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Research Article

Rhizosphere-associated microbiota of Canavalia ensiformis in sulfentrazone bioremediation

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References

  • Alencar BTB, Ribeiro VHV, Cabral CM, dos Santos NMC, Ferreira EA, Francino DMT, Santos JBd, Silva DV, Souza MdF 2020. Use of macrophytes to reduce the contamination of water resources by pesticides. Ecol Indic. 109:105785. doi: 10.1016/j.ecolind.2019.105785.
  • Ashraf MN, Waqas MA, Rahman S. 2022. Microbial metabolic quotient is a dynamic indicator of soil health: trends, implications and perspectives. Eurasian Soil Sc. 55(12):1794–1803. doi: 10.1134/S1064229322700119.
  • Barroso GM, Dos Santos EA, Pires FR, Galon L, Cabral CM, Dos Santos JB. 2023. Phytoremediation: a green and low-cost technology to remediate herbicides in the environment. Chemosphere. 334:138943. doi: 10.1016/j.chemosphere.2023.138943.
  • Belo AF, Pires FR, Bonomo R, Cargnelutti Filho A, Tenis LHO. 2016. Fitorremediação com sulfentrazone em condições de campo. Rev Caatinga. 29(1):119–126. doi: 10.1590/1983-21252016v29n114rc.
  • Bzour M, Zuki FM, Mispan MS, Jodeh S, Abdel Latif M. 2019. Determination of the leaching potential and residues activity of imidazolinone herbicide in clearfield rice soil using high-performance liquid chromatography. Bull Environ Contam Toxicol. 103(2):348–353. doi: 10.1007/s00128-019-02625-x.
  • Cabral CM, Souza MdF, Alencar BTB, Ferreira EA, Silva DV, Reginaldo LTRT, Dos Santos JB. 2023. Sensibility, multiple tolerance and degradation capacity of forest species to sequential contamination of herbicides in groundwaters. J Hazard Mater. 448:130914. doi: 10.1016/j.jhazmat.2023.130914.
  • Correa Dos Santos NM, Monteiro PG, Ferreira EA, Alencar BTB, Cabral CM, Dos Santos JB. 2021. Use of Eichhornia crassipes and Pistia stratiotes for environmental services: decontamination of aquatic environments with atrazine residues. Aquat Bot. 176:103470. doi: 10.1016/j.aquabot.2021.103470.
  • Curl EA, Rodriguez-Kabana R. 1972. Microbial interaction. In: Wilkinson RE, editors. Research methods in weed science. Atlanta (EUA): Southern Weed Science Society. p. 162–194.
  • Del Buono D, Terzano R, Panfili I, Bartucca ML. 2020. Phytoremediation and detoxification of xenobiotics in plants: herbicide-safeners as a tool to improve plant efficiency in the remediation of polluted environments. A mini-review. Int J Phytoremediation. 22(8):789–803. doi: 10.1080/15226514.2019.1710817.
  • De Oliveira AM, Ribeiro FP, Ferraço M, Ferreira AB. 2014. The validation of an analytical method for sulfentrazone residue determination in soil using liquid chromatography and a comparison of chromatographic sensitivity to millet as a bioindicator species. Molecules. 19(8):10982–10997. doi: 10.3390/molecules190810982.
  • Ferraço M, Pires FR, Belo AF, Celin A, Bonomo R. 2017. Efeito da densidade populacional de Canavalia ensiformis na fitorremediação de solo contaminado com sulfentrazone. Revista Ciência Agronômica. 48:32–40.
  • Ferreira DF. 2014. Sisvar: a guide for its bootstrap procedures in multiple comparisons. Ciênc Agrotec. 38(2):109–112. doi: 10.1590/S1413-70542014000200001.
  • Finley JW, Duke SO. 2020. Agnes Rimando, a pioneer in the fate of glyphosate and its primary metabolite in plants. J Agric Food Chem. 68(20):5623–5630. doi: 10.1021/acs.jafc.0c00811.
  • Gandini, EMM. 2011. Capacidade competitiva, seletividade de herbicidas e atividade microbiana rizosférica de mudas de Hymenaea courbaril L. [dissertation]. Diamantina (MG): Universidade Federal dos Vales do Jequitinhonha e Mucuri.
  • Gehrke VR, Camargo ER, Avila LA. 2020. Sulfentrazone: environmental dynamics and selectivity. Planta Daninha. 38:32. doi: 10.1590/s0100-83582020380100032.
  • Grzegórska A, Rybarczyk P, Rogala A, Zabrocki D. 2020. Phytoremediation from environment cleaning to energy generation current status and future perspectives. Energies. 13(11):2905. doi: 10.3390/en13112905.
  • Hadad HR, Mufarrege MDLM, Di Luca GA, Denaro AC, Nocetti E, Maine MA. 2022. Potential metal phytoremediation in peri-urban wetlands using rooted macrophytes. Ecol Eng. 182:106734. doi: 10.1016/j.ecoleng.2022.106734.
