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A microcosm approach highlights the response of soil mineral weathering bacterial communities to an increase of K and Mg availability

机译:微观方法强调了土壤矿物风化细菌群落对钾和镁有效性增加的响应

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摘要

The access and recycling of the base cations are essential processes for the long-lasting functioning of forest ecosystems. While the role of soil bacterial communities has been demonstrated in mineral weathering and tree nutrition, our understanding of the link between the availability of base cations and the functioning of these communities remains limited. To fill this gap, we developed a microcosm approach to investigate how an increase in key base cations (potassium or magnesium) impacted the taxonomic and functional structures of the bacterial communities. During a 2-month period after fertilization with available potassium or magnesium, soil properties, global functions (metabolic potentials and respiration) as well as mineral weathering bioassays and 16S rRNA amplicon pyrosequencing were monitored. Our analyses showed no or small variations in the taxonomic structure, total densities and global functions between the treatments. In contrast, a decrease in the frequency and effectiveness of mineral weathering bacteria was observed in the fertilized treatments. Notably, quantitative PCR targeting specific genera known for their mineral weathering ability (i.e., Burkholderia and Collimonas) confirmed this decrease. These new results suggest that K and Mg cation availability drives the distribution of the mineral weathering bacterial communities in forest soil.
机译:碱性阳离子的获取和回收是森林生态系统持久运行的重要过程。虽然已经证明了土壤细菌群落在矿物风化和树木营养中的作用,但是我们对碱性阳离子的可用性与这些群落功能之间联系的理解仍然有限。为了填补这一空白,我们开发了一个缩影方法来研究关键碱性阳离子(钾或镁)的增加如何影响细菌群落的分类和功能结构。在施肥后2个月内,可用钾或镁对土壤性质,总体功能(代谢潜能和呼吸作用)以及矿物风化生物测定法和16S rRNA扩增子焦磷酸测序进行了监测。我们的分析显示,各处理之间的分类结构,总密度和整体功能没有或只有很小的变化。相反,在受精处理中观察到矿物风化细菌的频率和有效性降低。值得注意的是,针对以其矿物风化能力而闻名的特定属(即伯克霍尔德氏菌和科利莫纳斯)的定量PCR证实了这种减少。这些新结果表明,钾和镁阳离子的可用性驱动了森林土​​壤中矿物风化细菌群落的分布。

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