Combined Use of TiO2 Nanoparticles and Biochar Produced from Moss (Leucobryum glaucum (Hedw.) Ångstr.) Biomass for Chinese Spinach (Amaranthus dubius L.) Cultivation under Saline Stress

Author:

Širić Ivan1ORCID,Alhag Sadeq K.2ORCID,Al-Shuraym Laila A.3ORCID,Mioč Boro1,Držaić Valentino1ORCID,Abou Fayssal Sami45ORCID,Kumar Vinod6ORCID,Singh Jogendra6ORCID,Kumar Piyush7,Singh Rattan8,Bachheti Rakesh Kumar910ORCID,Goala Madhumita11ORCID,Kumar Pankaj612ORCID,Eid Ebrahem M.13ORCID

Affiliation:

1. University of Zagreb, Faculty of Agriculture, Svetosimunska 25, 10000 Zagreb, Croatia

2. Biology Department, College of Science and Arts, King Khalid University, Muhayl Asser 61913, Saudi Arabia

3. Biology Department, Faculty of Science, Princess Nourah bint Abdulrahman University, Riyadh 12834, Saudi Arabia

4. Department of Agronomy, Faculty of Agronomy, University of Forestry, 10 Kliment Ohridski Blvd, 1797 Sofia, Bulgaria

5. Department of Plant Production, Faculty of Agriculture, Lebanese University, Beirut 1302, Lebanon

6. Agro-Ecology and Pollution Research Laboratory, Department of Zoology and Environmental Science, Gurukula Kangri (Deemed to Be University), Haridwar 249404, India

7. Department of Science, Vivek College of Education, Moradabad Road, Bijnor 246701, India

8. Department of Food Technology, Guru Jambeshwar University of Science & Technology, Hisar 125001, India

9. Department of Industrial Chemistry, College of Applied Sciences, Addis Ababa Science and Technology University, Addis Ababa P.O. Box 16417, Ethiopia

10. Department of Allied Sciences, Graphic Era Hill University, Dehradun 248002, India

11. Department of Environment Science, Graphic Era (Deemed to be University), Dehradun 248002, India

12. Research and Development Division, Society for AgroEnvironmental Sustainability, Dehradun 248007, India

13. Botany Department, Faculty of Science, Kafrelsheikh University, Kafr El-Sheikh 33516, Egypt

Abstract

Salinity-induced soil degradation poses a significant challenge to agricultural productivity and requires innovative crop-management strategies. In this study, the synergistic effect of biochar and TiO2 nanoparticles (NPs) obtained from moss (Leucobryum glaucum (Hedw.) Ångstr.) biomass on the growth, yield, biochemical, and enzymatic response of Chinese spinach (Amaranthus dubius L.) grown under salinity stress was investigated. Purposely, A. dubius was grown under different combinations of arable soil, biochar, TiO2 NPs, and saline soils. The produced biochar and TiO2 NPs were characterized using microscopy image analysis, X-ray diffraction patterns (XRD), energy-dispersive X-ray spectroscopy (EDX), zeta potential, particle size distribution, and Fourier-transform infrared spectroscopy (FTIR). The results showed that saline stress caused a significant (p < 0.05) decline in growth, yield, and biochemical constituents of A. dubius compared to control treatments. However, the combined application of biochar and TiO2 NPs significantly (p < 0.05) alleviated the saline stress and resulted in optimum fresh weight (30.81 g/plant), dry weight (4.90 g/plant), shoot and root length (28.64 and 12.54 cm), lead number (17.50), leaf area (12.50 cm2/plant), chlorophyll (2.36 mg/g), carotenoids (2.85 mg/g), and relative water content (82.10%). Biochar and TiO2-NP application helped to reduce the levels of stress enzymes such as catalase (2.93 µmol/min/mg P), superoxide dismutase (SOD: 2.47 EU/g P), peroxidase (POD: 40.03 EU/min/g P), and ascorbate peroxidase (3.10 mM/mg P) in saline soil. The findings of this study suggest that the combination of nanotechnology and biochar derived from unconventional biomass can be a viable option to mitigate salinity-related challenges and enhance crop yield.

Funder

Princess Nourah bint Abdulrahman University

Deanship of Scientific Research at King Khalid University

Publisher

MDPI AG

Subject

Horticulture,Plant Science

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