Evaluation of Silicon Supplementation for Drought Stress under Water-Deficit Conditions: An Application of Sustainable Agriculture

Author:

Ahsan Muhammad1ORCID,Valipour Mohammad2,Nawaz Fahim3ORCID,Raheel Muhammad4,Abbas Hafiz Tassawar5,Sajid Mateen6ORCID,Manan Abdul6,Kanwal Shamsa7,Mahmoud Eman A.8ORCID,Casini Ryan9,Elansary Hosam O.10ORCID,Radicetti Emanuele11ORCID,Zulfiqar Hira12

Affiliation:

1. Department of Horticultural Sciences, The Islamia University of Bahawalpur, Bahawalpur 63100, Pakistan

2. Department of Engineering and Engineering Technology, Metropolitan State University of Denver, Denver, CO 80217, USA

3. Department of Agronomy, MNS, University of Agriculture, Multan 66000, Pakistan

4. Department of Plant Pathology, The Islamia University of Bahawalpur, Bahawalpur 63100, Pakistan

5. Department of Plant Pathology, Faculty of Agriculture, Lasbela University of Agriculture, Water and Marine Sciences, Uthal 90150, Pakistan

6. Department of Horticulture, Ghazi University, Dera Ghazi Khan 32200, Pakistan

7. Agricultural Biotechnology Research Institute, Ayub Agriculture Research Institute (AARI), Faisalabad 38850, Pakistan

8. Department of Food Industries, Faculty of Agriculture, Damietta University, Damietta 34511, Egypt

9. School of Public Health, University of California, Berkeley, 2121 Berkeley Way, Berkeley, CA 94704, USA

10. Department of Plant Production, College of Food & Agriculture Sciences, King Saud University, P.O. Box 2460, Riyadh 11451, Saudi Arabia

11. Department of Chemical, Pharmaceutical and Agricultural Sciences (DOCPAS), University of Ferrara, 44121 Ferrara, Italy

12. Department of Botany, University of Agriculture Faisalabad, Faisalabad 38040, Pakistan

Abstract

Drought is a key abiotic stress that confines agriculture development worldwide. Silicon (Si) is commonly considered to be a valuable element for resistance against drought and for sustainable agriculture. To investigate the morpho-physiological and biochemical characteristics of Gerbera jamesonii plants, a pot experiment was conducted under greenhouse conditions and exposed to water stress (60% FC) and well-watered (100% FC) conditions. Foliar application of Si was carried out after ten days (48 days after sowing) of drought treatment and was repeated weekly, while well-water was regarded as control. Water deficiency significantly abridged the morphological attributes, pigments, and stress-related metabolites and negatively affected the photosynthetic apparatus in drought-stressed gerbera plants. However, Si supplementation by 40 mg L−1 produced increased leaf area (31%), stem length (25%), flower diameter (22%), plant fresh biomass (17%), total chlorophyll (48%), and concentration of carotenoids (54%) in water-stressed plants. Similarly, the accretion of a total free amino acid (41%) and the activities of peroxidase, catalase, superoxide dismutase, ascorbate peroxidase, glycinebetaine, total soluble proteins, total free proline, and malondialdehyde were enhanced by 44%, 31%, 53%, 33%, 330%, 61%, 51%, and 66%, respectively, under drought stress in comparison with control conditions. Meanwhile, the photosynthetic rate (89%), the transpiration rate (12%), and stomatal conductance (55%) were significantly enhanced in water-deficit gerbera leaves with Si supplementation. This study proposes that the foliar application of Si is a viable and convenient method of improving the performance of elegant gerbera flower plants in regions of the world that are facing severe water deficiency.

Funder

King Saud University

Publisher

MDPI AG

Subject

Agronomy and Crop Science

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