| General Information of Factor (ID: FP122) | ||||||||
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| Factor Name | Heat Stress Treatment; CO2 Treatment | |||||||
| Factor Type | Combined Factors; Molecular Regulation; Environmental Conditions | |||||||
| Factor Description | ||||||||
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Plants are often subjected to extreme temperatures, including cold stress and heat stress. Cold and heat stress significantly restrains plants' geographical distribution, growth habits, and productivity. High-temperature-induced shortening of developmental phases reduced light perception over the shortened life cycle and perturbated the processes associated with carbon assimilation and oxidative damage caused by the heat-induced imbalance of photosynthesis and respiration. Under cold stress conditions, plants exhibit various cold-induced physiological and biochemical responses, such as the production of reactive oxygen species (ROS), changes in membrane lipid composition, and alterations in osmolytes. Both cold and heat alter the fluidity of cellular membranes, which can affect the structure and activity of membrane-localized proteins such as Ca2+ channels, thereby triggering Ca2+ influx, a crucial process for inducing temperature-responsive gene expression.
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Elevated CO2 can lead to reallocation of carbon and nitrogen resources among plant organs, and change the secondary metabolites content of plant tissues
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| The Content Variation of Natural Product Induced by This Factor | ||||||||
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| Species Name: Gynostemma pentaphyllum | ||||||||
Species Info
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| Experiment Detail |
The air temperature was controlled at 23/18 ℃ or 28/23 ℃ (day/night). Whilst the CO2 concentration was maintained at 360 or 720 µmol/mol. The temperature and CO2 treatments were randomly assigned in each of the four groups. One G. pentaphyllum plant (5-foliolate) was obtained from Beishan of Jinhua, Zhejiang Province and then planted in Zhejiang Normal University of botany experimental garden. Reproduction of new plants was used by cutting propagation. After 5 years we obtained sufficient plant material for this study. The seedlings were planted in a temperature-controlled greenhouse (24 ℃) from October to December (2014). Prior to treatment in a growth chamber, healthy plants were transplanted into pots (18 cm × 16 cm). The pots were filled with 3 kg of red soil combined with organic fertilizer of peat (19:1, w/w; total of organic matter content is approximately 60 g/kg). 50 plants were moved to each growth chamber. All plants were watered sparingly twice a week with 100 mL of modified Hoagland nutrient solution. The plant samples were evaluated at 60 days after treatment.
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| Factor Function |
Elevated CO2 increased the level of total sugars and gypenoside A, but decreased the total antioxidant capacity and main antioxidant compounds in different organs of G. pentaphyllum. Also, TP content at CT was lower than C. Similarly, TP content of leaves significantly decreased at T compared to CK, with a drop of 25.65%. Furthermore, high temperature and elevated CO2 level significantly decreased the TP contents of leaves and stems. These results suggest that elevated CO2 and increased temperature does not favor accumulation of phenolics in G. pentaphyllum organs.
