| Literature DB >> 27228080 |
Zoe V Finkel1, Mick J Follows2, Justin D Liefer1, Chris M Brown3, Ina Benner1, Andrew J Irwin4.
Abstract
The elemental stoichiometry of microEntities:
Mesh:
Substances:
Year: 2016 PMID: 27228080 PMCID: PMC4882041 DOI: 10.1371/journal.pone.0155977
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Protein content estimates (% dry weight) by phylum and grand mean over all groups.
Protein observations are grouped by method: assays that measure amino acids and peptide residues (Amino acid and peptide residues) and measurements of nitrogen that are converted to protein (N content) using a conversion factor (6.25) based on the assumption that protein is 16% nitrogen by mass. We apply the correction factor of 4.78 g protein / g N instead of the standard conversion of 6.25 g protein / g N as recommended by Lourenço et al (2004) for all the eukaryotic phyla to account for non-protein nitrogen (Corrected N content) and then pool the corrected N content derived protein observations with amino acid and peptide based estimates of protein into a pooled protein estimate. The pooled estimate can be larger or smaller than all of the first three columns because of the hierarchical pooling of data (see Methods). The top value is the median percent dry weight, the middle values in brackets denote the 95% credible interval on the median, and the bottom value is the number of observations.
| Phylum | Amino acids and peptide residues | N content | Corrected N content | Pooled protein estimate |
|---|---|---|---|---|
| Cyanobacteria | 42.2 | 41.3 | 43.2 | |
| (32.9, 50.4) | (33.9, 49.4) | (37.1, 49.3) | ||
| 19 | 6 | 25 | ||
| Chlorophyta | 32.8 | 42.6 | 33.0 | 32.7 |
| (28.5, 37.2) | (38.1, 47.5) | (29.1, 37.3) | (29.3, 36.1) | |
| 51 | 24 | 24 | 75 | |
| Cryptophyta | 37.7 | 45.0 | 35.3 | 38.4 |
| (28.2, 50.5) | (38.0, 53.5) | (28.8, 42.6) | (31.1, 46.2) | |
| 5 | 11 | 11 | 16 | |
| Bacillariophyta | 29.2 | 35.2 | 26.5 | 27.4 |
| (24.2, 33.8) | (30.4, 40.1) | (22.6, 30.8) | (24.0, 31.0) | |
| 46 | 36 | 36 | 82 | |
| Haptophyta | 32.5 | 41.0 | 31.8 | 32.0 |
| (26.1, 38.7) | (36.3, 46.2) | (27.4, 36.2) | (27.4, 36.4) | |
| 40 | 36 | 36 | 76 | |
| Ochrophyta | 32.8 | 40.5 | 31.6 | 32.5 |
| (24.5, 41.2) | (31.0, 51.3) | (21.3, 40.5) | (25.4, 39.9) | |
| 18 | 1 | 1 | 19 | |
| Dinophyta | 30.4 | 37.5 | 28.2 | 27.4 |
| (19.1, 39.0) | (26.8, 45.7) | (18.4, 35.7) | (19.2, 34.9) | |
| 20 | 2 | 2 | 22 | |
| Grand mean | 32.7 | 40.2 | 31.2 | 32.2 |
| (30.2, 35.0) | (38.0, 42.6) | (29.3, 33.3) | (30.4, 34.0) | |
| 199 | 118 | 118 | 317 |
Median macromolecular composition as percent dry weight of microalgae under nutrient-sufficient exponential growth and under the stationary phase of growth (this study) compared to the median macromolecular composition of marine bacteria and marine yeast [23], various herbaceous plants and leaves (raw spinach, green leaf lettuce, fresh spearmint, coriander, fresh basil, fresh rosemary, raw broccoli leaves, wild rhubarb leaves, winged bean leaves, raw pumpkin leaves, chrysanthemum leaves) [24], and raw chicken egg [24].
