热带溪流叶片分解的当地因素

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-09-17 DOI:10.1016/j.limno.2024.126202
Guilherme Sena , Marcos Callisto , Renan de Souza Rezende , José F. Gonçalves Júnior
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引用次数: 0

摘要

河岸森林的植物为淡水溪流生态系统提供了丰富的枯叶,支撑着以碎屑为基础的食物网。桉树是一种外来物种,分布在整个新热带地区,随着天然河岸林越来越多地被桉树种植园取代,叶片分解这一关键的生态系统过程也随之改变。我们对位于塞拉多(Cerrado)和大西洋森林生物群落的两种不同热带参考条件溪流中具有不同物理和化学特征(性状)的本地和外来树叶物种的分解情况进行了评估。我们对以下假设进行了检验:无论树叶的来源(本地或非本地物种)如何,营养成分较高、难降解化合物较少的落叶都具有较高的腐烂率。在两条溪流中,桉树叶片的分解速度均快于本地物种海棠(Miconia chartacea)。叶片分解受当地特征(与环境有关)和大型分解者群落的影响,但与枯落物固有的物理和化学质量的关系更为密切。在大西洋森林溪流中,E. camaldulensis 的叶片分解率较高,因为该溪流的水流量最大,进一步加速了叶片的分解。我们的研究结果表明,由于 camaldulensis 的固有物理和化学特性,与本地热带物种相比,它的分解速度更快,这一点可以从溪流中得到证明。
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Local factors drive leaf breakdown in tropical streams

Plants of riparian forests provide abundant dead leaves for freshwater stream ecosystems which support detritus-based food webs. The increased replacement from natural riparian forests to Eucalyptus plantations, an exotic species distributed throughout the neotropic landscapes, alters leaf breakdown as a key ecosystem process. We evaluate the breakdown of native and exotic leaf species with distinct physical and chemical characteristics (traits) in two different tropical reference condition streams located in Cerrado and Atlantic Forest biomes. We tested the hypothesis that regardless of the leaves’ origin (native or non-native species), leaf litter with higher nutrients and less recalcitrant compounds has higher decay rates. Eucalyptus camaldulensis leaf breakdown was faster than the native species Miconia chartacea in both streams. Leaf breakdown was driven by local characteristics (context dependent) and the macrodecomposer community, with more intensity to the litter's intrinsic physical and chemical quality. The higher leaf breakdown of E. camaldulensis was evidenced in the Atlantic Forest stream, that with the most increased water flow, further accelerating the leaf breakdown. Our findings indicate that due to the innate physical and chemical characteristics of E. camaldulensis, its decomposition occurs at a faster rate compared to native tropical species, as evidenced by the stream flows.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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