首页> 外文期刊>International Journal of Environmental Science and Technology >Slow restoration of soil microbial functions in an Acacia plantation established on degraded land in Thailand.
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Slow restoration of soil microbial functions in an Acacia plantation established on degraded land in Thailand.

机译:在泰国退化土地上建立的金合欢种植园中土壤微生物功能的恢复缓慢。

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摘要

Deforestation diminishes the ecological services that a forest provides (e.g., flood prevention). To restore such services, reforestation is often utilized. The full restoration of the original forest ecosystem, however, can take several decades. The present study was conducted to identify the missing key components for rehabilitation of a degraded plot of land in Thailand on which Acacia trees were planted 18 or 19 years ago. Canopy spectral and soil physicochemical profiles of the Acacia plantation plot showed more advanced rehabilitation than in the soil microbial functions, as represented by soil dehydrogenase activity and community-level physiological profiles, when compared with those of a natural evergreen forest. The slower restoration of the soil microbial functions was thought to: (1) be attributed to the loss of certain microbes that played important roles in the evergreen forest soil, and (2) restrict the restoration of the entire forest ecosystem which was found to be still progressing towards a full restoration of the land's original conditions. Finally, possible measures for further rehabilitation of the ecosystem were discussed.
机译:砍伐森林会减少森林提供的生态服务(例如防洪)。为了恢复这种服务,经常利用重新造林。但是,原始森林生态系统的完全恢复可能需要数十年的时间。进行本研究是为了确定缺少的关键要素,以修复泰国退化土地上18或19年前种植相思树的土地。相较于天然常绿森林,相思人工林地的冠层光谱和土壤理化特征显示出比土壤微生物功能更先进的恢复能力,以土壤脱氢酶活性和群落水平的生理特征为代表。人们认为,土壤微生物功能恢复较慢的原因是:(1)归因于在常绿森林土壤中起重要作用的某些微生物的损失,(2)限制了整个森林生态系统的恢复。仍在朝着完全恢复土地原始状态的方向前进。最后,讨论了进一步恢复生态系统的可能措施。

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