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Articles

Phytostimulation of lowland soil contaminated with imidazolinone herbicides

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References

  • Alves C, Galon L, Winter FL, Basso FJM, Holz CM, Kaizer RR, Perin GF. 2019. Winter species promote phytoremediation of soil contaminated with protox-inhibiting herbicides. Planta Daninha. 37:e019184783. doi:10.1590/s0100-83582019370100020.
  • Belo AF, Coelho A, Ferreira LR, Silva AA, Santos JB. 2011. Potential of plant species in the remediation of soil contaminated with sulfentrazone. Planta Daninha. 29(4):821–828. doi:10.1590/S0100-83582011000400012.
  • Bundt AC, Avila AL, Pivetta A, Agostinetto D, Dick DP, Burauel P. 2015. Imidazolinone degradation in soil in response to application history. Planta Daninha. 33(2):341–349. doi:10.1590/0100-83582015000200020.
  • Chen X, Ge B, Chang C. 2010. Advances in studies on the environmental behaviors of imidazolinone herbicides. Fine Chem Intermed. 40:1–6.
  • Cordeiro MAS, Corá JE, Nahas E. 2012. Atributos bioquímicos e químicos do solo rizosférico e não rizosférico de culturas em rotação no sistema de semeadura direta. Rev Bras Ciênc Solo. 36(6):1794–1803. doi:10.1590/S0100-06832012000600013.
  • Durand-Morat A, Nalley LL, Thoma G. 2018. The implications of red rice on food security. Glob Food Sec. 18:62–75. doi:10.1016/j.gfs.2018.08.004.
  • Flint JF, Witt WW. 1997. Microbial degradation of imazaquin and imazethapyr. Weed Sci. 45(4):586–591. doi:10.1017/S004317450008886X.
  • Kemmerich M, Bernardi G, Adaime MB, Zanella R, Prestes OD. 2015. Simple and efficient method for imidazolinone herbicides determination in soil by ultra-high performance liquid chromatography - tandem mass spectrometry. J Chromatogr A. 1412:82–89. doi:10.1016/j.chroma.2015.08.005.
  • Kraemer AF, Marchesan E, Avila LA, Machado SLO, Grohs M, Massoni PFS, Sartori G. 2009. Persistência dos herbicidas imazethapyr e imazapic em solo de arroz irrigado. Planta Daninha. 27(3):581–588. doi:10.1590/S0100-83582009000300020.
  • Madalão JC, Pires FR, Chagas K, Cargnelutti A, Procópio OS. 2012. Uso de leguminosas para fitorremediação de solo contaminado com sulfentrazone. Pesqui Agropecu Trop. 42(4):390–396. doi:10.1590/S1983-40632012000400001.
  • Montpetit É, Lachapelle E. 2017. New environmental technology uptake and bias toward the status quo: the case of phytoremediation. Environ Technol Innov. 7:102–109. doi:10.1016/j.eti.2016.12.008.
  • Oliveira TA, Santos JB, Camelo GN, Botelho RG, Lázari TM. 2009. Efeito da interação do nicosulfuron e chlorpyrifos sobre o banco de sementes e os atributos microbianos do solo. Rev Bras Ciênc Solo. 33(3):563–570. doi:10.1590/S0100-06832009000300009.
  • Pinto JJO, Noldin JA, Machado A, Pinho CF, Rosenthal MD, Donida A, Galon L, Durigan M. 2009. Milho (Zea mays) como espécie bioindicadora da atividade residual de (imazethapyr + imazapic). Planta Daninha. 27(spe):1005–1014. doi:10.1590/S0100-83582009000500014.
  • Pinto JJO, Noldin JA, Pinho CF, Rossi F, Galon L, Almeida GF. 2009. Atividade residual de (imazethapyr + imazapic) para sorgo granífero (Sorghum bicolor) semeado em rotação com o arroz irrigado. Planta Daninha. 27(spe):1015–1024. doi:10.1590/S0100-83582009000500015.
  • Pinto JJO, Noldin JA, Rosenthal MD, Pinho CF, Rossi F, Machado A, Piveta L, Galon L. 2009. Atividade residual de (imazethapyr + imazapic) sobre azevém anual (Lolium multiflorum), semeado em sucessão ao arroz irrigado, sistema clearfield®. Planta Daninha. 27(3):609–619. doi:10.1590/S0100-83582009000300023.
  • Pires FR, Souza CM, Cecon P, Santos JB, Tótola MR, Procópio SO, Silva AA, Silva C. 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.
  • Piveta LB, Pinto JJO, Avila LA, Noldin JA, Santos LO. 2018. Selectivity of imazapic + imazapyr herbicides on irrigated rice as affected by seed treatment with dietholate and clomazone applied in preemergence. Planta Daninha. 36:e018149361. doi:10.1590/s0100-83582018360100062.
