| Literature DB >> 27401911 |
Nikhil S Jaikumar1, Sieglinde S Snapp2, Thomas D Sharkey3.
Abstract
Effects of plant age on resource acquisition and stress tolerance processes is a largely unstudied subject in herbaceous perennials. In a field experiment, we compared rates of photosynthesis (A), ribulose-1,5-bisphosphate (RuBP) carboxylation capacity (V Cmax), maximum electron transport rate (J max), and triose phosphate utilization (TPU), as well as concentrations of Rubisco and sucrose-phosphate synthase (SPS) in 5-year-old and 2-year-old intermediate wheatgrass (Thinopyrum intermedium) under both optimal growing conditions and cold stress in early spring and autumn. This species is a relative of wheat undergoing domestication. An additional experiment compared photosynthetic rates in different cohorts at mid-season and under colder conditions. We hypothesized that photosynthetic capacity in older plants would be lower under favorable conditions but higher under cold stress. Our hypothesis was generally supported. Under cold stress, 5-year-old plants exhibited higher A, TPU, and temperature-adjusted V Cmax than younger plants, as well as 50% more SPS and 37% more Rubisco. In contrast, at mid-season, photosynthetic capacities in older plants were lower than in younger plants in one experiment, and similar in the other, independent of differences in water status. Both cohorts increased A, temperature-adjusted TPU and J max, [Rubisco], and [SPS] under cold stress, but changes were greater in older plants. Photosynthetic differences were largest at 1.2 ºC in very early spring, where older plants had 200% higher A and maintained up to 17% of their peak photosynthetic capacity. We find evidence of increased cold tolerance in older cohorts of wheatgrass, consistent with a growing body of research in woody perennials.Entities:
Keywords: Age; Thinopyrum.; chilling; cold; freezing; perennial; photosynthesis
Mesh:
Substances:
Year: 2016 PMID: 27401911 PMCID: PMC4973744 DOI: 10.1093/jxb/erw253
Source DB: PubMed Journal: J Exp Bot ISSN: 0022-0957 Impact factor: 6.992
Means (±SE) and F-values for stomatal limitation (LS), mesophyll conductance (gm), and intrinsic water-use efficiency (IWUE) in two cohorts of intermediate wheatgrass (Thinopyrum intermedium) at multiple sampling dates in a 2015–2016 study at Kellogg Biological Station (Hickory Corners, MI). Symbols ‘*” and ‘**’ represent significance at α = 0.05 and 0.01 respectively
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| April 8 | Wheatgrass (2-year-old) | 27.5±4.3 | 5.78±1.48 | 100±24 |
| April 8 | Wheatgrass (5-year-old) | 21.0±4.0 | 4.83±0.86 | 50±3* |
| 10 July | Wheatgrass (2-year-old) | 21.6±4.3 | 10.30±1.69 | 59±9 |
| 10 July | Wheatgrass (5-year-old) | 21.0±3.1 | 9.87±2.35 | 85±20* |
| 20 November | Wheatgrass (2-year-old) | 19.1±3.2 | 1.33±0.32 | 49±3 |
| 20 November | Wheatgrass (5-year-old) | 12.3±4.5 | 1.88±0.74 | 45±7 |
| 17 March | Wheatgrass (3-year-old) | – | 0.50+0.15 | 170±21 |
| 17 March | Wheatgrass (6-year-old) | – | 0.66+0.15 | 114±17* |
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| Stress | 2.66 | 56.45*** | ||
| Age | 0.5 | 0.03 | ||
| Age×stress | 5.46* | 0.06 | ||
| Date | 10.88** | 8.05** | ||
*, **, and *** indicate significance at α=0.05, 0.01, and 0.001 respectively.
Fig. 1.Observed photosynthetic rate at approximately ambient irradiance, [CO2], and humidity (A o) in 1-, 2-, and 3-year-old intermediate wheatgrass plants sampled at air temperature 8 ºC (on 13 April) and at air temperature 23 ºC (on 18 May). Data were taken from a 2013 study at the Kellogg Biological Station (Hickory Corners, MI).
Means (±SE) and F-values for observed photosynthetic rate under ambient light and [CO2] (A), water-use efficiency (WUE), and for leaf water potential (ΨL) at pre-dawn (PD) and mid-day (MD), measured on 1-, 2-, and 3-year-old cohorts of intermediate wheatgrass (Thinopyrum intermedium) in a 2013 study at Kellogg Biological Station (Hickory Corners, MI)
Means for the two older cohorts are compared against first-year plants (n=6 for first- and third-year cohorts, n=4 for second-year).
