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Research Article

The physiological mechanism of the tolerance of Eichhornia crassipes (Mart.) Solms to cadmium

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References

  • Balestrasse KB, Gardey L, Gallego SM, Tomaro ML. 2001. Response of antioxidant defence system in soybean nodules and roots subjects to cadmium stress. Aust J Plant Physiol. 28(6):497–504. doi:10.1071/PP00158.
  • Bauddh K, Singh RP. 2012. Cadmium tolerance and its phytoremediation by two oil yielding plants Ricinus communis (L.) and Brassica juncea (L.) from the contaminated soil. Int J Phytoremediation. 14(8):772–785. doi:10.1080/15226514.2011.619238.
  • Borker AR, Mane AV, Saratale GD, Pathade GR. 2013. Phytoremediation potential of Eichhornia crassipes for the treatment of cadmium in relation with biochemical and water parameters. Emir J Food Agric. 25(6):443–456. doi:10.9755/ejfa.v25i6.13970.
  • Das S, Goswami S, Talukdar AD. 2016. Physiological responses of water hyacinth, Eichhornia crassipes (Mart.) Solms, to cadmium and its phytoremediation potential. Turk J Biol. 40(1):84–94. doi:10.3906/biy-1411-86.
  • Fan GN. 1991. Determination of stomatal guard cell size in wheat leaves and its application in agriculture. Bull Biol. 26(8):8.
  • Ghabbour EA, Davies G, Lam YY, Vozzella ME. 2004. Metal binding by humic acids isolated from water hyacinth plants (Eichhornia crassipes [Mart.] Solm-Laubach: Pontedericeae) in the Nile Delta, Egypt. Environ Pollut. 131(3):445–451. doi:10.1016/j.envpol.2004.02.013.
  • Guo WJ, Li QY, Zhao WH, Zhao LY. 2019. Application of Eichhornia crassipes on the purification of contaminated water. IOP Conf Ser Earth Environ Sci. 300(5):052046. doi:10.1088/1755-1315/300/5/052046.
  • Li HS, Sun Q, Zhao SJ. 2000. Principles and techniques of plant physiological and biochemical experiments. Beijing: Higher Education Press.
  • Li X, Zhou YL, Yang YQ, Yang SH, Sun XD, Yang YP. 2015. Physiological and proteomics analyses reveal the mechanism of Eichhornia crassipes tolerance to high-concentration cadmium stress compared with Pistia stratiotes. PLOS One. 10(4):e0124304. doi:10.1371/journal.pone.0124304.
  • Lin MZ, Jin MF, Xu K, He LC, Cheng DL. 2018. Phosphate-solubilizing bacteria improve the phytoremediation efficiency of Wedelia trilobata for Cu-contaminated soil. Int J Phytoremediation. 20(8):813–822. doi:10.1080/15226514.2018.1438351.
  • Maine MA, Duarte MV, Suñé NL. 2001. Cadmium uptake by floating macrophytes. Water Res. 35(11):2629–2634. doi:10.1016/S0043-1354(00)00557-1.
  • Ni Q, Ma YJ, Yang WP, Yang YY. 2019. Effect of NaCl treatment on the anatomy of Lycium ruthenicum leaves. Pratacultural Sci. 36(7):1803–1810. doi:10.11829/j.issn.1001-0629.2019-0170.
  • Palai BK, Sarangi SK, Mohapatra SS. 2019. Investigation of physiochemical and thermal properties of Eichhornia crassipes fibers. J Nat Fibers. doi:10.1080/15440478.2019.1691110.
  • Reis INRS, Oliveira JA, Ventrella MC, Otoni WC, Marinato CS, Matos LP. 2020. Involvement of glutathione metabolism in Eichhornia crassipes tolerance to arsenic. Plant Biol. 22(2):346–350. doi:10.1111/plb.12988.
  • Rizwan M, Ali S, Rehman MZU, Rinklebe JR, Tsang DCW, Bashir A, Maqbool A, Tack FMG, Ok YS. 2018. Cadmium phytoremediation potential of Brassica crop species: a review. Sci Total Environ. 631–632:1175–1191. doi:10.1016/j.scitotenv.2018.03.104.
  • Shen WB, Xu LL, Ye MB, Zhang RX. 1996. Study on determination of ASP activity. Plant Physiol Commun. 32(3):203–206. doi:10.13592/j.cnki.ppj.1996.03.016.
  • Shi JG, Liu CF, Cai QS, Liu QQ, Hou CP. 2010. Cadmium accumulation and tolerance of two safflower cultivars in relation to photosynthesis and antioxidative enzymes. Bull Environ Contam Toxicol. 85(3):256–263. doi:10.1007/s00128-010-0067-0.
  • Shuvaeva OV, Belchenko LA, Romanova TE. 2013. Studies on cadmium accumulation by some selected floating macrophytes. Int J Phytoremediation. 15(10):979–990. doi:10.1080/15226514.2012.751353.
  • Sricoth T, Meeinkuirt W, Saengwilai P, Pichtel J, Taeprayoon P. 2018. Aquatic plants for phytostabilization of cadmium and zinc in hydroponic experiments. Environ Sci Pollut Res. 25(15):14964–14976. doi:10.1007/s11356-018-1714-y.
  • Stankovic S, Kalaba P, Stankovic AR. 2014. Biota as toxic metal indicators. Environ Chem Lett. 12(1):63–84. doi:10.1007/s10311-013-0430-6.
  • Sukumaran D. 2013. Phytoremediation of heavy metals from industrial effluent using constructed wetland technology. Appl Ecol Environ Sci. 1(5):92–97. doi:10.12691/aees-1-5-4.
  • Swain G, Adhikari S, Mohanty P. 2014. Phytoremediation of copper and cadmium from water using water hyacinth, Eichhornia crassipes. Int J Agr Sci Technol. 2(1):1–7. doi:10.14355/ijast.2014.0301.01.
  • Tiwari S, Dixit S, Verma N. 2007. An effective means of biofiltration of heavy metal contaminated water bodies using aquatic weed Eichhornia crassipes. Environ Monit Assess. 129(1–3):253–256. doi:10.1007/s10661-006-9358-7.
  • Wang AG, Luo GH. 1990. Quantitative relation between the reaction of hydroxylamine and superoxide anion radicals in plants. Plant Physiol Commun. 26(6):55–57. doi:10.13592/j.cnki.ppj.1990.06.03.
  • Wolverton B, McDonald RC. 1978. Bioaccumulation and detection of trace levels of cadmium in aquatic systems by Eichhornia crassipes. Environ Health Perspect. 27:161–164. doi:10.1289/ehp.7827161.
  • Wu FB, Chen F, Wei K, Zhang GP. 2004. Effect of cadmium on free amino acid, glutathione and ascorbic acid concentrations in two barley genotypes (Hordeum vulgare L.) differing in cadmium tolerance. Chemosphere. 57(6):447–454. doi:10.1016/j.chemosphere.2004.06.042.
  • Yang XE, Long XX, Ye HB, He ZL, Calvert DV, Stoffella PJ. 2004. Cadmium tolerance and hyperaccumulation in a new Zn-hyperaccumulating plant species (Sedum alfredii Hance). Plant Soil. 259(1/2):181–189. doi:10.1023/B:PLSO.0000020956.24027.f2.
  • Zhou JM, Jiang ZC, Qin XQ, Zhang LK, Huang QB, Xu GL. 2020. Effects and mechanisms of calcium ion addition on lead removal from water by Eichhornia crassipes. Int J Environ Res Public Health. 17(3):928. doi:10.3390/ijerph17030928.

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