Effect of zeolite, biochar, and mycorrhiza on phytoremediation potential of forage Amaranth (Amaranthus caudatus L.) in lead contaminated soil

سال انتشار: 1402
نوع سند: مقاله ژورنالی
زبان: فارسی
مشاهده: 47

فایل این مقاله در 13 صفحه با فرمت PDF قابل دریافت می باشد

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این مقاله:

شناسه ملی سند علمی:

JR_JISPP-12-58_009

تاریخ نمایه سازی: 29 بهمن 1402

چکیده مقاله:

High absorption and accumulation of lead in the cultivated Amaranthus caudatus L. make this plant suitable for the purpose of phytoremediation of lead-contaminated soils. The present factorial experiment was carried out based on a completely randomized design with three replications in the Greenhouse of the Faculty of Agriculture, Lorestan University, during ۲۰۱۹. The factors considered in the study included zeolite (۰, ۵ and ۱۰℅), biochar (۰, ۷.۵ and ۱۵℅), and mycorrhizal fungi (no mycorrhiza and use of mycorrhiza). The highest plant height (۱.۹۳ m) and root dry weight (۲.۵۵ g) were obtained in the combined treatment of not using zeolite, biochar ۱۵% by weight, and mycorrhiza. Also, the highest biological yield (۵۴.۰۵ g) and accumulated lead in roots (۲۰.۰۵ mg/kg) were obtained in the combined treatment of zeolite ۵%, biochar ۱۵%, and no mycorrhiza. Moreover, the highest number of sub-branches (۲۶.۶۷) was recorded in the combined treatment of zeolite ۱۰% + no biochar + no mycorrhiza (Z۲B۰M۰). Furthermore, the highest concentrations of lead in the soil around roots (۴۹.۹۲ mg/kg) were observed in the treatment consisting of zeolite ۵% + biochar ۷.۵% + mycorrhiza. Findings also showed the highest activities of catalase, peroxidase, and superoxide dismutase enzymes in the combined treatment of the plants with zeolite ۱۰% + biochar ۱۵% + no mycorrhiza were obtained. On the other hand, the highest activities of ascorbate peroxidase and glutathione reductase were recorded in the combined treatments of zeolite ۵% + biochar ۷.۵% + no use of mycorrhiza and zeolite ۱۰% + biochar ۱۵% + the use of mycorrhiza, respectively. The highest concentration of lead in leaves (۱۷.۷۱ mg/kg) was obtained in none zeolite + none mycorrhiza + biochar ۱۵%, which was among the best treatments of the study resulting in a high biological performance of the plants (۴۱.۵۵ g). Finally, the most favorable treatment with the highest biological yield (۵۴.۰۵ g) and maximum lead contents of the roots (۲۰.۰۵ mg/kg) was obtained by zeolite ۵% + biochar ۱۵% + none mycorrhiza. The maximum biological yield of the plant (۵۴.۰۵ g) and the highest concentration of lead in roots (۲۰.۰۵ mg/kg) were observed in the combined treatment of zeolite ۵%, biochar ۱۵%, and no mycorrhiza (Z۱B۲M۰). This is the best treatment for phytoremediation, in which the plants absorb the highest concentration of lead. On the other hand, the highest accumulation of lead in leaves (۱۷.۷۱ mg/kg) was obtained in the treatment with no zeolite and mycorrhiza + using biochar ۱۵% (Z۰B۲M۰). In view of the high biological performance of Amaranthus caudatus L. in this treatment (۴۱.۵۵ g), it is considered one of the most effective plants in bioaccumulation.

نویسندگان

Nasrin Tahmasebi Fard

Department of Plant Production Engineering and Genetics, Faculty of Agriculture, Lorestan University, Khorramabad, Iran

Hamid Reza Eisvand

Department of Plant Production Engineering and Genetics, Faculty of Agriculture, Lorestan University, Khorramabad, Iran

Mashala Daneshvar

Department of Plant Production Engineering and Genetics, Faculty of Agriculture, Lorestan University, Khorramabad, Iran

Farhad Nazarian Firouzabadi

Department of Plant Production Engineering and Genetics, Faculty of Agriculture, Lorestan University, Khorramabad, Iran

Sima Mohammadi

Department of Soil Science and Engineering, Faculty of Agriculture, Lorestan University, Khorramabad, Iran

مراجع و منابع این مقاله:

