Zinc Absorption through Leaves and Subsequent Translocation to the Grains of Bread Wheat after Foliar Spray

Author:

Kamran Atif12,Ghazanfar Munazza2,Khan Jan Sher2,Pervaiz Sana2,Siddiqui Manzer H.3,Alamri Saud3ORCID

Affiliation:

1. Agricultral, Food and Nutritional Science, University of Alberta, Edmonton, AB T6G 2R3, Canada

2. Institute of Botany, Faculty of Life Sciences, University of the Punjab, Lahore P.O. Box 54590, Pakistan

3. Department of Botany and Microbiology, College of Science, King Saud University, Riyadh 11451, Saudi Arabia

Abstract

Agronomic biofortification could possibly be a promising strategy to overcome zinc (Zn) deficiency in wheat; however, the cultivar’s response to foliar applications is enigmatic when it comes to the relative efficiency of Zn absorption and accumulation. To decipher that enigmatic response, this study was designed with the objectives (i) to track the amount of Zn absorbed through leaves after foliar application, (ii) to calculate the amount of the absorbed Zn actually translocated and stored in the grains, and (iii) to calculate the relative efficiency of the high yielding cultivars in terms of their Zn absorption and translocation. The results reveal that 0.90% of the zinc sprayed was absorbed through leaves, and 43% of the absorbed Zn was translocated to the grains. The cultivars significantly varied for their Zn absorption (0.71–1.07%) and subsequent translocation of the absorbed Zn (23–66%). Foliar zinc treatment also improved growth attributes such as leaf area, height, spikelet per spike, number of grains per spike, grain yield, leaf and grain Zn content, and grain protein content. These findings suggest a need for cautious parent selection in devising the breeding strategies intended for biofortification.

Funder

University of the Punjab

King Saud University

Publisher

MDPI AG

Subject

Plant Science,Agronomy and Crop Science,Food Science

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