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Seasonal variation of soil respiration rates in a secondary forest and agroforestry systems

机译:次生森林和农林业系统中土壤呼吸速率的季节性变化

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Agroforestry systems are widely practiced in tropical forests to recover degraded and deforested areas and also to balance the global carbon budget. However, our understanding of difference in soil respiration rates between agroforestry and natural forest systems is very limited. This study compared the seasonal variations in soil respiration rates in relation to fine root biomass, microbial biomass, and soil organic carbon between a secondary forest and two agroforestry systems dominated by Gmelina arborea and Dipterocarps in the Philippines during the dry and the wet seasons. The secondary forest had significantly higher (p < 0.05) soil respiration rate, fine root biomass and soil organic matter than the agroforestry systems in the dry season. However, in the wet season, soil respiration and soil organic matter in the G. arborea dominated agroforestry system were as high as in the secondary forest. Whereas soil respiration was generally higher in the wet than in the dry season, there were no differences in fine root biomass, microbial biomass and soil organic matter between the two seasons. Soil respiration rate correlated positively and significantly with fine root biomass, microbial biomass, and soil organic C in all three sites. The results of this study indicate, to some degree, that different land use management practices have different effects on fine root biomass, microbial biomass and soil organic C which may affect soil respiration as well. Therefore, when introducing agroforestry system, a proper choice of species and management techniques which are similar to natural forest is recommended.
机译:在热带森林中广泛采用农林业系统来恢复退化和砍伐森林的地区,并平衡全球碳预算。但是,我们对农林业与天然林系统之间土壤呼吸速率差异的了解非常有限。这项研究比较了在干旱和潮湿季节,菲律宾的次生林和两种以Gmelina arborea和Dipterocarps为主的农林业系统之间,土壤呼吸速率与细根生物量,微生物生物量和土壤有机碳的季节性变化。与旱季相比,次生林的土壤呼吸速率,细根生物量和土壤有机质均显着高于(p <0.05)。然而,在雨季,以棉铃虫为主导的农林业系统的土壤呼吸和土壤有机质与次生林一样高。湿季土壤呼吸通常高于旱季,而两个季节之间的细根生物量,微生物生物量和土壤有机质没有差异。在这三个地点,土壤呼吸速率均与细根生物量,微生物生物量和土壤有机碳呈显着正相关。这项研究的结果在一定程度上表明,不同的土地利用管理实践对细根生物量,微生物生物量和土壤有机碳有不同的影响,这也可能影响土壤呼吸。因此,在引入农林业系统时,建议适当选择与天然林相似的物种和管理技术。

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