...
首页> 外文期刊>PLoS One >Effects of initial microbial biomass abundance on respiration during pine litter decomposition
【24h】

Effects of initial microbial biomass abundance on respiration during pine litter decomposition

机译:初始微生物生物量丰度对松木凋落物分解期间呼吸的影响

获取原文
           

摘要

Microbial biomass is increasingly used to predict respiration in soil organic carbon (SOC) models. Its increased use combined with the difficulty of accurately measuring this variable points a need to directly assess the importance of microbial biomass abundance for carbon (C) cycling. To test the hypothesis that the initial microbial biomass abundance (i.e. biomass abundance on new plant litter) is a strong driver of plant litter C cycling, we manipulated biomass abundance by 10 and 100-fold dilution and composition using 12 source communities on sterile pine litter and measured respiration in microcosms for 30 days. In the first two days of microbial growth on fresh litter, a 100-fold difference in initial biomass abundance caused an average difference in respiration of nearly 300%, but the effect rapidly declined to less than 30% in 10 days and to 14% in 30 days. Parallel simulations with a soil carbon model, SOMIC 1.0, also predicted a 14% difference over 30 days, consistent with the experimental results. Model simulations predicted convergence of cumulative CO 2 to within 10% in three months and within 4% in three years. Rapid microbial growth, evidenced by appearance of visible microbial mats on the litter during the first week of incubation, likely attenuates the effects of large initial differences in biomass abundance. In contrast, the persistence of source community as an explanatory factor in driving differences in respiration across microcosms supports the importance of microbial composition in C cycling. Overall, the results suggest that the initial abundance of microbial biomass on litter is a weak driver of C flux from litter decomposition over long timescales (months to years) when litter communities have equal nutrient availability. By extension, slight variation in the timing of microbial dispersal to fresh litter is likely to be a minor factor in long-term C flux. Importance Microbial biomass is one of the most common microbial parameters used in land carbon (C) cycle models, however, it is notoriously difficult to measure accurately. To understand the consequences of mismeasurement, as well as the broader importance of microbial biomass abundance as a direct driver of ecological phenomena, greater quantitative understanding of the role of microbial biomass abundance in environmental processes is needed. Using microcosms, we manipulated the initial biomass of numerous microbial communities across a 100-fold range and measured effects on CO 2 production during plant litter decomposition. We found that the effects of initial biomass abundance on CO 2 production was largely attenuated within a week, while the effects of community type remained significant over the course of the experiment. Overall, our results suggest that initial microbial biomass abundance in litter decomposition within an ecosystem is a weak driver of long-term C cycling dynamics.
机译:微生物生物量越来越多地用于预测土壤有机碳(SOC)模型的呼吸。随着难以准确测量这种变量的难度,它增加了,需要直接评估微生物生物量丰富对碳(C)循环的重要性。为了测试初始微生物生物量丰度(即新植物垃圾上的生物量丰度)是植物垃圾C循环的强大驱动器,我们在无菌松树垃圾上操纵10和100倍的稀释和组合物的生物质丰富和组合物并测量微观呼吸30天。在新鲜垃圾上的前两天的微生物生长中,初始生物质丰度的100倍差异导致近300%的呼吸差异,但效果在10天内迅速下降至少于30%,达到14%至14% 30天。平行模拟具有土壤碳模型,Somic 1.0,还预测了30天内的14%,与实验结果一致。模型模拟预测三个月内累积二氧化碳的收敛到10%,三年内的4%以内。快速微生物生长,通过在孵化的第一周内通过垃圾上的可见微生物垫的外观证明,可能衰减了生物量大量的大初始差异的影响。相比之下,源社区作为跨微科学的呼吸差异的解释性因素的持久性支持微生物组合物在C循环中的重要性。总的来说,结果表明,当垃圾社区具有相同的营养可用性时,垃圾上的微生物生物量的初始化微生物生物量的微生物生物量的弱驾驶员来自垃圾分解(月到几年)。通过延伸,微生物分散时间对新鲜垃圾的微小变化可能是长期C通量的次要因素。重要性微生物生物量是陆碳(C)循环模型中最常见的微生物参数之一,然而,难以准确地测量。为了了解不索收的后果,以及微生物生物量大量作为生态现象的直接驾驶员的更广泛,需要对微生物生物量丰富在环境过程中的作用进行更大的定量理解。使用微观体,我们在植物凋落物分解期间操纵跨越100倍范围的微生物群体的初始生物量,并测量对CO 2产生的影响。我们发现,初始生物质丰富对CO 2生产的影响在很大程度上在一周内衰减,而社区类型的影响在​​实验过程中仍然显着。总体而言,我们的研究结果表明,生态系统内凋落物分解中的初始微生物生物量丰富是长期C循环动力学的弱驱动因素。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号