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The magnitude of diurnal variation in carbon isotopic composition of leaf dark respired CO2 correlates with the difference between delta C-13 of leaf and root material

机译:叶片暗呼吸的二氧化碳碳同位素组成的日变化幅度与叶片和根系物质的δC-13差异有关。

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Spatial and temporal variations in delta C-13 of dark respired CO2 (delta C-13(res)) and total and water-soluble organic matter (WSOM) were analysed in four plant species. There was an increase in delta C-13(res) over the light period (measured 5 min after darkening) in leaves, whereas no distinct diurnal pattern was detected in roots. Furthermore, large differences in delta C-13(res) were found along the plant axis during day time. The amount of daily delta C-13(res) enrichment in leaves relative to the putative substrate (WSOM) varied largely between species (3.2-15.9%), probably due to different carbon allocation strategies. Positional pyruvate labelling was used to detect whether variations in delta C-13(res) were related to changes in the relative activity of pyruvate dehydrogenase (PDH) and Krebs cycle (KC). The results indicate that one reason for the increase in delta C-13(res) in leaves during daylight is an increasing carbon flux through the PDH relative to the KC. Labelling experiments revealed no clear diurnal variations in PDH and KC activity in roots. Further, we found new evidence that the fractionation process that leads to the diurnal delta C-13 increase in leaf dark respiration is related to the well known C-13 depletion of leaf material compared with heterotrophic tissues.
机译:分析了四种植物中暗呼吸的CO2的δC-13(δC-13(res))以及总有机物和水溶性有机物(WSOM)的时空变化。在光照期间(变黑后5分钟测量),叶片中的C-13增量增加,而在根部未检测到明显的昼夜模式。此外,白天在植物轴上发现的δC-13(res)差异很大。相对于推定的底物(WSOM),叶片中每日增量C-13(res)富集的量在物种之间差异很大(3.2-15.9%),这可能是由于碳分配策略不同所致。使用位置丙酮酸标记来检测C-13(res)的变化是否与丙酮酸脱氢酶(PDH)和克雷布斯循环(KC)的相对活性的变化有关。结果表明,日间叶片中C-13(res)增量的原因之一是相对于KC,通过PDH的碳通量增加。标记实验表明根系中PDH和KC活性没有明显的昼夜变化。此外,我们发现新证据表明,与异养组织相比,导致叶暗呼吸的昼夜增量C-13增加的分级分离过程与众所周知的叶片C-13耗竭有关。

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