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| ΨL,PD (MPa) | ΨL,MD (MPa) | |
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| Date | 22 April | 22 April | 12 July | 12 July | 12 July | July 12 |
| Wheatgrass (1-year-old) | 26.6±4.5 | 139.9±19.2 | 37.2±3.4 | 42.9±5.0 | –0.16±0.01 | -0.46±0.06 |
| Wheatgrass (2-year-old) | 26.7±0.9 | 55.6±8.2 | 29.3±2.2 | 43.1±2.7 | –0.24±0.03* | -0.66±0.14 |
| Wheatgrass (3-year-old) | 24.2±1.6 | 72.3±3.7 | 30.7±2.2* | 43.5±7.5 | –0.17±0.02 | -0.81±0.19 |
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| Age | 0.04 | 88.93*** | 21.06** | 2.90 | 2.90 | 0.00 |
| Mature cohort age | 0.62 | 7.92* | 2.01 | 0.04 | 6.35 | 0.94 |
*, **, and *** indicate significance at α=0.05, 0.01, and 0.001 respectively.
Fig. 2.Photosynthetic rate at approximately ambient irradiance (A) as a function of intercellular carbon dioxide concentration (C i) in representative leaves of 2- and 5-year-old intermediate wheatgrass plants on 6 April (A; leaf temperature 13 ºC), 15 May (B; leaf temperature 18 ºC), and 20 November (C; leaf temperature 5 ºC). Data were taken from a 2015 study at the Kellogg Biological Station (Hickory Corners, MI).
Fig. 3.Quantum yield of PSII (ΦPSII) as a function of intercellular carbon dioxide concentration (C i) in representative leaves of 2- and 5-year-old intermediate wheatgrass plants on 6 April, with leaf temperature 12 ºC. Data were taken from a 2015 study at the Kellogg Biological Station (Hickory Corners, MI).
Means (±SE), Student’s t for planned contrast, and F-values for photosynthetic rate (A), inferred maximal electron transport rate (Jmax), maximal RuBP carboxylation rate (VCmax), and maximal triose phosphate utilization capacity (TPU) in 2-year-old and 5-year-old wheatgrass (Thinopyrum intermedium) at multiple sampling dates in a 2015 study at Kellogg Biological Station (Hickory Corners, MI)
Values given for V Cmax, J max, and TPU are standardized to 25 ºC, while values for A are not. At the first three dates, second year plants were not measured.
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| 18 March | Wheatgrass (5-year-old) | 8.89±0.9 | 208.8±42.9 | 36.5±8.5 | 33.5±3.2 | 5.2 |
| 24 March | Wheatgrass (5-year-old) | 8.12±0.9 | 234.6±39.2 | 38.6±1.8 | 30.5±5.1 | 7.4 |
| 4 April | Wheatgrass (5-year-old) | 5.09±0.7 | 135.2±30.9 | 35.6±9.1 | 28.7±3.3 | 2.8 |
| 8 April | Wheatgrass (2-year-old) | 17.6±1.6 | 224.4±20.5 | 112.0±13.7 | 26.2±3.1 | 12.8 |
| 8 April | Wheatgrass (5-year-old) | 25.5±1.3 | 356.8±27.7 | 79.7±14.3 | 41.9±3.5 | 12.8 |
| 25 April | Wheatgrass (2-year-old) | 9.9±1.7 | 193.7±28.0 | 56.0±14.0 | 22.2±3.5 | 6.8 |
| 25 April | Wheatgrass (5-year-old | 10.2±1.9 | 199.1±30.6 | 101.3±13.5 | 30.5±1.3 | 6.8 |
| 20 May | Wheatgrass (2-year-old) | 30.8±3.4 | 198.4±30.4 | 118.4±17.1 | 20.7±2.7 | 19.9 |
| 20 May | Wheatgrass (5-year-old) | 24.4±1.6 | 235.2±30.8 | 108.6±14.6 | 19.2±2.8 | 19.9 |
| 10 July | Wheatgrass (2-year-old) | 28.3±3.3 | 142.0±18.0 | 93.0±8.1 | 14.0±1.2 | 28.6 |
| 10 July | Wheatgrass (5-year-old) | 25.2±2.8 | 174.0±16.0 | 92.3±7.3 | 14.9±1.0 | 28.6 |
| 20 November | Wheatgrass (2-year-old) | 11.4±1.6 | 197.1±13.2 | 65.6±10.3 | 27.1±2.0 | 7.5 |
| 20 November | Wheatgrass (5-year-old) | 19.4±2.4 | 253.3±22.6 | 109.9±15.3 | 37.8±2.5 | 7.5 |
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| Student’s | 6.52**** | 1.80 | 5.34** | 2.59* | ||
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| Stress | 170.39**** | 13.19*** | 3.39† | 28.20**** | ||
| Age | 0.11 | 6.61* | 1.14 | 9.37** | ||
| Age×stress | 15.28*** | 1.97 | 1.26 | 6.60* | ||
| Date | 18.55**** | 7.02*** | 0.68 | 23.46**** | ||
†, *, **, ‘***’ and ‘****’ indicate significance at α= 0.075, 0.05, 0.01, 0.001 and 0.0001, respectively.
