| Literature DB >> 30507001 |
Meri Eichner1, Silke Thoms2, Björn Rost2, Wiebke Mohr1, Soeren Ahmerkamp1, Helle Ploug3, Marcel M M Kuypers1, Dirk de Beer1.
Abstract
To understand the role of micrometer-scale oxygen (Entities:
Keywords: zzm321990Trichodesmiumzzm321990; N2 fixation; colony; microenvironment; oxygen
Mesh:
Substances:
Year: 2018 PMID: 30507001 PMCID: PMC6590460 DOI: 10.1111/nph.15621
Source DB: PubMed Journal: New Phytol ISSN: 0028-646X Impact factor: 10.151
Figure 1O2 concentrations in the bulk medium of Trichodesmium cultures incubated in roller tanks, monitored in three replicate vials (a–c). Dominant morphology (free‐floating trichomes or colonies) is indicated above each panel. Note that total biomass differed between vials and changed over time. Dashed lines indicate O2 concentration at air saturation, and grey shaded areas indicate dark phases (that is, night‐time).
Key characteristics of Trichodesmium cultures used in the experiment (mean ± SD)
| pH in culture medium | 8.52 ± 0.06 |
| |
| pH in abiotic reference medium | 8.38 ± 0.06 |
| |
| Phosphate uptake (replicate 1) | μmol l−1 d−1 | 0.08 | |
| Phosphate uptake (replicate 2) | μmol l−1 d−1 | 0.12 | |
| Fv/Fm
| 0.46 ± 0.07 |
| |
| POC : PON (7 h) | mol mol−1 | 5.5 ± 1.2 |
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| POC : PON (12 h) | mol mol−1 | 8.3 ± 2.6 |
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| POC : POP | mol mol−1 | 100 ± 75 |
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| PON : POP | mol mol−1 | 20 ± 16 |
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| POC : chlorophyll | μg μg−1 | 256 ± 116 |
|
Fv/Fm, photochemical quantum yield; POC, particulate organic carbon; PON, particulate organic nitrogen; POP, particulate organic phosphorus.
Measured along transects across individual colonies.
Bulk culture samples taken 7 h after beginning of the photoperiod.
Samples taken at the end of the photoperiod, average value including colonies and single trichomes incubated under different O2 concentrations.
Figure 2(a–d) Examples of O2 profiles measured in Trichodesmium colonies of different sizes (a, 0.02 mm3; b, 0.38 mm3; c, 2.4 mm3; d, 0.16 mm3) at different light intensities and times of the day (a, 6 h; b, 6 h; c, 7 h; d, 10 h, after the beginning of the light phase). Note the different scale of x‐axis. Grey shading indicates approximate position of the colony, dotted lines indicate O2 concentration at air saturation. (e) Net photosynthesis rates calculated from depth profiles through colonies measured at different times of the day. (f) Net O2 uptake by colonies in dependence of colony volume. Dashed line indicates diffusion limitation (calculated according to Ploug et al., 1997).
Net O2 uptake rates (mean ± SD) by Trichodesmium colonies based on O2 profiles measured at different light intensities at 45 min to 8 h after beginning of the light period
| Light intensity | Net O2 uptake | ||
|---|---|---|---|
| μmol photons m−2 s−1 | nmol O2 colony−1 h−1 | nmol mm−3 h−1 | |
| Dark | 4.0 ± 6.8 | 23 ± 14 |
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| 200 | 2.4 ± 2.3 | 24 ± 17 |
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| 500 | 1.4 ± 1.8 | 13 ± 8 |
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| 1000 | 3.1 ± 3.4 | 15 ± 1 |
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Figure 3O2 production and uptake rates in Trichodesmium cultures measured during late morning/midday under different external O2 concentrations. Cultures contained both colonies and free trichomes. Note that positive values on the y‐axis indicate rates of both O2 evolving and O2 consuming processes. Light‐dependent O2 uptake is the difference between total O2 uptake measured in the light and total O2 uptake measured in the dark. Low O2, 101 ± 35 μmol l−1; ambient O2, 191 ± 51 μmol l−1; high O2, 346 ± 39 μmol l−1. n = 11 for low and ambient O2, n = 7 for high O2. Error bars ± SD.