  • Hariyo DD, Saparrat MC, Barrera MD. 2020. Changes in microbial communities during phytoremediation of contaminated soil with phenanthrene. Braz J Microbiol. 51(4):1853–1860. doi: 10.1007/s42770-020-00309-x.
  • Iacumin L, Cecchini F, Vendrame M, Comi G. 2020. Emulsion PCR (ePCR) as a tool to improve the power of DGGE analysis for microbial population studies. Microorganisms. 8(8):1099. doi: 10.3390/microorganisms8081099.
  • Islam KR, Weil RR. 1998. Microwave irradiation of soil for routine measurement of microbial biomass carbon. Biol Fertil Soils. 27(4):408–416. doi: 10.1007/s003740050451.
  • Júnior LHB, D, Silva EMG, De Aguiar ACM, Souza PSR, De Paula DF, Da Silva AA. 2022. Sulfentrazone mobility in columns filled with ultisol and oxisol horizons. Environ Earth Sci. 81(3):101. doi: 10.1007/s12665-021-10165-z.
  • Kanissery R, Liu W, Tiwari R, Sims G. 2021. Impact of soil aeration on the environmental fate of pre-emergent herbicide metolachlor. Applied Sciences. 11(18):8567. doi: 10.3390/app11188567.
  • Liang H, Li S, Zhang L, Xu C, Lv Y, Gao S, Cao W. 2022. Long-term green manuring enhances crop N uptake and reduces N losses in rice production system. Soil Tillage Res. 220:105369. doi: 10.1016/j.still.2022.105369.
  • Liu L, Bilal M, Duan X, Iqbal HM. 2019. Mitigation of environmental pollution by genetically engineered bacteria – current challenges and future perspectives. Sci Total Environ. 667:444–454. doi: 10.1016/j.scitotenv.2019.02.390.
  • Madalão JC, Silva AA, Faria AT, Saraiva DT, Pires FR, Jakelaitis A. 2019. Leaching and persistence of sulfentrazone when mixed with adjuvants. Planta Daninha. 37:88. doi: 10.1590/s0100-83582019370100088.
  • Madalão JC, D, Silva AA, J, Wdao Saraiva DT, Melo CAD, Leonardo D. 2016. O herbicida sulfentrazone interfere na biomassa microbiana e na atividade da microbiota do solo. Revista De Ciências Agrárias: amazonian Journal of Agricultural and Environmental Sciences. 59(1):54–59.
  • Martinez CO, Silva CM, Fay EF, Abakerli RB, Maia AH, Durrant LR. 2010. Microbial degradation of sulfentrazone in a Brazilian rhodic hapludox soil. Braz J Microbiol. 41(1):209–217. doi: 10.1590/S1517-83822010000100030.
  • Mielke KC, Bertuani RR, Pires FR, Cotta AJB, Egreja Filho FB, Madalão JC. 2020. Does Canavalia ensiformis inoculation with Bradyrhizobium sp. enhance phytoremediation of sulfentrazone-contaminated soil? Chemosphere. 255:127033. doi: 10.1016/j.chemosphere.2020.127033.
  • Mohanty SS, Jena HM. 2019. Degradation kinetics and mechanistic study on herbicide bioremediation using hyper butachlor-tolerant Pseudomonas putida G3. Pro Safety Environ Protect. 125:172–181. doi: 10.1016/j.psep.2019.03.014.
  • Nunes RLC, Neto FB, Lima JSSD, Chaves AP, Silva JND, Santos ECD. 2020. Effect of green manuring with Merremia aegyptia on agro-economic efficiency of radish production. Rev Caatinga. 33(4):964–973. doi: 10.1590/1983-21252020v33n411rc.
  • Ohmes GA, Mueller TC. 2007. Sulfentrazone adsorption and mobility in surface soil of the southern United States. Weed Technol. 21(3):796–800. doi: 10.1614/WT-06-185.1.
  • Pires FR, Souza CMd, Cecon PR, Santos JBd, Tótola MR, Procópio SdO, Silva AAd, Silva CSW. 2005. Inferências sobre atividade rizosférica de espécies com potencial para fitorremediação do herbicida tebuthiuron. Rev Bras Ciênc Solo. 29(4):627–634. doi: 10.1590/S0100-06832005000400015.
  • Ramezanpoor M, Salehian H, Babanezhad E, Rezvani M. 2022. The leaching of atrazine and plant species sensitivity to atrazine using bioassays and chemical analyses. Soil Sediment Contaminat. 31(4):456–467. doi: 10.1080/15320383.2021.1963667.
  • Rani BS, Chandrika V, Reddy GP, Sudhakar P, Nagamadhuri KV, Sagar GK. 2022. Residual effect of weed management practices executed in preceding maize on succeeding greengram. Legume Res-An Int J. 45(5):631–638.
