CO2, as a greenhouse gas, is absorbed by and released from seawater, depending on the difference of its partial pressure between the air and the seawater. Increased atmospheric CO2 concentration due to industrial acti...
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CO2, as a greenhouse gas, is absorbed by and released from seawater, depending on the difference of its partial pressure between the air and the seawater. Increased atmospheric CO2 concentration due to industrial activities is known to have enhanced the process of CO2 dissolution
Deletion of THYLAKOID FORMATION 1 (THF1) gene results in variegated leaves, where chloroplast development is impaired in yellow sectors while appears normal in green sectors. Previous studies suggested that occurrence...
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Deletion of THYLAKOID FORMATION 1 (THF1) gene results in variegated leaves, where chloroplast development is impaired in yellow sectors while appears normal in green sectors. Previous studies suggested that occurrence of variegated leaves was not due to problems in
THF1 (Thylakoid Formation 1) is conserved in all oxygenic organisms. The null mutant thf1 exhibits yellow cotyledons, variegated leaves and slower growth rate. The previous studies have shown that THF1 is involved in ...
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THF1 (Thylakoid Formation 1) is conserved in all oxygenic organisms. The null mutant thf1 exhibits yellow cotyledons, variegated leaves and slower growth rate. The previous studies have shown that THF1 is involved in thylakoid membrane formation and photosynthetic complex II. In
When P700, the special chlorophyll (Chl) pair in Photosystem I (PS I), undergoes photo-oxidation, its absorbance at 810 nm increases. We utilized this near-infra-red signal (reference wavelength 870 nm) to quantify ph...
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When P700, the special chlorophyll (Chl) pair in Photosystem I (PS I), undergoes photo-oxidation, its absorbance at 810 nm increases. We utilized this near-infra-red signal (reference wavelength 870 nm) to quantify photosynthetic electron flow in leaves in a number of conditions.
Marine photosynthesis drives oceanic biological CO2 pump to absorb CO2 from the atmosphere, which sinks more than one third of the industry-originated CO2 into the ocean. Increasing atmospheric CO2 and subsequent rise...
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Marine photosynthesis drives oceanic biological CO2 pump to absorb CO2 from the atmosphere, which sinks more than one third of the industry-originated CO2 into the ocean. Increasing atmospheric CO2 and subsequent rise of pCO2 in seawater, altering the carbonate system and related
The involvement of the heterotrimeric G-protein signaling pathway in chloroplast development has been demonstrated only by pharmaceutical evidence. In contrast, G-protein knockout mutants have no phenotypic defect in ...
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The involvement of the heterotrimeric G-protein signaling pathway in chloroplast development has been demonstrated only by pharmaceutical evidence. In contrast, G-protein knockout mutants have no phenotypic defect in chloroplast development at all. Thus, whether the G-protein plays a
<正>Intensive agricultural activities lead to an increase reduced nitrogen concentration in the atmosphere. It is estimated that nitrogen deposition from the atmosphere (NH3) linked to human activities can reach l...
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<正>Intensive agricultural activities lead to an increase reduced nitrogen concentration in the atmosphere. It is estimated that nitrogen deposition from the atmosphere (NH3) linked to human activities can reach level as high as 50 kg·ha-1·yr-1 in some parts of Europe. This additional
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