| Literature DB >> 28790307 |
Shuwen Zhang1, Hongbin Liu2, Patricia M Glibert3, Cui Guo1, Ying Ke1.
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Year: 2017 PMID: 28790307 PMCID: PMC5548927 DOI: 10.1038/s41598-017-05991-w
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Carbon (C), nitrogen (N) and phosphorus (P) contents and molar stoichiometric ratios (N:P, C:N and C:P ratios) of Thalassiosira weissflogii grown in N-limited (-N), nutrient-balanced (f/2) and P-limited (-P) medium.
| -N | f/2 | -P | |
|---|---|---|---|
| C (pmol cell−1) | 9.48 ± 0.41b,c | 7.58 ± 0.14a,c | 10.63 ± 0.57a,b |
| N (pmol cell−1) | 0.49 ± 0.02b,c | 1.23 ± 0.01a,c | 1.03 ± 0.06a,b |
| P (fmol cell−1) | 67.62 ± 3.45b,c | 57.92 ± 0.59a,c | 8.84 ± 0.48a,b |
| N:P | 7.30 ± 0.47b,c | 21.21 ± 0.32a,c | 117.04 ± 9.54a,b |
| C:N | 19.19 ± 0.12b,c | 6.17 ± 0.09a,c | 10.28 ± 0.08a,b |
| C:P | 140.13 ± 9.40c | 130.94 ± 2.74c | 1203.30 ± 91.34a,b |
Data are averages with standard deviations. Superscript letters indicate significant differences between nutrient treatments (ANOVA, Fisher LSD post hoc, p < 0.05).
Figure 1Clearance rate (a), ingestion rate (b), elemental growth yield (c) and gross growth efficiency (d) of Noctiluca scintillans on different quality Thalassiosira weissflogii [N-limited (-N), nutrient-balanced (f/2), P-limited (-P)]. Error bars = + 1 SD, n = 3. Superscript letters indicate significant differences between nutrient treatments (ANOVA, Fisher LSD post hoc, p < 0.05).
Cell diameters of Noctiluca scintillans (µm, mean ± SD) and the number of prey held in Noctiluca cells (averages with the range in parenthesis) after 1d incubation with N-limited (-N), nutrient-balanced (f/2) and P-limited (-P) Thalassiosira weissflogii.
| Treatment | Cell size (μm) | Number of prey contained in |
|---|---|---|
| Initial starved cell | 240 ± 31 | |
| -N | 232 ± 29 | 11 (0~54) |
| f/2 | 235 ± 33 | 18 (0~78) |
| -P | 236 ± 29 | 14 (0~58) |
The amounts and ratios of total cellular elements and intracellular NH4 + and PO4 3− of Noctiluca scintillans cells at the initial starved condition, after 1 day incubation with N-limited (-N), nutrient-balanced (f/2) and P-limited (-P) Thalassiosira weissflogii, and after subsequent 6 h starvation of those different grown cells.
