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首页> 外文期刊>Ecosystems >Plant communities, soil microorganisms, and soil carbon cycling: does altering the world belowground matter to ecosystem functioning?
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Plant communities, soil microorganisms, and soil carbon cycling: does altering the world belowground matter to ecosystem functioning?

机译:植物群落,土壤微生物和土壤碳循环:将地下物质改变到生态系统功能中吗?

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Soil microorganisms mediate many critical ecosystem processes. Little is known, however, about the factors that determine soil microbial community composition, and whether microbial community composition influences process rates. Here, we investigated whether aboveground plant diversity affects soil microbial community composition, and whether differences in microbial communities in turn affect ecosystem process rates. Using an experimental system at La Selva Biological Station, Costa Rica, we found that plant diversity (plots contained 1, 3, 5, or > 25 plant species) had a significant effect on microbial community composition (as determined by phospholipid fatty acid analysis). The different microbial communities had significantly different respiration responses to 24 labile carbon compounds. We then tested whether these differences in microbial composition and catabolic capabilities were indicative of the ability of distinct microbial communities to decompose different types of litter in a fully factorial laboratory litter transplant experiment. Both microbial biomass and microbial community composition appeared to play a role in litter decomposition rates. Our work suggests, however, that the more important mechanism through which changes in plant diversity affect soil microbial communities and their carbon cycling activities may be through alterations in their abundance rather than their community composition..
机译:土壤微生物介导许多关键的生态系统过程。然而,关于决定土壤微生物群落组成的因素以及微生物群落组成是否影响加工速率的知之甚少。在这里,我们调查了地上植物多样性是否会影响土壤微生物群落组成,以及微生物群落的差异是否反过来又会影响生态系统进程速率。使用哥斯达黎加拉塞尔瓦生物站的实验系统,我们发现植物多样性(图谱包含1、3、5或> 25种植物)对微生物群落组成有显着影响(通过磷脂脂肪酸分析确定) 。不同的微生物群落对24种不稳定的碳化合物的呼吸反应差异显着。然后,我们测试了微生物组成和分解代谢能力的这些差异是否表明了在完全因子实验室垃圾移植实验中不同微生物群落分解不同类型垃圾的能力。微生物生物量和微生物群落组成似乎都在凋落物分解速率中起作用。然而,我们的工作表明,植物多样性变化影响土壤微生物群落及其碳循环活动的更重要机制可能是通过改变其丰度而不是改变其群落组成。

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