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Intramolecular 13C analysis of tree rings provides multiple plant ecophysiology signals covering decades

机译:年轮的分子内13C分析提供了涵盖数十年的多种植物生态生理信号

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摘要

Measurements of carbon isotope contents of plant organic matter provide important information in diverse fields such as plant breeding, ecophysiology, biogeochemistry and paleoclimatology. They are currently based on 13C/12C ratios of specific, whole metabolites, but we show here that intramolecular ratios provide higher resolution information. In the glucose units of tree-ring cellulose of 12 tree species, we detected large differences in 13C/12C ratios (>10‰) among carbon atoms, which provide isotopically distinct inputs to major global C pools, including wood and soil organic matter. Thus, considering position-specific differences can improve characterisation of soil-to-atmosphere carbon fluxes and soil metabolism. In a Pinus nigra tree-ring archive formed from 1961 to 1995, we found novel 13C signals, and show that intramolecular analysis enables more comprehensive and precise signal extraction from tree rings, and thus higher resolution reconstruction of plants’ responses to climate change. Moreover, we propose an ecophysiological mechanism for the introduction of a 13C signal, which links an environmental shift to the triggered metabolic shift and its intramolecular 13C signature. In conclusion, intramolecular 13C analyses can provide valuable new information about long-term metabolic dynamics for numerous applications.
机译:植物有机物碳同位素含量的测量为植物育种,生态生理,生物地球化学和古气候学等各个领域提供了重要信息。它们当前基于特定的完整代谢物的 13 C / 12 C比率,但是在此我们显示分子内比率提供了更高的分辨率信息。在12个树种的树环纤维素的葡萄糖单位中,我们检测到碳原子之间的 13 C / 12 C比(> 10‰)存在较大差异,这提供了对主要的全球碳库的同位素截然不同的输入,包括木材和土壤有机质。因此,考虑特定位置的差异可以改善对土壤至大气的碳通量和土壤代谢的表征。在1961年至1995年形成的黑松树年轮档案中,我们发现了新颖的 13 C信号,并表明分子内分析可以从树年轮中提取更全面,更精确的信号,从而可以更高分辨率地重建树年轮。植物对气候变化的反应。此外,我们提出了引入 13 C信号的生态生理机制,该信号将环境变化与触发的代谢变化及其分子内的 13 C信号联系起来。总之,分子内 13 C分析可以为许多应用提供有关长期代谢动力学的有价值的新信息。

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