首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Dynamics in the bacterial community-level physiological profiles and hydrological characteristics of constructed wetland mesocosms during start-up
【24h】

Dynamics in the bacterial community-level physiological profiles and hydrological characteristics of constructed wetland mesocosms during start-up

机译:启动过程中人工湿地介体的细菌群落水平生理特征和水文特征的动态

获取原文
获取原文并翻译 | 示例
           

摘要

The objective of this work was to study the effect of plant presence (Phragmites australis) and inoculant origin on wetland mesocosm start-up dynamics. Eight mesocosms were studied based on a duplicated 22 factorial design tracking bacterial community and hydrological changes during an 8 month start-up period. The mesocosms were characterized in terms of their hydrological character based on evapotran-spiration (ET), porosity, and a dispersion coefficient. The microbiological regime was characterized using a microbial activity measure and community-level physiological profiling (CLPP) employing BIOLOG~(TM) ECO plates. CLPP-related indices such as substrate richness, substrate diversity, over-all community profile, and community divergence are also presented. It was found that mesocosm porosities decreased over time as a result of media-related biofilm development. This biofilm development also contributed to a substantial increase in the dispersion coefficient in the mesocosms over the start-up period. Dispersion coefficients in planted systems reached values of ~50-55 cm~2/min whereas in the unplanted systems values of ~30-35 cm~2/min were observed. Bacterial community divergence in the mesocosms was quantified using a Euclidean-based divergence metric. All mesocosms showed a sharp increase in community divergence until day 75, at which point a steady state was reached: The interstitial communities were also characterized in terms of similarity based on the experimental design treatments. Four stages of mesocosm development were identified that can be described by an initial community state based on the origins of the initial inoculum [days 0-6]; a dynamic period where adjustments and shifts in the bacterial community occurred in all mesocosms [days 7-26]; a period where all interstitial CLPPs were quite similar [days 27-73]; and finally a shift towards unplanted and planted mesocosm CLPP groupings [days 74-232].
机译:这项工作的目的是研究植物的存在(芦苇)和接种源对湿地中观世界启动动态的影响。基于重复的22因子设计研究了8个中观,在8个月的启动期内跟踪细菌群落和水文变化。中膜的特征在于其基于蒸发蒸腾(ET),孔隙度和分散系数的水文特征。使用微生物活性测量和采用BIOLOGTM ECO板的社区水平生理概况分析(CLPP)表征微生物状况。还介绍了与CLPP相关的指标,例如底物丰富度,底物多样性,总体群落概况和群落差异。已经发现,与介质有关的生物膜形成的结果是,中观孔隙率随着时间的推移而降低。在启动期间,这种生物膜的发展还导致了中膜的弥散系数的显着提高。种植系统中的色散系数达到〜50-55 cm〜2 / min,而未种植系统中的色散系数达到〜30-35 cm〜2 / min。使用基于欧几里得的散度度量来量化中膜中的细菌群落散度。所有中观宇宙都显示出社区差异急剧增加,直到第75天为止,此时达到了稳定状态:根据实验设计的处理方法,相似性也表征了间质性社区。确定了中观宇宙发育的四个阶段,可以根据初始接种物的来源[第0-6天],通过初始群落状态来描述。在动态过程中,所有中膜都发生了细菌群落的调整和转移[7-26天];所有间质性CLPP都非常相似的时期[第27-73天];最终转向未种植和已种植的中观CLPP分组[74-232天]。

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