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Dynamics of fine root carbon in Amazonian tropical ecosystems and the contribution of roots to soil respiration

机译:亚马逊热带生态系统中细根碳的动态及其对土壤呼吸的贡献

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摘要

Radiocarbon (C-14) provides a measure of the mean age of carbon (C) in roots, or the time elapsed since the C making up root tissues was fixed from the atmosphere. Radiocarbon signatures of live and dead fine (< 2 mm diameter) roots in two mature Amazon tropical forests are consistent with average ages of 4-11 years (ranging from < 1 to > 40 years). Measurements of C-14 in the structural tissues of roots known to have grown during 2002 demonstrate that new roots are constructed from recent (< 2-year-old) photosynthetic products. High Delta(14)C values in live roots most likely indicate the mean lifetime of the root rather than the isotopic signature of inherited C or C taken up from the soil. Estimates of the mean residence time of C in forest fine roots (inventory divided by loss rate) are substantially shorter (1-3 years) than the age of standing fine root C stocks obtained from radiocarbon (4-11 years). By assuming positively skewed distributions for root ages, we can effectively decouple the mean age of C in live fine roots (measured using C-14) from the rate of C flow through the live root pool, and resolve these apparently disparate estimates of root C dynamics. Explaining the C-14 values in soil pore space CO2, in addition, requires that a portion of the decomposing roots be cycled through soil organic matter pools with decadal turnover time.
机译:放射性碳(C-14)可以衡量根中碳(C)的平均年龄,也可以测量自构成根组织的碳从大气中被固定起经过的时间。在两个成熟的亚马逊热带森林中,活根和死根(直径小于2毫米)的放射性碳特征与4-11岁的平均年龄(<1至> 40岁)一致。对2002年已知已生长的根的结构组织中C-14的测量表明,新的根是从最近(<2岁)的光合作用产品中构建的。活根中的高Delta(14)C值很可能表明根的平均寿命,而不是遗传C或从土壤吸收的C的同位素特征。森林细根中碳的平均停留时间(库存除以损失率)的估算值(1-3年)比从放射性碳中获得的细根碳储备的现存年龄(4-11年)要短得多。通过假设根年龄呈正偏分布,我们可以有效地将活细根中C的平均年龄(使用C-14测量)与流过活根池的C速率解耦,并解决这些明显不同的C根估计动力学。另外,要解释土壤孔隙空间CO2中的C-14值,需要将分解根的一部分循环通过土壤有机质池,并需要数十年的周转时间。

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