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首页> 外文期刊>Journal of Experimental Botany >Assimilation of xylem-transported p#pdC-labelled CO in leaves and branches of sycamore (Platanus occidentalis L.).
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Assimilation of xylem-transported p#pdC-labelled CO in leaves and branches of sycamore (Platanus occidentalis L.).

机译:美国梧桐(Platanus occidentalis L.)的叶片和分支中木质部转运的p#pdC标记的CO被同化。

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Previous reports have shown that CO dissolved in xylem sap in tree stems can move upward in the transpiration stream. To determine the fate of this dissolved CO, the internal transport of respired CO at high concentration from the bole of the tree was simulated by allowing detached young branches of sycamore (Platanus occidentalis L.) to transpire water enriched with a known quantity of p#pdCO in sunlight. Simultaneously, leaf net photosynthesis and CO efflux from woody tissue were measured. Branch and leaf tissues were subsequently analysed for p#pdC content to determine the quantity of transported p#pdCO label that was fixed. Treatment branches assimilated an average of 35% (SE=2.4) of the p#pdCO label taken up in the treatment water. The majority was fixed in the woody tissue of the branches, with smaller amounts fixed in the leaves and petioles. Overall, the fixation of internally transported p#pdCO label by woody tissues averaged 6% of the assimilation of CO from the atmosphere by the leaves. Woody tissue assimilation rates calculated from measurements of p#pdC differed from rates calculated from measurements of CO efflux in the lower branch but not in the upper branch. The results of this study showed unequivocally that CO transported in xylem sap can be fixed in photosynthetic cells in the leaves and branches of sycamore trees and provided evidence that recycling of xylem-transported CO may be an important means by which trees reduce the carbon cost of respiration.
机译:以前的报道表明,溶解在树茎木质部汁液中的CO可以在蒸腾流中向上移动。为了确定这种溶解的一氧化碳的结局,通过允许美国梧桐的年轻幼枝(Platanus occidentalis L.)脱落的幼枝蒸腾富含已知数量p#的水,来模拟从树的树干中高浓度呼吸的CO的内部运输。 pdCO在阳光下。同时,测量了木质组织的叶片净光合作用和CO外排。随后分析分支和叶组织的p#pdC含量,以确定固定的转运p#pdCO标签的数量。处理分支平均吸收了处理水中吸收的p#pdCO标签的35%(SE = 2.4)。大多数固定在树枝的木质组织中,少量固定在叶子和叶柄中。总体而言,木质组织对内部运输的p#pdCO标签的固定平均为叶片从大气中吸收的CO的6%。根据p#pdC的测量值计算得出的木质组织同化率与根据下部分支的CO外向测量值计算出的速率不同,但与上部分支相同。这项研究的结果明确表明,木质部汁液中运输的一氧化碳可以固定在梧桐树叶片和树枝的光合细胞中,并提供证据表明木质部运输的一氧化碳的循环利用可能是降低树木碳排放成本的重要手段。呼吸。

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