| Microalgae (active growth) | Microalgae (stationary phase) | Bacteria (n = 7) | Yeast (n = 8) | Herbs and leaves (n = 11) | Raw egg | |
|---|---|---|---|---|---|---|
| Protein | 32.2 | 27.0 | 48 | 32.0 | 27.3 | 52.7 |
| (30.4, 34) | (24.2, 29.8) | |||||
| 317 | 144 | |||||
| Lipid | 17.3 | 22.5 | 5.4 | 4.6 | 5.1 | 39.9 |
| (16.2, 18.2) | (20.7, 24.4) | |||||
| 375 | 324 | |||||
| CHO | 15.0 | 21.8 | 5.6 | 24.0 | 56.3 | 3.0 |
| (13.7, 16.5) | (18.5, 24.8) | |||||
| 308 | 128 | |||||
| Ash | 17.3 | 18.6 | 29 | 8.6 | ||
| (15.4, 18.7) | (14.9, 21.7) | |||||
| 185 | 60 | |||||
| RNA | 5.65 | 9.9 | 4.4 | 4.8 | ||
| (4.64, 6.96) | ||||||
| 24 | ||||||
| Chl-a | 1.13 | 0.87 | ||||
| (0.9, 1.3) | (0.56, 1.19) | |||||
| 104 | 40 | |||||
| DNA | 0.98 | 0.6 | 0.33 | 0.1 | ||
| (0.25, 2.0) | ||||||
| 20 | ||||||
| SUM | 89.6 | 101.3 | 92.7 | 74.0 | 88.7 | 95.6 |
*There are only two observations of RNA and DNA in stationary phase in the database. The top value in the first 2 columns is the median percent dry weight, the middle values in brackets denote the 95% credible interval on the median, and the bottom value is the number of observations.
Taxonomic differences in median macromolecular composition as percent dry weight under nutrient-sufficient exponential growth conditions.
The top value is the median percent dry weight, the middle values in brackets denote the 95% credible interval on the median, and the bottom value is the number of observations.
| Protein | Lipid | CHO | Ash | RNA | Chl a | DNA | |
|---|---|---|---|---|---|---|---|
| Cyanobacteria | 43.1 | 11.7 | 21.8 | 8.12 | 8.7 | 1.06 | 0.82 |
| (36.8, 49.3) | (8.23, 16.2) | (16.7, 26.2) | (4.88, 10.9) | (7.28, 10.1) | (0.54, 1.4) | (0.63, 4.7) | |
| 25 | 33 | 22 | 13 | 16 | 3 | 16 | |
| Chlorophyta | 32.7 | 16.3 | 14.4 | 12.1 | 5.11 | 1.15 | 0.81 |
| (29.4, 36.1) | (14.5, 18.2) | (11.5, 16.8) | (6.45, 14.2) | (2.79, 8.22) | (0.90, 1.5) | (0.40, 6.2) | |
| 75 | 98 | 71 | 33 | 3 | 26 | 3 | |
| Cryptophyta | 38.5 | 16.1 | 12.5 | 16.1 | 1.18 | ||
| (30.8, 45.8) | (11.2, 20.3) | (7.03, 17.8) | (10.2, 19.5) | (0.85, 1.6) | |||
| 16 | 18 | 16 | 13 | 8 | |||
| Bacillariophyta | 27.4 | 18.8 | 12.2 | 27.5 | 1.12 | ||
| (23.9, 30.8) | (16.9, 20.8) | (9.57, 15) | (24.1, 29.3) | (0.84, 1.4) | |||
| 82 | 92 | 82 | 63 | 23 | |||
| Haptophyta | 32.1 | 18.6 | 16.9 | 13.7 | 4.78 | 1.16 | 1.01 |
| (27.5, 36.8) | (15.7, 21.3) | (11.4, 20.2) | (11.3, 17.5) | (0, 10.7) | (0.89, 1.5) | (0.19, 1.6) | |
| 76 | 81 | 73 | 51 | 1 | 34 | 1 | |
| Ochrophyta | 32.6 | 21.3 | 14.4 | 19.6 | 0.55 | 1.1 | |
| (25.2, 39.5) | (17.1, 26.1) | (8.62, 20) | (10.7, 22.8) | (0, 3.86) | (0.70, 1.5) | ||
| 19 | 26 | 19 | 8 | 4 | 10 | ||
| Dinophyta | 27.4 | 15.8 | 23 | 11.6 | |||
| (19.4, 35) | (12.4, 20.2) | (15.6, 29.8) | (4.16, 19.9) | ||||
| 22 | 25 | 23 | 2 | ||||
| Grand Mean | 32.2 | 17.3 | 15 | 17.3 | 5.65 | 1.13 | 0.98 |
| (30.4, 34) | (16.2, 18.2) | (13.7, 16.5) | (15.4, 18.7) | (4.64, 6.96) | (0.9, 1.3) | (0.25, 2.0) | |
| 317 | 375 | 308 | 185 | 24 | 104 | 20 |
Fig 1Median (filled circle) and 95% credible intervals (line) for protein, lipid and carbohydrate as percent dry weight for different phyla of microalgae under nutrient-sufficient exponential growth.
