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沿海农业生态系统盐渍土壤中的微生物群落组成与活性

Microbial Community Composition and Activity in Saline Soils of Coastal Agro-Ecosystems.

作者信息

Dong Yang, Zhang Jianwei, Chen Ruirui, Zhong Linghao, Lin Xiangui, Feng Youzhi

机构信息

State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Microorganisms. 2022 Apr 18;10(4):835. doi: 10.3390/microorganisms10040835.

Abstract

Soil salinity is a serious problem for agriculture in coastal regions. Nevertheless, the effects of soil salinity on microbial community composition and their metabolic activities are far from clear. To improve such understanding, we studied microbial diversity, community composition, and potential metabolic activity of agricultural soils covering non-, mild-, and severe-salinity. The results showed that salinity had no significant effect on bacterial richness; however, it was the major driver of a shift in bacterial community composition and it significantly reduced microbial activity. Abundant and diverse of microbial communities were detected in the severe-salinity soils with an enriched population of salt-tolerant species. Co-occurrence network analysis revealed stronger dependencies between species associated with severe salinity soils. Results of microcalorimetric technology indicated that, after glucose amendment, there was no significant difference in microbial potential activity among soils with the three salinity levels. Although the salt prolonged the lag time of microbial communities, the activated microorganisms had a higher growth rate. In conclusion, salinity shapes soil microbial community composition and reduces microbial activity. An addition of labile organic amendments can greatly alleviate salt restrictions on microbial activity, which provides new insight for enhancing microbial ecological functions in salt-affected soils.

摘要

土壤盐渍化是沿海地区农业面临的一个严重问题。然而,土壤盐渍化对微生物群落组成及其代谢活动的影响仍远未明确。为了增进对此的了解,我们研究了涵盖非盐渍、轻度盐渍和重度盐渍的农业土壤的微生物多样性、群落组成及潜在代谢活性。结果表明,盐度对细菌丰富度没有显著影响;然而,它是细菌群落组成变化的主要驱动因素,并且显著降低了微生物活性。在重度盐渍土壤中检测到丰富多样的微生物群落,其中耐盐物种的数量有所增加。共现网络分析显示,与重度盐渍土壤相关的物种之间存在更强的依赖性。微量热技术的结果表明,添加葡萄糖后,三种盐度水平土壤的微生物潜在活性没有显著差异。虽然盐分延长了微生物群落的延迟期,但被激活的微生物具有更高的生长速率。总之,盐度塑造了土壤微生物群落组成并降低了微生物活性。添加不稳定的有机改良剂可以极大地缓解盐分对微生物活性的限制,这为增强盐渍化土壤中的微生物生态功能提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b6a/9027772/8fc26ffc3d9b/microorganisms-10-00835-g001.jpg

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