1,549
Views
12
CrossRef citations to date
0
Altmetric
Research Paper

Fungicides alter the distribution and diversity of bacterial and fungal communities in ginseng fields

ORCID Icon, , , , &
Pages 8043-8056 | Received 19 Aug 2021, Accepted 12 Sep 2021, Published online: 19 Oct 2021

References

  • Steinberg G, Gurr S. Fungi, fungicide discovery and global food security. Fungal Genet Biol. 2020;144:103476.
  • Li Z, Fu J, Zhou R, et al. Effects of phenolic acids from ginseng rhizosphere on soil fungi structure, richness and diversity in consecutive monoculturing of ginseng. Saudi J Biol Sci. 2018;25(8):1788–1794.
  • Fang W, Yan D, Wang X, et al. Responses of nitrogen-cycling microorganisms to dazomet fumigation. Front Microbiol. 2018;9:2529.
  • Fang W, Wang X, Huang B, et al. Comparative analysis of the effects of five soil fumigants on the abundance of denitrifying microbes and changes in bacterial community composition. Ecotox Environ Safe. 2019;187:109850.
  • Wang YS, Huang YJ, Chen WC, et al. Effect of carbendazim and pencycuron on soil bacterial community. J Hazard Mater. 2009;172(1):84–91.
  • Shi K, Wang L, Zhou YH, et al. Effects of calcium cyanamide on soil microbial communities and Fusarium oxysporum f. sp. Cucumberinum. Chemosphere 2009;75(7):872–877.
  • Li Q, Zhang D, Cheng H, et al. Chloropicrin alternated with dazomet improved the soil’s physicochemical properties, changed microbial communities and increased strawberry yield. Ecotox Environ Safe. 2021;220:112362.
  • Han L, Kong X, Xu M, et al. Repeated exposure to fungicide tebuconazole alters the degradation characteristics, soil microbial community and functional profiles. Environ Pollut. 2021;287:117660.
  • Yan H, Wang D, Dong B, et al. Dissipation of carbendazim and chloramphenicol alone and in combination and their effects on soil fungal: bacterial ratios and soil enzyme activities. Chemosphere. 2011;84(5):634–641.
  • Wang X, Song M, Wang Y, et al. Response of soil bacterial community to repeated applications of carbendazim. Ecotox Environ Safe. 2012;75:33–39.
  • Bamaga M, Wyszkowska J, Kucharski J. Response of soil microorganisms and enzymes to the foliar application of Helicur 250EW fungicide on Horderum vulgare L. Chemosphere. 2020;242:125163.
  • Zhang H, Song J, Zhang Z, et al. Effects of cultivation ages and modes on microbial diversity in the rhizosphere soil of Panax ginseng diversity and the co-occurrence network complexity. J Hazard Mater. 2020;405:124208.
  • Mumbi MP, Eissa N, Noah BC, et al. Antepartum antibiotic treatment increases offspring susceptibility to experimental colitis: a role of the gut microbiota. Plos One. 2015;10(11):e0142536.
  • Edgar RC. UPARSE: highly accurate OTU sequences from microbial amplicon reads. Nat Methods. 2013;10(10):996.
  • Cole JR, Wang Q, Cardenas E, et al. The Ribosomal Database Project: improved alignments and new tools for rRNA analysis. Nucleic Acids Res. 2009;37(Database):141–145.
  • Jami E, Israel A, Kotser A, et al. Exploring the bovine rumen bacterial community from birth to adulthood. Isme J. 2013;7(6):1069–1079.
  • Wang Y, Sheng HF, He Y, et al. Comparison of the levels of bacterial diversity in freshwater, intertidal wetland, and marine sediments by using millions of illumina tags. Appl Environ Microbiol. 2012;78(23):8264.
  • Egamberdieva D, Wirth S, Li L, et al. Microbial cooperation in the rhizosphere improves liquorice growth under salt stress. Bioengineered. 2017;8(4):433–438.
  • Zheng W, Wang L, Wang X, et al. Dominant protozoan species in rhizosphere soil over growth of Beta vulgaris L.in Northeast China. Northeast China. Bioengineered 2020;11(1):229–240.
  • Wang Q, Sun H, Xu C, et al. Analysis of rhizosphere bacterial and fungal communities associated with rusty root disease of Panax ginseng. Appl Soil Ecol. 2019;138:245–252.
  • Sarsaiya S, Shi J, Chen J. A comprehensive review on fungal endophytes and its dynamics on Orchidaceae plants: current research, challenges, and future possibilities. Bioengineered. 2019;10(1):316–334.