| Parameters | Initial | After 1 d incubation | Subsequent 6 h starvation | ||||
|---|---|---|---|---|---|---|---|
| -N | f/2 | -P | -N | f/2 | -P | ||
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| C (nmol cell−1) | 2.56 ± 0.042c,d,B,C,D |
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| 2.05 ± 0.04a,b,c |
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| 2.15 ± 0.069a |
| N (nmol cell−1) | 0.46 ± 0.013b,d,B,C,D |
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| P (pmol cell−1) | 19.02 ± 1.75b,c,d,C,D |
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| 13.63 ± 1.27a,b,c |
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| 12.98 ± 1.16a,B,C |
| N:P | 24.24 ± 2.34b,c,B,C | 14.54 ± 1.19a,d | 16.19 ± 1.93a,d |
| 13.86 ± 1.53a,D | 15.06 ± 1.19a,D |
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| C:N | 5.55 ± 0.19b,c,d,B,C,D | 6.52 ± 0.47a | 6.46 ± 0.29a | 6.91 ± 0.44a | 6.59 ± 0.24a | 6.68 ± 0.37a | 6.40 ± 0.14a |
| C:P | 134.41 ± 12.59b,c,B,C | 94.85 ± 4.46a,d | 104.51 ± 11.51a,d | 154.51 ± 14.74b,c | 91.27 ± 9.73a,D | 103.68 ± 7.44a,D | 165.59 ± 15.65a,B,C |
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| NH4 + (pmol cell−1) | 184.81 ± 3.71b,c,d,B,C,D |
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| PO4 3− (pmol cell−1) | 13.03 ± 0.24b,c,d,B,D |
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| 5.48 ± 0.37a,b,c |
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| 6.06 ± 1.23a,B,C |
| % NH4 + in total N pool | 40.08 ± 1.42b,c,d,B,C |
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| % PO4 3− in total P pool | 68.48 ± 6.44d | 59.86 ± 3.08d | 64.10 ± 7.50d | 40.21 ± 4.63a,b,c | 67.02 ± 7.52 | 68.31 ± 11.35 | 46.69 ± 10.35 |
| Molar NH4 +: PO4 3− | 14.19 ± 0.28b,c,d,D | 7.80 ± 0.48a,c,d | 12.57 ± 0.43a,b,d |
| 9.71 ± 0.46D | 13.82 ± 3.06D |
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Superscript letters indicate significant differences between food treatments (ANOVA, Fisher LSD post hoc, p < 0.05), parameters of the Noctiluca from the same food treatment show significant difference after 1 d incubation (before starvation) and after 6 h starvation are labeled in bold.
Figure 2Regressions of log-normalized resource and consumer elemental ratios for Noctiluca scintillans: (a) N:P; (b) C:P; (c) C:N; (d) intracellular NH4 +: PO4 3−. 1/H is the slope of the regression between log-normalized resource and consumer elemental ratios. H = 1/slope. Error bars = ± 1 SD, n = 3.
Figure 3Predictions of the excretion rates of (a) C, (b) N and (c) P of Noctiluca scintillans (pmol Noc−1 h−1) grown on N-limited (-N), nutrient-balanced (f/2) and P-limited (-P) prey as a function of their assimilation efficiencies for these elements using elemental budget models.
Computational and experimental excretion rates of C, N and P (RC, EN and EP, pmol Noc−1 h−1) and percentages of the excretion to ingestion (%) of Noctiluca scintillans grown on N-limited (-N), nutrient-balanced (f/2) and P-limited (-P) Thalassiosira weissflogii.
| Parameters | Mode predation | Experimental excretion rates (6 h starvation) | ||||
|---|---|---|---|---|---|---|
| -N | f/2 | -P | -N | f/2 | -P | |
| RC (pmol C Noc−1 h−1) | 55.56 | 18.04 | 62.6 | 91.83 ± 8.33 | 92.42 ± 23.52 | – |
| EN (pmol N Noc−1 h−1) | 4.04 | 3.79 | 7.28 | 15.65 ± 4.97 | 18.54 ± 5.05 | −5.70 ± 3.41 |
| EP (pmol P Noc−1 h−1) | 0.21 | 0.07 | 0.08 | 0.87 ± 0.45 | 0.91 ± 0.51 | – |
| RC/IC (%) | 57.05 | 40.55 | 90.92 | 23 ± 3 | 52 ± 18 | – |
| EN/IN (%) | 77.53 | 52.1 | 107.88 | 72 ± 25 | 64 ± 23 | −21 ± 14 |
| EP/IP (%) | 29.28 | 21.43 | 134.69 | 31 ± 16 | 67 ± 41 | |
Note: In the starvation experiment, percentages of the excretion to ingestion (%) of Noctiluca were calculated by dividing the elemental excretion in 6 h to 1-day ingestion and assuming that Noctiluca’s assimilation efficiency was 60% for C content in all food treatments, 80% for the excessive nutrient and 100% for the limited nutrient.
Dashes mean no significance difference of the element content of Noctiluca before and after starvation.