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Article

Boron, Manganese, and Zinc Sorption and Leaf Uptake on Citrus Cultivated on a Sandy Soil

by
Qudus O. Uthman
1,2,
Davie M. Kadyampakeni
1,2,*,
Peter Nkedi-Kizza
1,
Samuel Kwakye
1,2 and
Neriman Tuba Barlas
3
1
Soil and Water Sciences Department, University of Florida, 2181 McCarty Hall, Gainesville, FL 32611, USA
2
Citrus Research and Education Center, University of Florida, 700 Experiment Station Rd., Lake Alfred, FL 33850, USA
3
Department of Soil Science and Plant Nutrition, Agricultural Faculty, University of Ege, Izmir 35040, Turkey
*
Author to whom correspondence should be addressed.
Plants 2022, 11(5), 638; https://doi.org/10.3390/plants11050638
Submission received: 7 January 2022 / Revised: 17 February 2022 / Accepted: 23 February 2022 / Published: 26 February 2022

Abstract

Solute fate in soil-plant continuum could either be soil or leaf uptake or leaching beyond the rooting zone. An adsorption coefficient (KD) is an important chemical property to describe the interaction between the solute and soil, affecting the solute movement in soils from one point to another. Boron (B), manganese (Mn), and zinc (Zn) uptake are evident in the leaves as a constituent of photosynthesis and other plant body-building mechanisms for growth and development. This study investigates the availability of micronutrients (B, Mn, and Zn) to citrus trees through modified application methods and rates. Leaf samples were collected from experimental plots arranged in a randomized complete block design, with 4 micronutrient treatments: control, foliar ×1, foliar ×2, and soil ×1. Boron, Mn, and Zn rates were 1.12, 10.08, and 5.60 kg ha−1, respectively. Composite soil samples were randomly collected at 5 points, and a 1-point adsorption study was conducted in 4 soil depths at an increment of 15 cm from the soil surface. Adsorption coefficient (KD) for Mn and B was 22 and 3 times higher at 0–15 cm than at soil depth of 15–60 cm. The adsorption coefficient (KD) for Zn was 2.5 times greater at 0–15 cm than 15–30 cm soil depth, while there was little or no sorption at 30–60 cm. Leaf Mn and Zn concentrations showed that foliar spray was 2 times higher than the soil application method, while B showed that the soil application method was 2 times higher than foliar application method for 2 seasons sampling events. Thus, the behavior of B, Mn, and Zn in the soil via adsorption coefficient (KD) reflects the availability of B, Mn, and Zn in the citrus leaves.
Keywords: adsorption; foliar spray; micronutrients; soil application; plant availability adsorption; foliar spray; micronutrients; soil application; plant availability

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MDPI and ACS Style

Uthman, Q.O.; Kadyampakeni, D.M.; Nkedi-Kizza, P.; Kwakye, S.; Barlas, N.T. Boron, Manganese, and Zinc Sorption and Leaf Uptake on Citrus Cultivated on a Sandy Soil. Plants 2022, 11, 638. https://doi.org/10.3390/plants11050638

AMA Style

Uthman QO, Kadyampakeni DM, Nkedi-Kizza P, Kwakye S, Barlas NT. Boron, Manganese, and Zinc Sorption and Leaf Uptake on Citrus Cultivated on a Sandy Soil. Plants. 2022; 11(5):638. https://doi.org/10.3390/plants11050638

Chicago/Turabian Style

Uthman, Qudus O., Davie M. Kadyampakeni, Peter Nkedi-Kizza, Samuel Kwakye, and Neriman Tuba Barlas. 2022. "Boron, Manganese, and Zinc Sorption and Leaf Uptake on Citrus Cultivated on a Sandy Soil" Plants 11, no. 5: 638. https://doi.org/10.3390/plants11050638

APA Style

Uthman, Q. O., Kadyampakeni, D. M., Nkedi-Kizza, P., Kwakye, S., & Barlas, N. T. (2022). Boron, Manganese, and Zinc Sorption and Leaf Uptake on Citrus Cultivated on a Sandy Soil. Plants, 11(5), 638. https://doi.org/10.3390/plants11050638

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