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Succession of Bacterial Communities during Early Plant Development: Transition from Seed to Root and Effect of Compost Amendment

机译:植物早期发育过程中细菌群落的演替:从种子到根的过渡和堆肥修正的影响

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摘要

Compost amendments to soils and potting mixes are routinely applied to improve soil fertility and plant growth and health. These amendments, which contain high levels of organic matter and microbial cells, can influence microbial communities associated with plants grown in such soils. The purpose of this study was to follow the bacterial community compositions of seed and subsequent root surfaces in the presence and absence of compost in the potting mix. The bacterial community compositions of potting mixes, seed, and root surfaces sampled at three stages of plant growth were analyzed via general and newly developed Bacteroidetes-specific, PCR-denaturing gradient gel electrophoresis methodologies. These analyses revealed that seed surfaces were colonized primarily by populations detected in the initial potting mixes, many of which were not detected in subsequent root analyses. The most persistent bacterial populations detected in this study belonged to the genus Chryseobacterium (Bacteroidetes) and the family Oxalobacteraceae (Betaproteobacteria). The patterns of colonization by populations within these taxa differed significantly and may reflect differences in the physiology of these organisms. Overall, analyses of bacterial community composition revealed a surprising prevalence and diversity of Bacteroidetes in all treatments.
机译:通常对土壤和盆栽混合料进行堆肥改良,以改善土壤肥力以及植物生长和健康。这些含有大量有机物和微生物细胞的改良剂会影响与在此类土壤中生长的植物相关的微生物群落。这项研究的目的是在盆栽混合物中有无堆肥的情况下,跟踪种子和随后的根表面的细菌群落组成。通过常规和新近开发的拟杆菌特异,PCR变性梯度凝胶电泳方法分析了在植物生长的三个阶段采样的盆栽混合物,种子和根表面的细菌群落组成。这些分析表明,种子表面主要是由最初的盆栽混合物中检测到的种群定殖的,其中许多在随后的根系分析中没有发现。在这项研究中检测到的最持久的细菌种群属于金黄色杆菌属(拟杆菌)和草酸杆菌科(Betaproteobacteria)。这些分类单元内各种群的定殖模式显着不同,可能反映了这些生物的生理学差异。总体而言,对细菌群落组成的分析表明,在所有处理中,拟杆菌的流行率和多样性都令人惊讶。

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