The median protein, lipid and carbohydrate as percent dry weight and associated 95% credible interval across all phyla are represented by the vertical black line and grey region, respectively.
Protein:carbohydrate (Protein:CHO), protein:lipid (Protein:Lipid), and carbohydrate:lipid (CHO:Lipid) and predicted C:N (mol:mol) based on macromolecular composition for different phyla of microalgae under nutrient-sufficient exponential growth.
The top value is the median macromolecular ratio, the middle values in brackets denote the 95% credible interval on the ratio, and the bottom value is the number of observations. The last column is an independent estimate of mean molar C:N measured in exponentially growing laboratory cultures [6,7], the middle values in brackets denote the 95% confidence interval, and the bottom value is the number of experimental observations.
| Protein: CHO | Protein: Lipid | CHO: Lipid | C:N (predicted) | C:N(observed) | |
|---|---|---|---|---|---|
| Cyanobacteria | 2.4 | 4.2 | 2.3 | 6.0 | 5.7 |
| (1.8, 3.1) | (3.0, 5.8) | (1.5, 3.5) | (5.4, 6.6) | (3.6, 7.8) | |
| 23 | 24 | 22 | 9 | ||
| Chlorophyta | 2.4 | 2.2 | 0.9 | 6.8 | 7.9 |
| (2.0, 3.0) | (1.8, 2.7) | (0.7, 1.2) | (6.2, 7.4) | (6.6, 9.3) | |
| 84 | 81 | 80 | 15 | ||
| Cryptophyta | 2.8 | 2.7 | 0.6 | 7.0 | |
| (2.1, 5.0) | (1.7, 4.3) | (0.4, 1.1) | (5.9, 8.2) | ||
| 23 | 18 | 18 | |||
| Bacillariophyta | 2.4 | 1.7 | 0.6 | 8.3 | 7.5 |
| (2.0, 2.9) | (1.2, 2.0) | (0.5, 0.7) | (7.6, 9.3) | (6.4, 8.5) | |
| 166 | 132 | 132 | 12 | ||
| Haptophyta | 2.3 | 1.8 | 0.8 | 7.4 | |
| (1.8, 2.9) | (1.4, 2.3) | (0.6, 1.1) | (6.5, 8.5) | ||
| 119 | 113 | 111 | |||
| Ochrophyta | 2.4 | 1.3 | 0.5 | 8.3 | |
| (1.8, 3.5) | (0.9, 1.9) | (0.3, 0.8) | (7.0, 9.8) | ||
| 40 | 40 | 40 | |||
| Dinophyta | 2.2 | 2.3 | 1.6 | 8.6 | 9.3 |
| (1.6, 2.8) | (1.7, 3.1) | (1.0, 2.4) | (7.0, 11.0) | (7.2, 11.4) | |
| 45 | 36 | 37 | 9 | ||
| Grand Mean | 2.4 | 2.2 | 0.9 | 7.0 | |
| (2.1, 2.7) | (2.0, 2.5) | (0.8, 1.0) | (6.7, 7.3) | ||
| 502 | 446 | 442 |
Variance decomposition for median protein, lipid and carbohydrate as percent dry weight for nutrient-sufficient exponentially growing cultures into % within species (residual error), % among species within phyla and % among phyla.
| % within species (residual error) | % among species, within phyla | % among phyla | |
|---|---|---|---|
| 42 | 31 | 25 | |
| 43 | 32 | 23 | |
| 41 | 32 | 25 |
Fig 2The carbon-to-nitrogen ratio in microalgae calculated from the median macromolecular composition (Predicted C:N) compared to measurements made on laboratory cultures, not associated with the macromolecular database (Observed C:N).
1:1 line (dotted).