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光合产物与生态系统呼吸二氧化碳的δ13C比较及其对季节性气候变化的响应。

Comparisons of delta13C of photosynthetic products and ecosystem respiratory CO2 and their responses to seasonal climate variability.

作者信息

Scartazza Andrea, Mata Catarina, Matteucci Giorgio, Yakir Dan, Moscatello Stefano, Brugnoli Enrico

机构信息

CNR, Istituto di Biologia Agroambientale e Forestale, Via Marconi 2, 05010, Porano (TR), Italy.

出版信息

Oecologia. 2004 Jul;140(2):340-51. doi: 10.1007/s00442-004-1588-1. Epub 2004 May 19.

Abstract

This study investigated the relationship between delta13C of ecosystem components, soluble plant carbohydrates and the isotopic signature of ecosystem respired CO2 (delta13CR) during seasonal changes in soil and atmospheric moisture in a beech (Fagus sylvatica L.) forest in the central Apennine mountains, Italy. Decrease in soil moisture and increase in air vapour pressure deficit during summer correlated with substantial increase in delta13C of leaf and phloem sap soluble sugars. Increases in delta13C of ecosystem respired CO2 were linearly related to increases in phloem sugar delta13C (r2=0.99, P<or=0.001) and leaf sugar delta13C (r2=0.981, P<or=0.01), indicating that a major proportion of ecosystem respired CO2 was derived from recent assimilates. The slopes of the best-fit lines differed significantly (P<or=0.05), however, and were about 0.86 (SE=0.04) for phloem sugars and about 1.63 (SE=0.16) for leaf sugars. Hence, changes in isotopic signature in phloem sugars were transferred to ecosystem respiration in the beech forest, while leaf sugars, with relatively small seasonal changes in delta13C, must have a slower turnover rate or a significant storage component. No significant variation in delta13C was observed in bulk dry matter of various plant and ecosystem components (including leaves, bark, wood, litter and soil organics). The apparent coupling between the delta13C of soluble sugars and ecosystem respiration was associated with large apparent isotopic disequilibria. Values of delta13CR were consistently more depleted by about 4 per thousand relative to phloem sugars, and by about 2 per thousand compared to leaf sugars. Since no combination of the measured pools could produce the observed delta13CR signal over the entire season, a significant isotopic discrimination against 13C might be associated with short-term ecosystem respiration. However, these differences might also be explained by substantial contributions of other not measured carbon pools (e.g., lipids) to ecosystem respiration or contributions linked to differences in footprint area between Keeling plots and carbohydrate sampling. Linking the seasonal and inter-annual variations in carbon isotope composition of carbohydrates and respiratory CO2 should be applicable in carbon cycle models and help the understanding of inter-annual variation in biospheric sink strength.

摘要

本研究调查了意大利亚平宁山脉中部一片山毛榉(Fagus sylvatica L.)森林在土壤和大气湿度季节性变化期间,生态系统组成部分的δ13C、可溶性植物碳水化合物与生态系统呼吸释放的CO2的同位素特征(δ13CR)之间的关系。夏季土壤湿度降低和空气蒸汽压亏缺增加与叶片和韧皮部汁液可溶性糖的δ13C大幅增加相关。生态系统呼吸释放的CO2的δ13C增加与韧皮部糖的δ13C增加呈线性相关(r2 = 0.99,P≤0.001),与叶片糖的δ13C增加也呈线性相关(r2 = 0.981,P≤0.01),这表明生态系统呼吸释放的CO2的很大一部分来自近期的同化产物。然而,最佳拟合线的斜率存在显著差异(P≤0.05),韧皮部糖的斜率约为0.86(标准误 = 0.04),叶片糖的斜率约为1.63(标准误 = 0.16)。因此,韧皮部糖的同位素特征变化传递到了山毛榉森林的生态系统呼吸中,而δ13C季节性变化相对较小的叶片糖,其周转速率一定较慢或具有显著的储存成分。在各种植物和生态系统组成部分(包括叶片、树皮、木材、凋落物和土壤有机物)的干物质总量中未观察到δ13C的显著变化。可溶性糖的δ13C与生态系统呼吸之间明显的耦合与较大的表观同位素不平衡有关。相对于韧皮部糖,δ13CR的值始终低约4‰,相对于叶片糖低约2‰。由于在整个季节中,所测量的库的任何组合都无法产生观测到的δ13CR信号,因此对13C的显著同位素分馏可能与短期生态系统呼吸有关。然而,这些差异也可能由其他未测量的碳库(如脂质)对生态系统呼吸的大量贡献或与基林曲线和碳水化合物采样之间足迹面积差异相关的贡献来解释。将碳水化合物和呼吸性CO2的碳同位素组成的季节性和年际变化联系起来,应适用于碳循环模型,并有助于理解生物圈汇强度的年际变化。

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