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Soil acidification modifies soil depth-microbiome relationships in a no-till wheat cropping system

机译:土壤酸化在一个小麦种植系统中改变了土壤深度微生物组的关系

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Soil pH is among the most important drivers of soil bacterial community composition and diversity. However, most studies exploring the spatial distribution of soil bacterial communities have focused on the top 10-20 cm of soil, leaving our knowledge of the composition, diversity, and forces structuring subsoil communities relatively unexplored. Moreover, in agricultural soil managed without tillage (no-till), fertilizers often generate an acidified soil layer in the seed zone, rendering no-till soils a unique system in which to study the relative impacts of pH and soil depth on microbial communities. We characterize the composition and diversity of bacterial communities in a no-till wheat-based cropping system from eastern Washington, across soil depths (0 cm, 10 cm, 25 cm, 50 cm, 75 cm, and 100 cm). Soil depth was a strong driver of bacterial community composition and diversity. Proteobacteria and Actinobacteria dominated the soil surface, Acidobacteria peaked in relative abundance at 10 cm, and Actinobacteria and unidentified taxa were greatest in relative abundance below 25 cm. However, acidified soil disrupted relationships between soil depth and bacterial communities, resulting in a low diversity and distinct composition of bacterial communities at the 10 cm depth. Co-occurrence networks of bacterial taxa revealed groups of co-occurring taxa that responded primarily to soil pH or depth. This work provides an insight on the distribution and drivers of bacterial communities in deep soil profiles in dryland wheat-based cropping systems.
机译:土壤pH是土壤细菌群落成分和多样性最重要的驱动因素之一。然而,大多数研究探索土壤细菌社区的空间分布的研究都集中在10-20厘米的土壤上,留下了我们对构成,多样性和力量构建底土社区的构成,多样性和力量的了解。此外,在没有耕作的农业土壤中(No-Till),肥料经常在种子区内产生酸化的土壤层,呈现无污垢,是一种独特的系统,用于研究pH和土壤深度对微生物群落的相对影响。我们在跨华盛顿横跨华盛顿(0厘米,10厘米,25厘米,50厘米,75厘米和100厘米)的基于华盛顿州的无直麦类种植系统中细菌社区的组成和多样性。土壤深度是细菌群落成分和多样性的强大司机。植物体外和肌动菌在土壤表面占主导地位,抗酸菌在10cm的相对丰度中达到尖峰,并且在25厘米以下的相对丰度中最大的抗菌菌和未识别的分类群。然而,酸化土破坏了土壤深度和细菌群落之间的关系,导致10cm深度的细菌群落的低多样性和不同的组成。细菌分类群的共同发生网络揭示了主要对土壤pH或深度作出反应的共同出现的纳税群。这项工作介绍了旱地基于小麦种植系统的深层土壤曲线中细菌社区的分布和驱动器的见解。

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