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Qualitative Distinction of Autotrophic and Heterotrophic Processes at the Leaf Level by Means of Triple Stable Isotope (C–O–H) Patterns

机译:利用三重稳定同位素(C–O–H)模式在叶片水平上对自养和异养过程进行定性区分

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摘要

Foliar samples were harvested from two oaks, a beech, and a yew at the same site in order to trace the development of the leaves over an entire vegetation season. Cellulose yield and stable isotopic compositions (δ13C, δ18O, and δD) were analyzed on leaf cellulose. All parameters unequivocally define a juvenile and a mature period in the foliar expansion of each species. The accompanying shifts of the δ13C-values are in agreement with the transition from remobilized carbohydrates (juvenile period), to current photosynthates (mature phase). While the opponent seasonal trends of δ18O of blade and vein cellulose are in perfect agreement with the state-of-art mechanistic understanding, the lack of this discrepancy for δD, documented for the first time, is unexpected. For example, the offset range of 18 permil (oak veins) to 57 permil (oak blades) in δD may represent a process driven shift from autotrophic to heterotrophic processes. The shared pattern between blade and vein found for both oak and beech suggests an overwhelming metabolic isotope effect on δD that might be accompanied by proton transfer linked to the Calvin-cycle. These results provide strong evidence that hydrogen and oxygen are under different biochemical controls even at the leaf level.
机译:从同一地点的两棵橡树,山毛榉和紫杉中采集叶面样品,以追踪整个植被季节叶片的发育情况。在叶纤维素上分析纤维素的产量和稳定的同位素组成(δ13C,δ18O和δD)。所有参数明确地定义了每个物种的叶面扩张的幼年期和成熟期。伴随的δ13C值变化与从重新固定的碳水化合物(幼年期)到当前的光合产物(成熟期)的过渡一致。尽管对手的叶片和静脉纤维素的δ18O季节性趋势与最新的机械理解完全吻合,但首次证明没有这种δD的差异是出乎意料的。例如,δD中18 permil(橡树脉)到57 permil(橡树叶片)的偏移范围可能表示过程驱动的从自养过程向异养过程的转变。橡树和山毛榉的叶片和静脉之间共有模式,这表明对δD具有压倒性的代谢同位素效应,可能伴随着与加尔文循环有关的质子转移。这些结果提供了强有力的证据,证明即使在叶片水平上,氢和氧也处于不同的生化控制之下。

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