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Changes of soil prokaryotic communities after clear-cutting in a karst forest: evidences for cutting-based disturbance promoting deterministic processes

机译:喀斯特森林砍伐后土壤原核生物群落的变化:基于砍伐的干扰促进确定性过程的证据

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摘要

To understand the temporal responses of soil prokaryotic communities to clear-cutting disturbance, we examined the changes in soil bacterial and archaeal community composition, structure and diversity along a chronosequence of forest successional restoration using high-throughput 16S rRNA gene sequencing. Our results demonstrated that clear-cutting significantly altered soil bacterial community structure, while no significant shifts of soil archaeal communities were observed. The hypothesis that soil bacterial communities would become similar to those of surrounding intact primary forest with natural regeneration was supported by the shifts in the bacterial community composition and structure. Bacterial community diversity patterns induced by clear-cutting were consistent with the intermediate disturbance hypothesis. Dynamics of bacterial communities was mostly driven by soil properties, which collectively explained more than 70% of the variation in bacterial community composition. Community assembly data revealed that clear-cutting promoted the importance of the deterministic processes in shaping bacterial communities, coinciding with the resultant low resource environments. But assembly processes in the secondary forest returned a similar level compared to the intact primary forest. These findings suggest that bacterial community dynamics may be predictable during the natural recovery process.
机译:为了了解土壤原核生物群落对明显干扰的时间响应,我们使用高通量16S rRNA基因测序研究了森林演替恢复的时间序列上土壤细菌和古细菌群落组成,结构和多样性的变化。我们的研究结果表明,清晰地改变了土壤细菌群落的结构,而未观察到土壤古细菌群落的显着变化。细菌群落组成和结构的变化支持了土壤细菌群落将变得与周围的原始森林自然再生的相似的假说。明确引发的细菌群落多样性模式与中间扰动假说相符。细菌群落的动力学主要是由土壤特性驱动的,这共同解释了细菌群落组成变化的70%以上。社区集会数据显示,明确的划分促进了确定性过程在塑造细菌群落中的重要性,这与由此产生的资源不足环境相吻合。但是与完整的主目录林相比,辅助目录林中的组装过程返回了相似的级别。这些发现表明,在自然恢复过程中细菌群落动态可能是可预测的。

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