Author:
El-diehy Mahmoud A.,Farghal Ibrahim I.,Amin Mohamed A.,Ghobashy Mohamed mohamady,Nowwar Abdelatti I.,Gayed H. M.
Abstract
AbstractThe main focus of this study was on using radiation to make an ultra-absorbent hydrogel (UAH) from sodium alginate (SA) and gelatin (GL) biopolymers. This UAH can effectively handle water and nitrogen in wheat farming during drought stress. The hydrogel was synthesized by gamma irradiation-induced SA/GL/polyacrylamide crosslinking at 10–40 kGy. Varying SA/GL ratios affected swelling and the gel fraction of SA/GL/PAm hydrogels. The (SA/GL 17/83) hydrogel exhibited a 40.03 g/g swelling degree, while increasing SA content resulted in higher swelling, peaking at 75.5 g/g for (SA/GL 83/17). This indicated a synergistic interaction between SA and GL. The gel fraction also increased from 76.8 to 90.3%, with a higher GL content reflecting increased crosslinking. After multiple hydrolysis cycles, the hydrogel achieved 1293 (g/g) swelling and 36 days of water retention. When applied to wheat (Triticuma estivum) under drought stress, it significantly improved shoot length (18%), root length (43%), shoot fresh weight (49%), and shoot dry weight (51%) under extreme drought. The significant increases in protein and carbohydrate content in both shoots (up to 32% and 19%, respectively) and grains (up to 21% and 24%, respectively), along with the reduction in proline content (up to 38%), demonstrate that ultra-absorbent hydrogel (UAH) effectively enhances nitrogen content, photosynthesis, and overall plant health in wheat under varying drought stress levels. This novel SA/GL-based UAH holds promise for addressing water scarcity and agricultural challenges, offering a sustainable solution for water and nitrogen management under drought stress.
Funder
Science and Technology Development Fund
Egyptian Atomic Energy Authority
Publisher
Springer Science and Business Media LLC
Reference58 articles.
1. Asseng, S. et al. Can Egypt become self-sufficient in wheat?. Environ. Res. Lett. 13, 094012 (2018).
2. Sharaf, A. Effect of phosphorus, zinc and sulphur application on the growth characters, P and Zn uptake, yield components of wheat plant grown on calcareous soil. J. Soil Sci. Agric. Eng. 33, 6265–6278 (2008).
3. Yigezu, Y. A. et al. Food losses and wastage along the wheat value chain in Egypt and their implications on food and energy security, natural resources, and the environment. Sustainability 13, 10011 (2021).
4. Viviroli, D. et al. Climate change and mountain water resources: Overview and recommendations for research, management and policy. Hydrol. Earth Syst. Sci. 15, 471–504 (2011).
5. Patra, S. K. et al. Prospects of hydrogels in agriculture for enhancing crop and water productivity under water deficit condition. Int. J. Polym. Sci. 2022, 1–15 (2022).