Effects of Continuous Cropping on Bacterial Community and Diversity in Rhizosphere Soil of Industrial Hemp: A Five-Year Experiment

Long-term continuous monoculture cultivation harms soil physicochemical and microbial communities in agricultural practices. However, little has been reported on the effect of continuous cropping of industrial hemp on bacterial community and diversity in the rhizosphere soil. Our study investigated...

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Main Authors: Li Guo, Xiangwei Chen, Zeyu Li, Mingze Wang, Ye Che, Ling Zhang, Zeyu Jiang, Siyuan Jie
Format: Article
Language:English
Published: MDPI AG 2022-03-01
Series:Diversity
Subjects:
Online Access:https://www.mdpi.com/1424-2818/14/4/250
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author Li Guo
Xiangwei Chen
Zeyu Li
Mingze Wang
Ye Che
Ling Zhang
Zeyu Jiang
Siyuan Jie
author_facet Li Guo
Xiangwei Chen
Zeyu Li
Mingze Wang
Ye Che
Ling Zhang
Zeyu Jiang
Siyuan Jie
author_sort Li Guo
collection DOAJ
description Long-term continuous monoculture cultivation harms soil physicochemical and microbial communities in agricultural practices. However, little has been reported on the effect of continuous cropping of industrial hemp on bacterial community and diversity in the rhizosphere soil. Our study investigated the changes in physicochemical properties and bacterial communities of industrial hemp rhizosphere soils in different continuous cropping years. The results showed that continuous cropping would reduce soil pH and available phosphorus (AP), while electrical conductivity (EC), available nitrogen (AN), and available potassium (AK) would increase. Soil bacterial diversity and richness index decreased with continuous cropping years. At the same time, continuous cropping marked Acidobacteria, Bacteroidetes, and Gemmatimonadetes increase, and the Proteobacteria and Actinobacteria decreased. Moreover, we found that pH, AK, and AP were the critical factors associated with the changes in the abundance and structure of the bacterial community. Overall, our study first reported the effect of continuous cropping on the rhizosphere soil microflora of industrial hemp. The results can provide a theoretical basis for revealing the obstacle mechanism of continuous cropping of industrial hemp and contribute to the sustainable cultivation of industrial hemp in the future.
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spelling doaj.art-83500974d5b34832b33d8d47b7c7d5ac2023-12-01T01:36:18ZengMDPI AGDiversity1424-28182022-03-0114425010.3390/d14040250Effects of Continuous Cropping on Bacterial Community and Diversity in Rhizosphere Soil of Industrial Hemp: A Five-Year ExperimentLi Guo0Xiangwei Chen1Zeyu Li2Mingze Wang3Ye Che4Ling Zhang5Zeyu Jiang6Siyuan Jie7School of Forestry, Northeast Forestry University, Harbin 150040, ChinaSchool of Forestry, Northeast Forestry University, Harbin 150040, ChinaDaqing Branch of Heilongjiang, Academy of Agricultural Sciences, Daqing 163316, ChinaDaqing Branch of Heilongjiang, Academy of Agricultural Sciences, Daqing 163316, ChinaDaqing Branch of Heilongjiang, Academy of Agricultural Sciences, Daqing 163316, ChinaDaqing Branch of Heilongjiang, Academy of Agricultural Sciences, Daqing 163316, ChinaDaqing Branch of Heilongjiang, Academy of Agricultural Sciences, Daqing 163316, ChinaDaqing Branch of Heilongjiang, Academy of Agricultural Sciences, Daqing 163316, ChinaLong-term continuous monoculture cultivation harms soil physicochemical and microbial communities in agricultural practices. However, little has been reported on the effect of continuous cropping of industrial hemp on bacterial community and diversity in the rhizosphere soil. Our study investigated the changes in physicochemical properties and bacterial communities of industrial hemp rhizosphere soils in different continuous cropping years. The results showed that continuous cropping would reduce soil pH and available phosphorus (AP), while electrical conductivity (EC), available nitrogen (AN), and available potassium (AK) would increase. Soil bacterial diversity and richness index decreased with continuous cropping years. At the same time, continuous cropping marked Acidobacteria, Bacteroidetes, and Gemmatimonadetes increase, and the Proteobacteria and Actinobacteria decreased. Moreover, we found that pH, AK, and AP were the critical factors associated with the changes in the abundance and structure of the bacterial community. Overall, our study first reported the effect of continuous cropping on the rhizosphere soil microflora of industrial hemp. The results can provide a theoretical basis for revealing the obstacle mechanism of continuous cropping of industrial hemp and contribute to the sustainable cultivation of industrial hemp in the future.https://www.mdpi.com/1424-2818/14/4/250industrial hempbacterial communitycontinuous croppingrhizosphere soil
spellingShingle Li Guo
Xiangwei Chen
Zeyu Li
Mingze Wang
Ye Che
Ling Zhang
Zeyu Jiang
Siyuan Jie
Effects of Continuous Cropping on Bacterial Community and Diversity in Rhizosphere Soil of Industrial Hemp: A Five-Year Experiment
Diversity
industrial hemp
bacterial community
continuous cropping
rhizosphere soil
title Effects of Continuous Cropping on Bacterial Community and Diversity in Rhizosphere Soil of Industrial Hemp: A Five-Year Experiment
title_full Effects of Continuous Cropping on Bacterial Community and Diversity in Rhizosphere Soil of Industrial Hemp: A Five-Year Experiment
title_fullStr Effects of Continuous Cropping on Bacterial Community and Diversity in Rhizosphere Soil of Industrial Hemp: A Five-Year Experiment
title_full_unstemmed Effects of Continuous Cropping on Bacterial Community and Diversity in Rhizosphere Soil of Industrial Hemp: A Five-Year Experiment
title_short Effects of Continuous Cropping on Bacterial Community and Diversity in Rhizosphere Soil of Industrial Hemp: A Five-Year Experiment
title_sort effects of continuous cropping on bacterial community and diversity in rhizosphere soil of industrial hemp a five year experiment
topic industrial hemp
bacterial community
continuous cropping
rhizosphere soil
url https://www.mdpi.com/1424-2818/14/4/250
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