锰是否会影响夏威夷降雨梯度下草叶凋落物的分解?

IF 2.3 2区 环境科学与生态学 Q2 ECOLOGY Oecologia Pub Date : 2024-12-13 DOI:10.1007/s00442-024-05638-4
Elizabeth L Paulus, Peter M Vitousek
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引用次数: 0

摘要

植物凋落物是一个定义明确的有机质库,其中锰对分解(分解速率和最终转移到土壤有机质的化合物混合物)的影响已在温带森林中得到明确证明。然而,在草地上没有类似的研究,叶面Mn与土壤Mn对凋落物分解的影响尚不清楚。采用5个月和12个月的野外试验,以及10个月的室内试验,对夏威夷岛Kohala降雨梯度下不同叶片和土壤Mn丰度、单一植物(Pennisetum clandestinum)主导初级生产和凋落物库的凋落物分解进行了研究。对凋落物的化学成像分析表明,Mn2+在草凋落物分解过程中被氧化为Mn3+和Mn4+,这是mn驱动凋落物氧化的标志。然而,这些转化和Mn丰度并不能预测分解导致的更大凋落物质量损失。这些观察结果表明,锰对生态系统碳循环的重要性并不仅仅取决于金属的丰度和可用性。
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Does manganese influence grass litter decomposition on a Hawaiian rainfall gradient?

Plant litter is a well-defined pool of organic matter (OM) in which the influence of manganese (Mn) on decomposition (both decomposition rate and the mix of compounds ultimately transferred to soil OM) has been clearly demonstrated in temperate forests. However, no similar study exists on grasslands and the effect of foliar Mn versus soil-derived Mn on litter decomposition is poorly known. We used a 5-month and 12-month field, and 10-month laboratory experiments to evaluate litter decomposition on the Kohala rainfall gradient (Island of Hawai'i) in areas with different foliar and soil Mn abundances, and on which a single plant species (Pennisetum clandestinum) dominates primary production and the litter pool. The chemical imaging analyses of decomposed litter revealed that Mn2+ oxidized to Mn3+ and Mn4+ on grass litter during decompositions-hallmarks of Mn-driven litter oxidation. However, these transformations and Mn abundance did not predict greater litter mass loss through decomposition. These observations demonstrate that the importance of Mn to an ecosystem's C cycle does not rely solely on the metal's abundance and availability.

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来源期刊
Oecologia
Oecologia 环境科学-生态学
CiteScore
5.10
自引率
0.00%
发文量
192
审稿时长
5.3 months
期刊介绍: Oecologia publishes innovative ecological research of international interest. We seek reviews, advances in methodology, and original contributions, emphasizing the following areas: Population ecology, Plant-microbe-animal interactions, Ecosystem ecology, Community ecology, Global change ecology, Conservation ecology, Behavioral ecology and Physiological Ecology. In general, studies that are purely descriptive, mathematical, documentary, and/or natural history will not be considered.
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