  • Rovira AD. 1965. Plant root exudates and their influence upon soil microorganisms. In: Baker KF, Snyder WC, editors, Ecology of soil-borne plant pathogens prelude to biological control. Berkeley: University of California Press, p. 170–195.
  • Santos EA, Santos JB, Ferreira LR, Costa MD, Silva AA. 2007. Fitoestimulação por Stizolobium aterrimum como processo de remediação de solo contaminado com trifloxysulfuron-sodium. Planta Daninha. 25(2):259–265. doi: 10.1590/S0100-83582007000200004.
  • Santos E, Pires FR, Ferreira AD, Egreja Filho FB, Madalão JC, Bonomo R, Rocha Junior PRD. 2019. Phytoremediation and natural attenuation of sulfentrazone: mineralogy influence of three highly weathered soils. Int J Phytoremed. 21(7):652–662. doi: 10.1080/15226514.2018.1556583.
  • Santos VS, Jakelaitis A, Pereira LS, Sousa GDd, Oliveira GSd, Silva JN, Vasconcelos SMA, Martins PF. 2019. Seleção de espécies vegetais tolerantes ao herbicida hexazinone. Nativa. 7(4):389–395. doi: 10.31413/nativa.v7i4.7266.
  • Seitz VA, McGivern BB, Daly RA, Chaparro JM, Borton MA, Sheflin AM, Kresovich S, Shields L, Schipanski ME, Wrighton KC, et al. 2022. Variation in root exudate composition influences soil microbiome membership and function. Appl Environ Microbiol. 88(11):e00226–22. doi: 10.1128/aem.00226-22.
  • Shen Y, Ji Y, Li C, Luo P, Wang W, Zhang Y, Nover D. 2018. Effects of phytoremediation treatment on bacterial community structure and diversity in different petroleum-contaminated soils. Int J Environ Res Public Health. 15(10):2168. doi: 10.3390/ijerph15102168.
  • Shirzadifar A, Bajwa S, Nowatzki J, Shojaeiarani J. 2020. Development of spectral indices for identifying glyphosate-resistant weeds. Comput Electron Agric. 170:105276. doi: 10.1016/j.compag.2020.105276.
  • Souto KM, Jacques RJS, Zanella R, Machado SLDO, Balbinot A, Avila LAD. 2020. Phytostimulation of lowland soil contaminated with imidazolinone herbicides. Int J Phytoremediation. 22(7):774–780. doi: 10.1080/15226514.2019.1710814.
  • Stotzky G. 1965. Microbial respiration. In: Black CA, editor. Methods of soil analysis. Madison: American Society of Agronomy 1965. p. 1551–1572.
  • Suzuki MT, Giovannoni SJ. 1996. Bias caused by template annealing in the amplification of mixtures of 16S rRNA genes by PCR. Appl Environ Microbiol. 62(2):625–630. doi: 10.1128/aem.62.2.625-630.1996.8593063.
  • Tang G, Tian Y, Gao Y, Zhou Z, Chen X, Li Y, Yu X, Wang H, Li X, Cao Y. 2022. Supramolecular self-assembly of herbicides with reduced risks to the environment. ACS Nano. 16(3):4892–4904. doi: 10.1021/acsnano.2c00539.
  • Vance ED, Brookes PC, Jenkinson DS. 1987. An extraction method for measuring soil microbial biomass C. Soil Biol Biochem. 19(6):703–707. doi: 10.1016/0038-0717(87)90052-6.
  • Vieira LAJ, Alves RDFB, Menezes-Silva PE, Mendonça MAC, Silva MLF, Silva MCAP, Sousa LF, Loram-Lourenço L, Alves da Silva A, Costa AC, et al. 2021. Water contamination with atrazine: is nitric oxide able to improve Pistia stratiotes phytoremediation capacity? Environ Pollut. 272:115971. doi: 10.1016/j.envpol.2020.115971.
  • Weldmichael TG, Michéli E, Fodor H, Simon B. 2020. The influence of depth on soil chemical properties and microbial respiration in the upper soil horizons. Eurasian Soil Sc. 53(6):780–786. doi: 10.1134/S1064229320060137.
  • Xiao W, Lin G, He X, Yang Z, Wang L. 2022. Interactions among heavy metal bioaccessibility, soil properties and microbial community in phyto-remediated soils nearby an abandoned realgar mine. Chemosphere. 286(Pt 1):131638. doi: 10.1016/j.chemosphere.2021.131638.
  • Zhang L, Hu Q, Liu B, Li F, Jiang JD. 2020. Characterization of a linuron-specific amidohydrolase from the newly isolated bacterium Sphingobium sp. strain SMB. J Agric Food Chem. 68(15):4335–4345. doi: 10.1021/acs.jafc.0c00597.

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