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Distinct Successions of Common and Rare Bacteria in Soil Under Humic Acid Amendment – A Microcosm Study

机译:腐殖酸修正下土壤中常见和稀有细菌的不同演替–微观研究

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摘要

Humic acid (HA) is widely used for soil quality improvement, yet little is known how bacterial communities, especially common and rare bacteria, respond to HA amendment, which is crucial to understand biodiversity and function in agroecosystem. Therefore, a manipulated microcosm experiment with a gradient of HA amendment was conducted to unveil this. The results showed that common and rare taxa had similar patterns in species richness, while rare taxa exhibited a higher turnover, which caused their higher structural dissimilarity. Common species with wider niche breadths were more strongly influenced by deterministic filtering when compared to rare taxa, which occupied narrow niches and were primarily controlled by stochastic processes. Generally, species with wider niche breadths were always more strongly influenced by deterministic selection. The analysis of predicted functions revealed that rare taxa occupied more unique predicted functional traits than common taxa, suggesting that rare taxa played a key role in maintaining the functional diversity. In addition, there was a significant positive correlation between species richness and predicted functional diversity in rare taxa rather than common taxa. Our findings highlight the distinct structural and predicted functional successions of common and rare bacteria in soil under HA amendment.
机译:腐殖酸(HA)被广泛用于改善土壤质量,但人们对细菌群落(尤其是常见细菌和稀有细菌)如何响应HA的修饰知之甚少,这对于理解农业生态系统中的生物多样性和功能至关重要。因此,进行了具有HA修正梯度的受控缩影实验以揭示这一点。结果表明,普通和稀有分类群在物种丰富度上具有相似的模式,而稀有分类群具有较高的周转率,这导致它们的结构差异更大。与稀有分类单元相比,具有较窄生态位宽度的普通物种受确定性过滤的影响更大,稀有分类单元占据狭窄的生态位,并且主要受随机过程控制。通常,具有更窄生态位宽度的物种总是受到确定性选择的强烈影响。对预测功能的分析表明,稀有分类群比普通分类群具有更多独特的预测功能性状,这表明稀有分类群在维持功能多样性方面起着关键作用。此外,在稀有分类群而不是普通分类群中,物种丰富度与预测的功能多样性之间存在显着的正相关。我们的发现强调了在HA改良下土壤中常见细菌和稀有细菌的独特结构和预测的功能演替。

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