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| 17-[2,3-dihydroxy-5-(2-methylprop-1-enyl)oxolan-3-yl]-3-[5-hydroxy-3-(3,4,5-trihydroxy-6-methyloxan-2-yl)oxy-4-(3,4,5-trihydroxyoxan-2-yl)oxyoxan-2-yl]oxy-4,4,8,14-tetramethyl-2,3,5,6,7,9,11,12,13,15,16,17-dodecahydro-1H-cyclopenta[a]phenanthrene-10-carbaldehyde | [1] | |||||||
| Factor | Link | Part | Location | NP Content | ||||
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Stem: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 2.2 mg/g dry weight
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Leaf: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 57.11 mg/g dry weight
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Inflorescence: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 113.52 mg/g dry weight
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Stem: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 17.23 mg/g dry weight
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Leaf: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 24.44 mg/g dry weight
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Inflorescence: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 57.25 mg/g dry weight
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Stem: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 0.09 mg/g dry weight
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Leaf: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 15.39 mg/g dry weight
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Inflorescence: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 42.48 mg/g dry weight
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| Kaempferol | [1] | |||||||
| Factor | Link | Part | Location | NP Content | ||||
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Stem: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 0.58 mg/g dry weight
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Leaf: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 36.14 mg/g dry weight
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Inflorescence: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 11.66 mg/g dry weight
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Stem: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 0 mg/g dry weight
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Leaf: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 50.5 mg/g dry weight
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Inflorescence: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 1.21 mg/g dry weight
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Stem: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 3.73 mg/g dry weight
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Leaf: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 34.31 mg/g dry weight
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Inflorescence: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 1.92 mg/g dry weight
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| Myricetin | [1] | |||||||
| Factor | Link | Part | Location | NP Content | ||||
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Stem: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 60.92 mg/g dry weight
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Leaf: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 36.61 mg/g dry weight
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Inflorescence: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 54.26 mg/g dry weight
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Stem: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 56.29 mg/g dry weight
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Leaf: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 3.86 mg/g dry weight
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Inflorescence: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 56.93 mg/g dry weight
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Stem: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 122.84 mg/g dry weight
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Leaf: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 68.72 mg/g dry weight
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Inflorescence: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 60.54 mg/g dry weight
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| Quercetin | [1] | |||||||
| Factor | Link | Part | Location | NP Content | ||||
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Stem: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 50.79 mg/g dry weight
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Inflorescence: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 0.24 mg/g dry weight
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Stem: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 12.79 mg/g dry weight
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Inflorescence: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 51.19 mg/g dry weight
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Stem: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 0.11 mg/g dry weight
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Inflorescence: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 35.99 mg/g dry weight
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| Total Flavonoids | [1] | |||||||
| Factor | Link | Part | Location | NP Content | ||||
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Stem: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 96.65 mg/g dry weight
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Leaf: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 221.65 mg/g dry weight
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Inflorescence: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 76.81 mg/g dry weight
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Stem: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 81.44 mg/g dry weight
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Leaf: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 0.88 mg/g dry weight
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Inflorescence: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 78.82 mg/g dry weight
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Stem: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 46.44 mg/g dry weight
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Leaf: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 323.72 mg/g dry weight
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Inflorescence: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 64.78 mg/g dry weight
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| Total Phenolics | [1] | |||||||
| Factor | Link | Part | Location | NP Content | ||||
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Stem: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 155.85 mg/g dry weight
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Leaf: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 27.85 mg/g dry weight
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Inflorescence: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 4.09 mg/g dry weight
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Stem: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 35.72 mg/g dry weight
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Leaf: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 23.94 mg/g dry weight
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Inflorescence: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 35.15 mg/g dry weight
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Stem: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 3.84 mg/g dry weight
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Leaf: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 24.02 mg/g dry weight
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Inflorescence: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 11.04 mg/g dry weight
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| Total Sugars | [1] | |||||||
| Factor | Link | Part | Location | NP Content | ||||
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Stem: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 45.58 mg/g dry weight
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Leaf: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 52.2 mg/g dry weight
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Inflorescence: Elevated CO2 (23/18 ℃, 720 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 11.8 mg/g dry weight
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Stem: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 98.74 mg/g dry weight
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Leaf: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 34.04 mg/g dry weight
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Inflorescence: Elevated temperature (28/23 ℃, 360 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 25.52 mg/g dry weight
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Stem: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Stem | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 1.89 mg/g dry weight
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Leaf: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Leaf | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 6.38 mg/g dry weight
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Inflorescence: Elevated temperature and CO2 (28/23 ℃, 720 µmol/mol CO2)
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NP Info | Inflorescence | Zhejiang Normal University, Zhejiang Province, China |
NP Content: 2 mg/g dry weight
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| References | ||||||||||||||||||||||||
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| 1 | Effects of elevated CO2 and temperature on Gynostemma pentaphyllum physiology and bioactive compounds | |||||||||||||||||||||||
