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Effects of the Continuous Cropping of Amomum villosum on Rhizosphere Soil Physicochemical Properties, Enzyme Activities, and Microbial Communities

Butian Wang, Yunfeng Lu, Weifeng Li, Suming He, Rong Lin, Peng Qu, Hongmei Chen, Fengying Zhang, Meng Zhao, Xuedong Shi, Yi Liu, Huabo Du, Yu Ge

2022Agronomy33 citationsDOIOpen Access PDF

Abstract

Amomum villosum, which is an important perennial medicinal plant, easily suffers from continuous cropping obstacles in the plantation. The aim of this study is to find an effective method to solve the problem of A. villosum continuous cropping. In this study, we analyzed four fields in which A. villosum was continuously cropped and a fallow field to reveal the effects of continuous cropping on the rhizosphere soil physicochemical properties, enzyme activities, and bacterial and fungal communities. Most of the soil nutrient contents gradually increased as the number of years of continuous cropping increased, whereas the soil pH decreased slightly. The soil urease and acid phosphatase activities tended to increase as the length of the continuous cropping period increased, which may have accelerated the conversion of soil substances. Furthermore, the alpha diversity of the bacterial and fungal communities decreased as the duration of the continuous cropping period increased. Additionally, the redundancy analysis revealed that bacterial and fungal community structures at the phylum level were the most correlated with pH value and catalase activity, respectively. This study may be useful for promoting the continuous cropping and sustainable development of A. villosum.

Topics & Concepts

RhizosphereCroppingSoil enzymeAgronomyBiologyUreaseCropping systemEcological successionBotanyAgricultureCropEnzymeBacteriaEcologyGeneticsBiochemistrySoil Carbon and Nitrogen DynamicsAgriculture, Soil, Plant ScienceEcology and Conservation Studies
Effects of the Continuous Cropping of Amomum villosum on Rhizosphere Soil Physicochemical Properties, Enzyme Activities, and Microbial Communities | Litcius