Significance of the cold stress×age interaction may be assessed either by the F-value or by the planned contrast.
Fig. 4.Log-transformed photosynthetic rate at approximately ambient carbon dioxide, light, and humidity, as a function of reciprocal-transformed absolute temperature in newly emerged leaves of 5-year-old intermediate wheatgrass plants. Observed photosynthetic rates are each based on the average of six plants. Data were taken from a 2015 study at the Kellogg Biological Station (Hickory Corners, MI).
Fig. 5.Extractable concentration of Rubisco at three sampling dates in early and mid-spring, in 2- and 5-year-old intermediate wheatgrass plants. Data were taken from a 2015 study at the Kellogg Biological Station (Hickory Corners, MI).
Fig. 6.Extractable concentration of sucrose-phosphate synthase (SPS) at three sampling dates in early and mid-spring, in 2- and 5-year-old intermediate wheatgrass plants. Data were taken from a 2015 study at the Kellogg Biological Station (Hickory Corners, MI).
Fig. 7.Photosynthetic rate at approximately ambient irradiance (A) in 3- and 6-year-old intermediate wheatgrass plants at three leaf temperatures (~1, 5, and 10 ºC) measured in the field. Data were taken from a spring 2016 study at the Kellogg Biological Station (Hickory Corners, MI).
Means (±SE) and F-values for the ratio of variable to maximal fluorescence in the light (Fv '/Fm '), PSII efficiency (ΦPSII), intrinsic water-use efficiency (IWUE), and imputed triose phosphate utilization (TPU; estimated as the carbon-saturated photosynthetic rate at 2000 μmol mol−1) in 3-year-old and 6-year-old intermediate wheatgrass (Thinopyrum intermedium) at three dates (differing in leaf temperature) in a spring 2016 study at Kellogg Biological Station (Hickory Corners, MI)
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| ΦPSII | IWUE (mmol mol−1) | TPU (imputed; μmol m−2 s−1) | Temperature (ºC) |
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| 14 March | Wheatgrass (6-year-old) | 0.368±0.021 | 0.050±0.007 | 42±9 | 14.7±1.9 | 1.2 |
| 14 March | Wheatgrass (3-year-old) | 0.376±0.019 | 0.024±0.001* | 12±4 | 11.0±1.3 | 1.2 |
| 3 April | Wheatgrass (6-year-old) | 0.399±0.023 | 0.096±0.010 | 109±29 | – | 5.1 |
| 3 April | Wheatgrass (3-year-old) | 0.474±0.033 | 0.078±0.008 | 88±22 | – | 5.1 |
| 17 March | Wheatgrass (6-year-old) | 0.452±0.011 | 0.138±0.016 | 170±21 | – | 9.7 |
| 17 March | Wheatgrass (3-year-old) | 0.455±0.054 | 0.139±0.006 | 110±43 | – | 9.7 |
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| Temperature | 6.65** | 63.30**** | 23.3**** | – | ||
| Age | 0.65 | 12.10** | 8.27** | 2.53 | ||
| Age×temperature | 0.56 | 10.91*** | 0.40 | – | ||
*, **, ***, and **** indicate significance at α=0.075, 0.05, 0.01, and 0.001, respectively.