). Data are mean ± SE for replicate microcosms. Error bars were removed from (b) for clarity. Note log scales
Fig. 3Effects of Daphnia presence (filled symbols) or absence (open symbols) on the population dynamics of Ankistrodesmus (circles) and Oocystis (squares) in the a single algal species and b mixed species treatments. Data are mean ± SE for 3 replicate microcosms. Note log scales
Fig. 4The effects of mesocosm resources and phosphate supplements on Daphnia juvenile growth (circles) and lipid-ovary index (bars). The day 0 trials used P-sufficient laboratory cultures (laboratory culture). Subsequent experiments used mesocosm resources from the a grazed Ankistrodesmus, b grazed mixture, c grazed Oocystis and d ungrazed Oocystis microcosms. Responses to phosphate supplements (solid circles) relative to controls (open circles) are shown by asterisks (*) for p < 0.05. Growth data are mean ± SE for resources from 3 replicate beakers. The lipid ovary index was scored on a scale of 0–3 and shows overall mean ± SE for both the control and supplemented trials. The value of the lipid-ovary index is zero for experiments starting on days 6 and 11 in (c) and days 6, 11, and 15 in (d)
Fig. 5Daphnia juvenile growth assays with 1.0 mg C L−1 of algae from P-sufficient laboratory cultures (laboratory culture) and from the ungrazed microcosms of a Ankistrodesmus and b Oocystis. Resources from microcosms were incubated for 3 days in the light without nutrients or with WC algal medium in light (WC light) or dark (WC dark). The mesocosm resources without WC medium were supplemented with phosphate each day of the growth experiment (+PO4−3) or left untreated (P−). Treatments not connected by lines are significantly different (Holm–Sidak procedure, p < 0.05). The C:P ratio (shown above each bar) was calculated from the concentration of added phosphate (numbers in parentheses) or measured from 3 replicate filters
Effects of treatments on lipid ovary index (scale 0–3) in growth assays with resources from P-sufficient laboratory cultures (Lab) and from the ungrazed Ankistrodesmus (Ank) and Oocystis microcosms
| Lab | WC light | WC dark | +PO4−3 | P− |
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| |
|---|---|---|---|---|---|---|---|
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| 3.0 a | 3.0 a | 3.0 a | 3.0 a | 2.94 ± 0.06 a | 1.00 | 0.45 |
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| 2.28 ± 0.20 b | 2.14 ± 0.28 b | 0.90 ± 0.21 c | 0.33 ± 0.04 c | 1.08 ± 0.17 c | 18.6 | <0.001 |
Mesocosm resources were incubated for 3 days in the light without nutrients or with P-rich WC algal medium in the light (WC light) or dark (WC dark). The resources without WC medium were supplemented with phosphate each day of the growth experiment (+PO4−3) or left untreated (P−). Data are mean ± SE for three replicate beakers. Data with different letters within rows are significantly different (Holm-Sidak, p < 0.05)