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Edaphic properties override the influence of crops on the composition of the soil bacterial community in a semiarid agroecosystem

机译:在半干旱农业生态系统中,深层特性优先于农作物对土壤细菌群落组成的影响

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Annual cropping systems are dynamic environments where soil bacterial communities are responsive to various management practices such as crop rotations, and to seasonal fluctuations of edaphic properties. However, in semiarid regions the impact of crops on the soil bacterial community appears to be modulated or affected by edaphic properties such as soil moisture availability. Therefore the objective of this study was to determine the relative influence of crops (wheat, lentil, field pea, canola, and a fallow treatment), soil chemistry, and edaphic properties on the diversity and composition of soil bacterial communities in a semiarid agroecosystem. We used a temporal sampling strategy and high throughput sequencing approach to monitor changes in the soil bacterial community in relation to crop host identity and phenology and soil properties. Structuring of the bacterial community across the 20 experimental plots was driven primarily by soil pH which varied strongly (min: 5.25, max: 6.97) across the site. Weak temporal shifts in the bacterial community were observed across the growing season and were related to seasonal variation in soil moisture (min: 8.3%, max: 20.3%), soil temperature (min. daily mean: 3.3 degrees C, max. daily mean: 21.1 degrees C), and fluctuation in available phosphate in the soil (min: 0.003 mg cm(-2) day(-1), max: 0.290 mg cm(-2) day(-1)). These temporal and spatial shifts were not influenced by crop host identity as similar bacterial communities were observed among the crops and fallow treatment. Variance partitioning revealed that soil pH and soil moisture accounted for a high proportion of the variation of the soil bacterial community, while crops had no significant impact in the study. Edaphic factors appeared to override or level the effect of crops on the soil bacterial community. These results highlight the importance of accounting for edaphic properties for managing soil bacterial communities in agroecosystems. Crown Copyright (c) 2016 Published by Elsevier B.V. All rights reserved.
机译:一年一度的种植系统是动态的环境,在这里土壤细菌群落对各种管理方法(例如轮作)和食用特性的季节性波动做出响应。然而,在半干旱地区,农作物对土壤细菌群落的影响似乎受到诸如土壤水分可利用性等前向特性的调节或影响。因此,本研究的目的是确定半干旱农业生态系统中农作物(小麦,扁豆,豌豆,油菜和休闲食品),土壤化学性质和深层特性对土壤细菌群落多样性和组成的相对影响。我们使用时间采样策略和高通量测序方法来监测土壤细菌群落与农作物寄主身份,物候和土壤特性有关的变化。整个20个试验区中细菌群落的结构主要是由土壤pH值驱动的,该位置的土壤pH值变化很大(最小值:5.25,最大值:6.97)。在整个生长季节中观察到细菌群落的时间变化较弱,并且与土壤水分(最低:8.3%,最高:20.3%),土壤温度(最低每日平均值:3.3摄氏度,最高每日平均值)的季节性变化有关。 :21.1摄氏度),以及土壤中有效磷的波动(最小:0.003 mg cm(-2)天(-1),最大:0.290 mg cm(-2)天(-1))。这些时间和空间的变化不受作物寄主身份的影响,因为在作物和休耕方法中观察到相似的细菌群落。方差划分表明,土壤pH和水分在土壤细菌群落变化中占很大比例,而农作物对研究没有显着影响。根深蒂固的因素似乎可以超越或平衡农作物对土壤细菌群落的影响。这些结果突出说明了在农业生态系统中管理土壤细菌群落的重要性。官方版权(c)2016,由Elsevier B.V.保留所有权利。

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