Effect of 4-hydroxybenzoic acid on grape (Vitis vinifera L.) soil microbial community structure and functional diversity
Phenolic compounds are considered to be an important autotoxic substances. The interactions between them and soil microbes are increasingly becoming a focus of the allelopathic research studies. In the present study, we have evaluated the effect of 4-hydroxybenzoic acid on soil microbial community s...
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Published in | Biotechnology, biotechnological equipment Vol. 29; no. 4; pp. 637 - 645 |
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Abstract | Phenolic compounds are considered to be an important autotoxic substances. The interactions between them and soil microbes are increasingly becoming a focus of the allelopathic research studies. In the present study, we have evaluated the effect of 4-hydroxybenzoic acid on soil microbial community structure and functional diversity. Bulk soil without grapevine cuttings (Group 1) and rhizosphere soil with Beta (Vitis riparia × Vitis labrusca) grapevine cuttings (Group 2) were used as research subjects. The bacterial (16s rRNA) and fungal internal transcribed spacer regions community structures were obtained using a denaturing gradient gel electrophoresis and substrate utilization patterns were determined using Biolog EcoPlates. In this research, the results showed that the 4-hydroxybenzoic acid caused a shift in the soil bacterial and fungal community structures and changed the soil microbial functional diversity. The results also showed that the diversity of the microbial community structure and function differed between the two designated groups. The application of 4-hydroxybenzoic acid (1 and 2 mg/g) to the soil resulted in a greater decrease in the average diversity of the bacterial community structure in Group 2, compared to Group 1. Moreover, the average diversity of the fungal community structure in Group 2 became higher than that in Group 1. However, the bacterial and fungal community structural diversities increased with the application of 0.5 mg/g of 4-hydroxybenzoic acid. Thus, we concluded that both soil microbes and root exudates might be the recipients of 4-hydroxybenzoic acid. |
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AbstractList | Phenolic compounds are considered to be an important autotoxic substances. The interactions between them and soil microbes are increasingly becoming a focus of the allelopathic research studies. In the present study, we have evaluated the effect of 4-hydroxybenzoic acid on soil microbial community structure and functional diversity. Bulk soil without grapevine cuttings (Group 1) and rhizosphere soil with Beta (Vitis riparia × Vitis labrusca) grapevine cuttings (Group 2) were used as research subjects. The bacterial (16s rRNA) and fungal internal transcribed spacer regions community structures were obtained using a denaturing gradient gel electrophoresis and substrate utilization patterns were determined using Biolog EcoPlates. In this research, the results showed that the 4-hydroxybenzoic acid caused a shift in the soil bacterial and fungal community structures and changed the soil microbial functional diversity. The results also showed that the diversity of the microbial community structure and function differed between the two designated groups. The application of 4-hydroxybenzoic acid (1 and 2 mg/g) to the soil resulted in a greater decrease in the average diversity of the bacterial community structure in Group 2, compared to Group 1. Moreover, the average diversity of the fungal community structure in Group 2 became higher than that in Group 1. However, the bacterial and fungal community structural diversities increased with the application of 0.5 mg/g of 4-hydroxybenzoic acid. Thus, we concluded that both soil microbes and root exudates might be the recipients of 4-hydroxybenzoic acid. |
Author | Guo, Xiu-wu Li, Kun Liu, Zhen-dong Xie, Hong-gang Wang, Bo Han, Xiao Guo, Yin-shan Xu, Shi-jie |
Author_xml | – sequence: 1 givenname: Xiu-wu surname: Guo fullname: Guo, Xiu-wu organization: Pomology Department, College of Horticulture, Shenyang Agricultural University – sequence: 2 givenname: Bo surname: Wang fullname: Wang, Bo organization: Pomology Department, College of Horticulture, Shenyang Agricultural University – sequence: 3 givenname: Kun surname: Li fullname: Li, Kun email: xhgbox@163.com organization: Pomology Department, College of Horticulture, Shenyang Agricultural University – sequence: 4 givenname: Zhen-dong surname: Liu fullname: Liu, Zhen-dong organization: Pomology Department, College of Horticulture, Shenyang Agricultural University – sequence: 5 givenname: Xiao surname: Han fullname: Han, Xiao organization: Pomology Department, College of Horticulture, Shenyang Agricultural University – sequence: 6 givenname: Shi-jie surname: Xu fullname: Xu, Shi-jie organization: Pomology Department, College of Horticulture, Shenyang Agricultural University – sequence: 7 givenname: Yin-shan surname: Guo fullname: Guo, Yin-shan organization: Pomology Department, College of Horticulture, Shenyang Agricultural University – sequence: 8 givenname: Hong-gang surname: Xie fullname: Xie, Hong-gang organization: Crafts Department, Liaoning Economic Management Cadre College |
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CitedBy_id | crossref_primary_10_3390_metabo11060349 crossref_primary_10_1016_j_apsoil_2019_07_020 crossref_primary_10_1007_s11104_019_04220_9 crossref_primary_10_1007_s13199_024_01020_3 crossref_primary_10_1016_j_micres_2024_127860 crossref_primary_10_1038_srep33962 crossref_primary_10_3390_agronomy11081567 |
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SubjectTerms | 4-hydroxybenzoic acid Acids autotoxicity Bacteria bacterial communities Biolog EcoPlates biotechnology Community structure DGGE (denaturing gradient gel electrophoresis) Electrophoresis Exudates functional diversity fungal communities Fungi Gel electrophoresis grapes Grapevines Microbiomes Microorganisms p-Hydroxybenzoic acid Phenolic compounds Phenols Rhizosphere rRNA 16S soil soil bacteria soil fungi Soil microorganisms Soil structure Soils Spacer region Structure-function relationships Substrates Vitis labrusca Vitis riparia Vitis vinifera |
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Title | Effect of 4-hydroxybenzoic acid on grape (Vitis vinifera L.) soil microbial community structure and functional diversity |
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