  • Huang B, Yan D, Wang Q, et al. Effects of Dazomet Fumigation on Soil phosphorus and the Composition of pho D-Harboring Microbial Communities. J Agr Food Chem. 2020;68(18):5049–5058.
  • Zhang C, Li Y, Zhang T, et al. Increasing chitosanase production in Bacillus cereus by a novel mutagenesis and screen method. Bioengineered. 2021;12(1):266–277.
  • O’Mahony M, Henneberger R, Selvin J, et al. Inhibition of the growth of Bacillus subtilis DSM10 by a newly discovered antibacterial protein from the soil metagenome. Bioengineered. 2015;6(2):89–98.
  • Jain A, Sarsaiya S, Wu Q, et al. A review of plant leaf fungal diseases and its environment speciation. Bioengineered. 2019;10(1):409–424.
  • Shi TQ, Peng H, Zeng SY, et al. Microbial production of plant hormones: opportunities and challenges. Bioengineered. 2017;8(2):124–128.
  • Baudy P, Zubrod JP, Konschak M, et al. Environmentally relevant fungicide levels modify fungal community composition and interactions but not functioning. Environ Pollut. 2021;285:117234.
  • Nicola L, Turco E, Albanese D, et al. Fumigation with dazomet modifies soil microbiota in apple orchards affected by replant disease. Appl Soil Ecol. 2017;113:71–79.
  • Gao J, Pei H, Xie H. Synergistic effects of organic fertilizer and corn straw on microorganisms of pepper continuous cropping soil in China. Bioengineered. 2020;11(1):1258–1268.
  • Eo J, Park KC. Effects of dazomet on soil organisms and recolonisation of fumigated soil. Pedobiologia. 2014;57(3):147–154.
  • Zhu F, Xiao J, Zhang Y, et al. Dazomet application suppressed watermelon wilt by the altered soil microbial community. Sci Rep. 2020;10(1):21668.
  • Shen F, Wu W, Han X, et al. Study on the occurrence law and green control of grape gray mold from the perspective of ecological balance. Bioengineered. 2021;12(1):779–790.
  • Fang H, Han L, Cui Y, et al. Changes in soil microbial community structure and function associated with degradation and resistance of carbendazim and chlortetracycline during repeated treatments. Sci Total Environ. 2016;572:1203–1212.
  • Tyagi S, Lee KJ, Shukla P, et al. Dimethyl disulfide exerts antifungal activity against Sclerotinia minor by damaging its membrane and induces systemic resistance in host plants. Sci Rep. 2020;10(1):18183.
  • Zhang H, Song J, Zhang Z, et al. Exposure to fungicide difenoconazole reduces the soil bacterial community diversity and the co-occurrence network complexity. J Hazard Mater. 2020;405:124208.
  • Tortella GR, Mella-Herrera RA, Sousa DZ, et al. Carbendazim dissipation in the biomixture of on-farm biopurification systems and its effect on microbial communities. Chemosphere. 2013;93(6):1084–1093.
  • Wang X, Song M, Gao C, et al. Carbendazim induces a temporary change in soil bacterial community structure. J Environ. 2009;12:1679–1683.
  • Fournier B, Santos S, Gustavsen JA, et al. Impact of a synthetic fungicide (fosetyl-Al and propamocarb-hydrochloride) and a biopesticide (Clonostachys rosea) on soil bacterial, fungal, and protist communities. Sci Total Environ. 2020;738:139635.
  • Li W, Shen S, Chen H. Bio-herbicidal potential of wheat rhizosphere bacteria on Avena fatua L. grass. Bioengineered. 2021;12(1):516–526.
  • Zhang D, Yan D, Fang W, et al. Chloropicrin alternated with biofumigation increases crop yield and modifies soil bacterial and fungal communities in strawberry production. Sci Total Environ. 2019;675:615–622.
  • Huang X, Zhao J, Zhou X, et al. Differential responses of soil bacterial community and functional diversity to reductive soil disinfestation and chemical soil disinfestation. Geoderma. 2019;348:124–134.
  • Tian L, Shi S, Ma L, et al. The effect of Glomus intraradices on the physiological properties of Panax ginseng and on rhizospheric microbial diversity. J Ginseng Res. 2017;43(1):77–85.
  • Rajesh R, Godan T, Sindhu R, et al. Bioengineering advancements, innovations and challenges on green synthesis of 2, 5-furan dicarboxylic acid. Bioengineered. 2020;11(1):19–38.