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短期暴露于气候变化非生物因素和不同果园管理措施下对苹果园土壤微生物群落的影响。

Effect on microbial communities in apple orchard soil when exposed short-term to climate change abiotic factors and different orchard management practices.

机构信息

NIAB EMR, East Malling, Kent ME19 6BJ, UK.

Cranfield University, College Road, Cranfield, Wharley End, Bedford MK43 0AL, UK.

出版信息

J Appl Microbiol. 2023 Mar 1;134(3). doi: 10.1093/jambio/lxad002.

Abstract

AIM

We assessed the effect of exposing apple orchard soil to different temperatures and CO2 levels on the resident microbiome of soils from a conventionally managed and an organically managed apple orchard. The key difference between these two orchards was that synthetic fertilizers and pesticides are routinely used in the former one.

METHODS AND RESULTS

To investigate the effect of CO2 and temperature, soil samples from each site at two depths were exposed to either elevated temperature (29°C) at either 5000 or 10 000 ppm for five weeks or control conditions (25°C + 400 ppm). Both bacterial and fungal communities were profiled with amplicon-sequencing. The differences between the two orchards were the most significant factor affecting the bacterial and fungal communities, contributing to 53.7-14.0% of the variance in Bray-Curtis β diversity, respectively. Elevated CO2 concentration and increased temperature affected organic orchard microbial diversity more than the conventionally managed orchard. A number of candidate beneficial and pathogenic microorganisms had differential abundances when temperature and CO2 were elevated, but their effect on the plant is unclear.

CONCLUSIONS

This study has highlighted that microbial communities in bulk soils are most significantly influenced by crop management practices compared to the climate conditions used in the study. The studied climate conditions had a more limited effect on microbial community diversity in conventionally managed soil samples than in organically managed soils.

摘要

目的

我们评估了将苹果园土壤暴露于不同温度和 CO2 水平对常规管理和有机管理的苹果园土壤中土壤常驻微生物组的影响。这两个果园的主要区别在于,前者通常使用合成肥料和农药。

方法和结果

为了研究 CO2 和温度的影响,从每个地点的两个深度采集土壤样本,在五周内暴露于升高的温度(29°C)下,分别为 5000 或 10000 ppm,或对照条件(25°C + 400 ppm)。使用扩增子测序对细菌和真菌群落进行了分析。两个果园之间的差异是影响细菌和真菌群落的最显著因素,分别占 Bray-Curtis β 多样性差异的 53.7-14.0%。升高的 CO2 浓度和温度对有机果园微生物多样性的影响大于常规管理果园。当温度和 CO2 升高时,一些候选有益和病原微生物的丰度存在差异,但它们对植物的影响尚不清楚。

结论

本研究强调了与研究中使用的气候条件相比,土壤中微生物群落受作物管理实践的影响最大。与有机管理土壤样本相比,所研究的气候条件对常规管理土壤样本中微生物群落多样性的影响有限。

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