لیست زیر مراجع و منابع استفاده شده در این مقاله را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود مقاله لینک شده اند :
  • Adewole, M. B., Awotoye, O. O., Ohiembor, M. O., & ...
  • Akbarpour Saraskanroud, F., Sadri, F., & Golalizadeh, D. (۲۰۱۲). Phytoremediation ...
  • Ali, B., Mwamba, T. M., Gill, R. A., Yang, C., ...
  • Ansari Mahabadi, A. (۲۰۰۳). Investigating the effect of zeolite minerals ...
  • Barker, A. V. & Pilbeam, D. J. (۲۰۱۵). Handbook of ...
  • Brown, M. S. & Bethlenfalvay, G. J. (۱۹۸۷). The Glycine-Glomus-Rhizobium ...
  • Chavoushi, M., Salimi, A., Najafi, F., & Angaji, S. A. ...
  • Conceicao, S. S., d Oliveira Neto, C. F., Marques, E. ...
  • Dhindsa, R. A., Plumb, D. P., & Thorpe, T. A. ...
  • European Commission. (۲۰۱۳). Soil Contamination: Impacts on human health. Science ...
  • Farhadi, D., Asghari, H., Ameriyan, M., & Abbaspour, A. (۲۰۱۷). ...
  • Farjad Tehrani, S., Bernard, F., & Soleimani, H. (۲۰۲۳). Accumulation ...
  • Foyer, C. H. & Halliwell, B. (۱۹۷۶). The presence of ...
  • Gharehbaghli, N. & Sepehri, A. (۲۰۲۲). Reducing the effect of ...
  • Ghasem Khanloo, Z., Nasrollah Zadeh, A., Alizadeh, A., & Haji ...
  • Gunes, A., Pilbeam, D. J., Inal, A., & Coban, S. ...
  • Haji Najafi, O., Momayezi, M., & Sheibani۱, H. A. (۲۰۱۶). ...
  • Heidari, M. (۲۰۰۹). Antioxidant activity and osmolyte concentration of sorghum ...
  • Kapoor, R., Giri, B., & Mukerji, K. G. (۲۰۰۲). Mycorrhization ...
  • Karbassi, A. R. & Moattar, F. (۲۰۰۸). An investigation on ...
  • Kharmandar, K. H. & Mahdavi, A. (۲۰۱۶). Investigation of cadmium ...
  • Khodarahmi, Y., Soltani Mohamadi, A., BoroomandNasab, S., & Naseri, A. ...
  • Laxa, M., Liebthal, M., Telman, W., Chibani, K., & Dietz, ...
  • Mane, A. V., Deshpande, T. V., Wagh, V. B., Karadge, ...
  • Montazerinezhad, S., Solouki, M., & Fakheri, B. A. (۲۰۱۳). The ...
  • Moslehi, A., Feizian, M., Higueras, P., & Eisvand, H. R. ...
  • Nemati, A., Gholchin, A., & Besharati, H. (۲۰۱۵). Effects of ...
  • Ortiz, J. V. (۱۹۹۶). Partial third‐order quasiparticle theory: Comparisons for ...
  • Pirzad, A., Alloyheh, H., Shakiba, M., Zehtab Salmasi, S., & ...
  • Puga, A. P., Abreu, C. A., Melo, L. C. A., ...
  • Rahimizadeh, M., Habibi, D., Madani, H., Mohammad, G. N., Mehraban, ...
  • Ryan, J. A., Zhang, P., Chou, J., & Sayers, D. ...
  • Safari Aman, M., Jafari, M., Karimpour, M., & Motsharazadeh, B. ...
  • Sharma, P. & Dubey, R. S. (۲۰۰۵). Lead toxicity in ...
  • Smith, S. E., Smith, F. A., & Jakobsen, I. (۲۰۰۳). ...
  • Taher, M., Beyaz, R., Javani, M., Gursoy, M., & Yildiz, ...
  • Tofighi, K., Khavari Nejad, R., Najafi, F., Razavi, K., & ...
  • Yang, X., Feng, Y., He, Z., & Stoffella, P. J. ...
  • and phytoremediation. Journal of Trace Elements in Medicine and Biology, ...
  • Zheng, R., Chen, Cai., C., Wang, X., Huang, Y., Xiao, ...
  • Zheng, G., Lv, H. P., Gao, S., & Wang, S. ...
  • نمایش کامل مراجع