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Lignin content and chemical characteristics in maize and wheat vary between plant organs and growth stages: consequences for assessing lignin dynamics in soil

机译:玉米和小麦中木质素的含量和化学特性在植物器官和生长期之间有所不同:评估土壤中木质素动态的结果

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摘要

Assessing lignin turnover in soil on the basis of a 13C natural abundance labeling approach relies on the assumption that chemical characteristics of labeled and control plant inputs are similar and that the 13C content difference between labeled and control plant inputs is constant within the plant parts. We analyzed lignin in soils, roots, stems and leaves of wheat and maize at different stages of growth using the cupric oxide oxidation method. In both plants, lignin concentrations increased with growth, particularly during grain filling. Maize contained more cinnamyl moieties than wheat. Roots had higher lignin contents (especially cinnamyl moieties) than stems and leaves, and seemed to contribute more to the total soil lignin than the aboveground parts. The isotopic differences (à à13C) of lignin phenols were not significantly different (p > 0.05) between plant organs, confirming assumptions underlying the natural abundance 13C labeling approach. Our data show that lignin content and phenol distribution can vary between plant organs and with the time of harvest. Consequently, the amount of annual lignin input may vary as a function of root amount and harvest date, and thus can affect the calculated apparent turnover times of lignin in natural abundance 13C labeling experiments.
机译:根据13 C自然丰度标签方法评估土壤中的木质素转化率,是基于以下假设:标记植物和对照植物输入的化学特性相似,并且标记植物和对照植物输入之间的13 C含量差异在植物部位是恒定的。我们使用氧化铜氧化法分析了小麦和玉米在不同生长阶段的土壤,根,茎和叶中的木质素。在这两种植物中,木质​​素浓度都随着生长而增加,特别是在籽粒灌浆过程中。玉米比小麦含有更多的肉桂基部分。根部的木质素含量(尤其是肉桂基部分)高于茎和叶,并且似乎比地上部分对土壤总木质素的贡献更大。木质素酚的同位素差异(à13C)在植物器官之间无显着差异(p> 0.05),证实了自然丰度13 C标记方法的基础假设。我们的数据表明,木质素含量和苯酚分布在植物器官之间以及收获时会有所不同。因此,木质素的年度输入量可能会随根数和收获日期的变化而变化,因此会影响自然丰度13C标记实验中木质素的表观周转时间。

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