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间作五种药用植物对人工林土壤养分、酶活性及微生物群落结构的影响

Impact of Intercropping Five Medicinal Plants on Soil Nutrients, Enzyme Activity, and Microbial Community Structure in Plantations.

作者信息

Bajiu Azuo, Gao Kai, Zeng Guangyu, He Yuanhao

机构信息

Guangxi Key Laboratory of Special Non-Wood Forest Cultivation and Utilization, Nanning 530002, China.

Key Laboratory of National Forestry and Grassland Administration on Control of Artifcial Forest Diseases and Pests in South China, Hunan Provincial Key Laboratory for Control of Forest Diseases and Pests, Key Laboratory for Non-Wood Forest Cultivation and Conservation of Ministry of Education, Key Laboratory of Forest Bio-Resources and Integrated Pest Management for Higher Education in Hunan Province, College of Forestry, Central South University of Forestry and Technology, Changsha 410004, China.

出版信息

Microorganisms. 2024 Aug 8;12(8):1616. doi: 10.3390/microorganisms12081616.

Abstract

Intercropping medicinal plants plays an important role in agroforestry that can improve the physical, chemical, and biological fertility of soil. However, the influence of intercropping medicinal plants on the soil properties and bacterial communities remains elusive. In this study, five intercropping treatment groups were set as follows: / (EZ), / (JH), / (YDC), / (HDK), and / (WZMT). The soil chemical properties, enzyme activities, and bacterial communities were measured and analyzed to evaluate the effects of different intercropping systems. The results indicated that, compared to the monoculture group, YDC and EZ showed noticeable impacts on the soil chemical properties with a significant increase in total nitrogen (TN), nitrate nitrogen (NN), available nitrogen (AN), available phosphorus (AP), and available potassium (AK). Among them, the content of TN and AK in the rhizosphere soil of Camellia oleifera in the YDC intercropping system was the highest, which was 7.82 g/kg and 21.94 mg/kg higher than CK. Similarly, in the EZ intercropping system, the content of NN and OM in the rhizosphere soil of Camellia oleifera was the highest, which was higher than that of CK at 722.33 mg/kg and 2.36 g/kg, respectively. / (JH) and / (YDC) had the most effect on soil enzyme activities. Furthermore, YDC extensively increased the activities of hydrogen peroxide and acid phosphatase enzymes; the increase was 2.27 mg/g and 3.21 mg/g, respectively. While JH obviously increased the urease activity, the diversity of bacterial populations in the rhizosphere soil of the intercropping plants decreased, especially the Shannon index of YDC and HDK. Compared with the monoculture group, the bacterial community abundance and structure of JH and YDC were quite different. The relative abundance of and was increased in YDC, and that of and was increased in JH. According to the redundancy analysis (RDA), pH, total potassium, and soil catalase activity were identified as the main factors influencing the microbial community structure of the intercropping systems. In conclusion, intercropping with JH and YDC increased the relative abundance of the dominant bacterial communities, improved the microbial community structure, and enhanced the soil nutrients and enzyme activities. Therefore, in the future, these two medicinal plants can be used for intercropping with .

摘要

间作药用植物在农林业中发挥着重要作用,能够改善土壤的物理、化学和生物肥力。然而,间作药用植物对土壤性质和细菌群落的影响仍不明确。在本研究中,设置了五个间作处理组,分别如下:/(EZ)、/(JH)、/(YDC)、/(HDK)和/(WZMT)。对土壤化学性质、酶活性和细菌群落进行了测定和分析,以评估不同间作系统的效果。结果表明,与单作组相比,YDC和EZ对土壤化学性质有显著影响,总氮(TN)、硝态氮(NN)、有效氮(AN)、有效磷(AP)和有效钾(AK)显著增加。其中,YDC间作系统中油茶根际土壤的TN和AK含量最高,分别比对照高7.82 g/kg和21.94 mg/kg。同样,在EZ间作系统中,油茶根际土壤的NN和OM含量最高,分别比对照高722.33 mg/kg和2.36 g/kg。/(JH)和/(YDC)对土壤酶活性影响最大。此外,YDC显著提高了过氧化氢酶和酸性磷酸酶的活性,增幅分别为2.27 mg/g和3.21 mg/g。而JH明显提高了脲酶活性,间作植物根际土壤细菌种群的多样性降低,尤其是YDC和HDK的香农指数。与单作组相比,JH和YDC的细菌群落丰度和结构差异较大。YDC中 和 的相对丰度增加,JH中 和 的相对丰度增加。根据冗余分析(RDA),pH、全钾和土壤过氧化氢酶活性被确定为影响间作系统微生物群落结构的主要因素。总之,与JH和YDC间作增加了优势细菌群落的相对丰度,改善了微生物群落结构,增强了土壤养分和酶活性。因此,未来这两种药用植物可用于与 间作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d17/11356553/d7c4791382d1/microorganisms-12-01616-g001.jpg

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