  • Procópio SO, Santos JB, Pires FR, Silva AA, Santos EA, Cargnelutti Filho A. 2007. Development of bean plants in soil contaminated with the herbicide trifloxysulfuron-sodium after Stizolobium aterrimum and Canavalia ensiformis cultivation. Planta Daninha. 25(1):87–96. doi:10.1590/S0100-83582007000100010.
  • Rainbird B, Bentham RH, Soole KL. 2018. Rhizoremediation of residual sulfonylurea herbicides in agricultural soils using Lens culinaris and a commercial supplement. Int J Phytoremediation. 20(2):104–113. doi:10.1080/15226514.2017.1337070.
  • Reck L, Reimche GB, Alves CR, do Vale Abreu K, Oliveita MA, de Oliveira Machado SL. 2018. Efeito dos herbicidas imazapir e imazapique na comunidade fitoplanctônica em lavoura de arroz irrigado. Iheringia Ser Bot. 73(3):298–307. doi:10.21826/2446-8231201873307.
  • Refatti JP, Avila LAD, Noldin JA, Pacheco I, Pestana RR. 2017. Leaching and residual activity of imidazolinone herbicides in lowland soils. Cienc Rural. 47(5). doi:10.1590/0103-8478cr20160705.
  • Santos EA, Costa MD, Ferreira LR, Reis MR, França AC. Santos JB 2010. Atividade rizosférica de solo tratado com herbicida durante processo de remediação por Stizolobium aterrimum. Pesq Agropec Trop. 40(1):1–7. doi:10.5216/pat.v40i1.4670.
  • Santos JB, Ferreira EA, Fialho CMT, Santos EA, Galon L, Concenço G, Asiazú I, Silva AA. 2009. Biodegradation of glyphosate in rhizospheric soil cultivated with Glycine max, Canavalia ensiformis e Stizolobium aterrimum. Planta Daninha. 27(4):781–787. doi:10.1590/S0100-83582009000400016.
  • Shaner DL. 2014. Herbicide handbook. 10th ed. Lawrence (KS): Weed Science Society of America.
  • Souto KM, Jacques RJS, Avila LA, Machado SLO, Zanella R, Refatti JP. 2013. Biodegradação dos herbicidas imazetapir e imazapique em solo rizosférico de seis espécies vegetais. Cienc Rural. 43(10):1790–1796. doi:10.1590/S0103-84782013001000010.
  • Souza LA, Andrade SAL, Souza ACR, Schiavinato MA. 2013. Evaluation of mycorrhizal influence on the development and phytoremediation potencial of Canavalia gladiate in Pb-contaminated soils. Int J Phytoremediation. 15(5):465–476. doi:10.1080/15226514.2012.716099.
  • Souza WMD, Guimarães FAR, Souza MDF, Silva DV, Melo C. 2017. Rhizospheric activity of phytoremediation species in soil contaminated with picloram. Pesqui Agropecu Trop. 47(2):127–133. doi:10.1590/1983-40632016v4743289.
  • Stotzky G. 1965. Microbial respiration. In:Black CA, editor. Methods of soil analysis. Madison (WI): ASA. p. 1550–1572.
  • Su W, Hao H, Ding M, Wu R, Xu H, Xue F, Shen C, Sun L, Lu C. 2019. Adsorption and degradation of imazapic in soils under different environmental conditions. PLoS One. 14(7):e0219462. doi:10.1371/journal.pone.0219462.
  • Tedesco MJ, Gianello C, Bissani CA, Bohnen H, Volkweiss SJ. 1995. Análises de solo, plantas e outros materiais. 2a.ed. Porto Alegre: UFRGS.
  • Truu J, Truu M, Espenberg M, Nõlvak H, Juhanson J. 2015. Phytoremediation and plant-assisted bioremediation in soil and treatment wetlands: a review. Open Biotechnol J. 9(1):85–92. doi:10.2174/1874070701509010085.
  • Venske E, Schaedler CE, Ritter R, Fin SS, Bahry CA, De Avila LA, Zimmer PD. 2016. Seletividade de herbicidas sobre arroz irrigado em resposta à época de semeadura e redução da luminosidade em fases do desenvolvimento. Rev Ceres. 63(2):165–173. doi:10.1590/0034-737X201663020007.
  • Wang X, Liu X, Wang H, Dong Q. 2007. Utilization and degradation of imazaquim by a naturally occurring isolate of Arthrobacter crystallopoietes. Chemosphere. 67(11):2156–2162. doi:10.1016/j.chemosphere.2006.12.042.
  • Zhang C, Liu X, Dong F, Xu J, Zheng Y. 2010. The effect of imazethapyr on soil microbes in soybean fields in northeast China. Chem Ecol. 26(3):173–182. doi:10.1080/02757541003785817.

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