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首页> 外文期刊>Journal of Plant Research >Nitrogen dynamics differed among the first six root branch orders of Fraxinus mandshurica and Larix gmelinii during short-term decomposition
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Nitrogen dynamics differed among the first six root branch orders of Fraxinus mandshurica and Larix gmelinii during short-term decomposition

机译:短时分解过程中水曲柳和落叶松前六个根分支顺序的氮动力学差异

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摘要

Fine root (<2 mm) decomposition provides a substantial amount of available nitrogen (N) that sustains plant growth. The N release pattern during litter decomposition is generally controlled by initial N concentrations or C/N. Because root branch order and mycorrhizal colonization (related with branch order) are both highly related with different initial chemistry, a hypothesis was proposed that N dynamics during root decomposition varied among different branch orders. Using the litterbag method, decomposition of the first six order roots for Fraxinus mandshurica (an arbuscular mycorrhizal species) and Larix gmelinii (an ectomycorrhizal species) was studied in Northeast China during a 513-day period. Results showed a similar pattern for the two species with contrasting mycorrhizal type: lower-order roots (the lateral root tips), which had an initial C/N of 17–21, continuously released N without any immobilization and maintained a consistently low C/N (<20), whereas higher-order roots, which had an initial C/N of 28–48, periodically immobilized N, leading to a declining C/N over time. In addition, the magnitude of N dynamics is different between species for lower-order roots, but no different for higher-order roots. These results suggest that fine root N dynamics are heterogeneous among branch orders and that species-specific differences depend on the behavior of lower-order roots.
机译:细根(<2毫米)分解提供了可维持植物生长的大量可用氮(N)。凋落物分解过程中的氮释放模式通常由初始氮浓度或C / N控制。由于根的分支顺序和菌根定殖(与分支顺序相关)都与不同的初始化学高度相关,因此提出了一个假设,即根分解过程中的N动态在不同的分支顺序之间变化。使用垃圾袋方法,在中国东北地区进行了513天的研究,研究了水曲柳(一种丛枝菌根物种)和落叶松(一种落叶生菌根物种)的前六个阶根的分解。结果表明,两种菌根类型不同的模式相似:低级根(侧根尖)的初始C / N为17-21,连续释放N而没有任何固定,并始终保持较低的C / N(<20),而初始C / N为28-48的高阶根周期性地固定N,导致C / N随时间下降。另外,低阶根的物种间N动态的大小不同,而高阶根的物种之间N动态的大小没有差异。这些结果表明,细根氮动力学在分支顺序之间是异质的,并且物种特异性差异取决于低序根的行为。

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