Figure 4Examples of O2 concentrations measured within c. 3 μm of the surface of single Trichodesmium filaments during consecutive light and dark phases (a–c) and while sliding along the trichome with a microsensor (d–f; total duration of the measurement c. 20 min). Grey shaded areas indicate dark phases.
Figure 5(a) N2 fixation, (b) C fixation and (c) O2 evolution in free‐floating trichomes and colonies of Trichodesmium measured under different O2 concentrations in the bulk medium over the duration of the light phase (12 h). Low O2, 24 ± 11 μmol l−1; ambient O2, 238 ± 13 μmol l−1; high O2, 475 ± 32 μmol l−1. n ≥ 3, except for trichomes at low O2 with n = 2 in (a, b), and colonies at high O2 with n = 2 in (c). Error bars indicate SD.
Calculated permeability of the cell wall necessary to support anoxia in the interior of a Trichodesmium cell, based on measured rates of O2 uptake (that is, dark respiration), extracellular O2 concentrations in colonies and cell dimensions (average 5 μm length, 7 μm width)
| Respiration distribution | External O2 (μmol l−1) | Average O2 uptake (fmol cell−1 h−1) | Intensity of O2 consumption (mol s−1 m−3) | Permeability for O2 (m s−1) | Permeability for CO2 (m s−1) |
|---|---|---|---|---|---|
| Homogeneous | 329 | 608 | 1.49 | 4.6 × 10−6 | 3.7 × 10−6 |
| Heterogeneous | 329 | 3648 | 8.96 | 2.9 × 10−5 | 2.3 × 10−5 |
| Homogeneous | 187 | 194 | 0.48 | 2.6 × 10−6 | 2.1 × 10−6 |
| Heterogeneous | 187 | 1164 | 2.86 | 1.6 × 10−5 | 1.3 × 10−5 |
| Homogeneous | 101 | 198 | 0.49 | 4.9 × 10−6 | 3.9 × 10−6 |
| Heterogeneous | 101 | 1188 | 2.92 | 3.1 × 10−5 | 2.4 × 10−5 |
Scenarios with heterogeneous distribution of respiration assume a six‐fold higher respiration rate in diazocytes compared to vegetative cells. Permeability for CO2 was calculated from O2 permeability using a conversion factor of 0.7961 according to Ramsing & Gundersen (1994). For further details on the model, please refer to Supporting Information Notes S1.
Calculated intracellular O2 concentrations in Trichodesmium under net O2 producing conditions (representative of early morning or evening), based on measured rates of O2 production, extracellular O2 concentrations in colonies, cell dimensions (5 μm length, 7 μm width), and membrane permeability calculated for diazocytes with an anoxic cell interior (Table 3)
| Net O2 production (fmol cell−1 h−1) | External O2 concentration (μmol l−1) | Intensity of O2 production (mol s−1 m−3) | Permeability for O2 (m s−1) | Intracellular O2 concentration (μmol l−1) |
|---|---|---|---|---|
| 1031 | 329 | 2.53 | 4.6 × 10−6 | 884 |
| 1031 | 187 | 2.53 | 2.6 × 10−6 | 1166 |
| 1031 | 101 | 2.53 | 4.9 × 10−6 | 623 |
Cell‐specific O2 production was calculated from a colony‐specific measurement assuming 10 000 cells per colony. For further details on the model, please refer to Supporting Information Notes S1.
Figure 6Conceptual model of intra‐ and extracellular O2 concentrations in Trichodesmium at different times of the day. Note that (nonphotosynthetic) diazocytes are always anoxic, while O2 concentrations in vegetative (photosynthetic) cells vary with time of the day and morphology (colony vs free trichomes). Estimates are based on O2 measurements (by microsensors and membrane inlet mass spectrometry (MIMS)) and model calculations, assuming the same photosynthesis rate and permeability for all cells. Red pattern in and around cells indicates O2 concentration, grey and green backgrounds indicate vegetative cells and diazocytes, respectively.