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首页> 外文期刊>Tree Physiology >Stable isotopes in tree rings: towards a mechanistic understanding of isotope fractionation and mixing processes from the leaves to the wood
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Stable isotopes in tree rings: towards a mechanistic understanding of isotope fractionation and mixing processes from the leaves to the wood

机译:树木年轮中的稳定同位素:从叶子到木材的同位素分馏和混合过程的机械理解

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摘要

The mechanistic understanding of isotope fractionation processes is increasing but we still lack detailed knowledge of the processes that determine the isotopic composition of the tree-ring archive over the long term. Especially with regard to the path from leaf photosynthate production to wood formation, post-assimilation fractionations/processes might cause at least a partial decoupling between the leaf isotope signals that record processes such as stomatal conductance, transpiration and photosynthesis, and the wood or cellulose signals that are stored in the paleophysiological record. In this review, we start from the rather well understood processes at the leaf level such as photosynthetic carbon isotope fractionation, leaf water evaporative isotope enrichment and the issue of the isotopic composition of inorganic sources (CO2 and H2O), though we focus on the less explored 'downstream' processes related to metabolism and transport. We further summarize the roles of cellulose and lignin as important chemical constituents of wood, and the processes that determine the transfer of photosynthate (sucrose) and associated isotopic signals to wood production. We cover the broad topics of post-carboxylation carbon isotope fractionation and of the exchange of organic oxygen with water within the tree. In two case studies, we assess the transfer of carbon and oxygen isotopic signals from leaves to tree rings. Finally we address the issue of different temporal scales and link isotope fractionation at the shorter time scale for processes in the leaf to the isotopic ratio as recorded across longer time scales of the tree-ring archive
机译:对同位素分馏过程的机械理解正在增加,但从长远来看,我们仍然缺乏确定树环档案的同位素组成的过程的详细知识。特别是在从叶片光合产物生产到木材形成的路径方面,同化后的分级分离/过程可能会导致叶片同位素信号之间的至少部分解耦,该信号记录了气孔电导,蒸腾和光合作用等过程,以及木材或纤维素信号储存在古生理记录中。在这篇综述中,我们从叶片水平上相当广为人知的过程开始,例如光合碳同位素分馏,叶片水蒸发同位素富集以及无机源(CO2和H2O)的同位素组成问题,尽管我们只关注较少的过程。探索了与代谢和运输有关的“下游”过程。我们进一步总结了纤维素和木质素作为木材重要化学成分的作用,以及确定光合产物(蔗糖)和相关同位素信号向木材生产转移的过程。我们涵盖了羧化后碳同位素分馏以及树内水与有机氧交换的广泛主题。在两个案例研究中,我们评估了碳和氧同位素信号从叶到树环的转移。最后,我们解决了不同时间尺度的问题,并在较短的时间尺度上将同位素分馏用于叶片中的过程与同位素比率的比较,这在较长的时间范围内被记录下来。

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