Growth and biochemicals assessment of some landscape turfgrasses under Cd toxicity through bio-inoculation system

Publish Year: 1401
نوع سند: مقاله ژورنالی
زبان: Persian
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JR_JISPP-11-52_003

تاریخ نمایه سازی: 28 اسفند 1401

Abstract:

Application of strategies inducing a heavy metal tolerant turfgrass is necessary for cultivation management. Water and soil contamination with heavy metals is an increasing concern for the human and environment health. This study was conducted to evaluate the mitigation of environmental Cd toxicity through landscape turfgrasses as affected by two arbuscular mycorrhizal fungi (AMF) species and to monitor some physiological and biochemical properties of the plants in various Cd concentrations. Plants were inoculated with Rhizophagus intraradices and Glomus mosseae and without AMF, with the addition of different Cd concentration (۰, ۲۰۰, and ۳۰۰ µg/L). AMF could colonize with the roots of turfgrasses in order as follows: Agropyron elongatum > Festuca aurandinace > F. ovina > Lolium perenne. The highest AMF colonization (~۷۰%), Cd concentration in shoot (۲۵۰ mg/Kg dry weight) and aerial and underground biomass (about ۳ and ۱.۲ g/pot, respectively) as well as growth rate were displayed in Agropyron elongatum when inoculated with G. mosseae under ۲۰۰ µg/L Cd solution. Both AMF species reduced H۲O۲ production and lipid peroxidation and enhanced catalase, peroxidase and superoxide dismutase activity. Lolium perenne accumulated higher Cd in its roots as compared to the other turfgrasses under non-AMF. Although A. elongatum and Festuca aurandinace had a translocation factor (TF)>۱, they could produce considerable biomass and grow well through AMF inoculation. It is suggested that the two latter species could be used under highly Cd-contaminated soil/water if AMF is prepared.

Authors

Mehdi Salehi

Department of Horticultural Science, Faculty of Agricultural Science, University of Guilan, Rasht, Iran

Kamal Gholamipourfard

Department of Plant Production, College of Agriculture and Natural Resources of Darab, Shiraz University, Darab, Fars, Iran

Noroozisharaf Alireza

Department of Horticulture and Landscape Engineering, Sayyed Jamaleddin Asadabadi University, Asadabad, Iran

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  • Beyer, W. F. and Fridovich, I. (۱۹۸۷) Assaying for superoxide ...
  • Bhaduri, A. M. and Fulekar, M. H. (۲۰۱۲) Assessment of ...
  • Broadley, M. R., Willey, N. J., Wilkins, J. C., Baker, ...
  • Brouwer, M. and Brouwer, T. H. (۱۹۹۸) Biochemical defense mechanisms ...
  • Chance, B. and Maehly, A. C. (۱۹۵۵) Assay of catalases ...
  • Chen, Y., Li, X. and Shen, Z. (۲۰۰۴) Leaching and ...
  • Curk, M., Vidrih, M., Laznik, Z. and Trdan, S. (۲۰۱۷) ...
  • Duponnois, R., Kisa, M., Assigbetse, K., Prin, Y., Thioulouse, J., ...
  • Fard, K. G., Zakizadeh, H., Ghasemnezhad, M., Kafi, M. and ...
  • Garg, N. and Chandel, S. (۲۰۱۵) Role of arbuscular mycorrhiza ...
  • Gunathilakae, N., Yapa, N. and Hettiarachchi, R. (۲۰۱۸) Effect of ...
  • ۷: ۴۷۷-۴۸۲ ...
  • Heath, R. L. and Packer, L. (۱۹۶۸) Photoperoxidation in isolated ...
  • Hoagland, D. R. and Arnon, D. I. (۱۹۵۰) The Water-Culture ...
  • Hu, J. L., Wu, S. C. and Wu, F. Y. ...
  • Jacob, J. M., Karthik, C., Saratale, R. G., Kumar, S. ...
  • Kanwal, S., Bano, A. and Malik, R. N. (۲۰۱۵) Effects ...
  • Kashem, M. A., Singh, B. R., Huq, S. M. I. ...
  • Kormanic, P. P. and McGraw, A. C. (۱۹۸۲) Quantification of ...
  • Kupper, H., Parameswaran, A., Leitenmaier, B., Trtilek, M. and Setlik, ...
  • Li, K. and Ramakrishna, W. (۲۰۱۱) Effect of multiple metal ...
  • Liu, H., Yuan, M., Tan, S., Yang, X., Lan, Z., ...
  • Maleki, M., Ghorbanpour, M. and Kariman, K. (۲۰۱۷) Physiological and ...
  • Meier, S., Borie, F., Bolan, N. and Cornejo, P. (۲۰۱۲) ...
  • Mendez, M. O. and Maier, R. M. (۲۰۰۸) Phytostabilization of ...
  • Nielsen, J. D. and Jensen, A. (۱۹۸۳) Influence of vesicular-arbuscular ...
  • Phillips, J. M. and Hayman, D. S. (۱۹۷۰) Improved procedures ...
  • ۵۵: ۱۵۸-۱۶۱ ...
  • Salehi, M., Fotouhi-Ghazvini, R. and Jafarian, V. (۲۰۱۲) Evaluation of ...
  • ۷: ۴۱۳-۴۲۰ ...
  • Sergiev, L., Alexieva, E. and Karanov, E. (۱۹۹۷) Effect of ...
  • ۵۱: ۱۲۱-۱۲۴ ...
  • Shah, K., Mankad, A. U. and Reddy, M. N. (۲۰۱۷) ...
  • Shahabivand, S., Maivan, H. Z., Goltapeh, E. M., Sharifi, M. ...
  • Sharma, P., Kumar, T., Yada, M., Gill, S. S. and ...
  • Shute, T. and Macfie, S. M. (۲۰۰۶) Cadmium and zinc ...
  • Torres, Y. A., Busso, C., Montenegro, O., Ithurrart, L., Giorgetti, ...
  • Vishnoi, S. R. and Srivastava, P. N. (۲۰۰۷) Phytoremediation-green for ...
  • Zardak, S., Movahhedi, M., Salehi, A. and Gholamhoseini, M. (۲۰۱۸) ...
  • Zhang, F., Zhang, H., Wang, G., Xu, L. and Shen, ...
  • Zhang, Y. P. and Nan, Z. B. (۲۰۰۷) Growth and ...
  • ۱۹۳: ۳۷۷-۳۸۶ ...
  • Zhu, G., Xiao, H., Guo, Q., Zhang, Z., Zhao, J. ...
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