首页> 外文期刊>Plant and Soil >AOB community structure and richness under European beech, sessile oak, Norway spruce and Douglas-fir at three temperate forest sites
【24h】

AOB community structure and richness under European beech, sessile oak, Norway spruce and Douglas-fir at three temperate forest sites

机译:在三个温带森林地带的欧洲山毛榉,无梗橡木,挪威云杉和花旗松下的AOB群落结构和丰富性

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The relations between tree species, microbial diversity and activity can alter ecosystem functioning. We investigated ammonia oxidizing bacteria (AOB) community structure and richness, microbial/environmental factors related to AOB diversity and the relationship between AOB diversity and the nitrification process under several tree species. Forest floor (Of, Oh) was sampled under European beech, sessile oak, Norway spruce and Douglas-fir at three sites. AOB community structure was assessed by PCR-DGGE and sequencing. Samples were analyzed for net N mineralization, potential nitrification, basal respiration, microbial biomass, microbial or metabolic quotient, pH, total nitrogen, extractable ammonium, organic matter content and exchangeable cations. AOB community structure and tree species effect on AOB diversity were site-specific. AOB richness was not related to nitrification. Factors regulating ammonium availability, i.e. net N mineralization or microbial biomass, were related to AOB community structure. Our research shows that, at larger spatial scales, site specific characteristics may be more important than the nature of tree species in determining AOB diversity (richness and community structure). Within sites, tree species influence AOB diversity. The absence of a relation between AOB richness and nitrification points to a possibly role of AOB abundance, phenotypic plasticity or the implication of ammonia oxidizing archaea.
机译:树种,微生物多样性和活动之间的关系可以改变生态系统的功能。我们调查了几种树种下氨氧化细菌(AOB)的群落结构和丰富度,与AOB多样性相关的微生物/环境因素以及AOB多样性与硝化过程之间的关系。在三个地点分别从欧洲山毛榉,无梗橡树,挪威云杉和花旗松中提取了林地(Of,Oh)。通过PCR-DGGE和测序评估AOB群落结构。分析样品的净氮矿化,潜在的硝化作用,基础呼吸作用,微生物生物量,微生物或代谢商,pH,总氮,可萃取铵,有机物含量和可交换阳离子。 AOB群落结构和树种对AOB多样性的影响是特定于地点的。 AOB含量与硝化作用无关。调节铵可利用性的因素,即净氮矿化或微生物生物量,与AOB群落结构有关。我们的研究表明,在确定AOB多样性(丰富度和群落结构)时,在更大的空间尺度上,特定于站点的特征可能比树种的性质更重要。在站点内,树种影响AOB多样性。 AOB含量与硝化作用之间不存在联系,这表明AOB的丰度,表型可塑性或氨氧化古细菌的可能作用。

著录项

相似文献

  • 外文文献
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