The Content, Uptake and Bioaccumulation Factor of Copper and Nickel in Grass Depending on Zinc Application and Organic Fertilization

Author:

Kuziemska Beata1ORCID,Wysokinski Andrzej1ORCID,Klej Paulina1

Affiliation:

1. Faculty of Agrobioengineering and Animal Husbandry, Institute of Agriculture and Horticulture, Siedlce University of Natural Sciences and Humanities, 08110 Siedlce, Poland

Abstract

Different content of Zn in the soil and organic fertilization can affect micronutrient uptake by plants. A pot experiment was carried out to determine the impact of increasing Zn application rates, i.e., 200, 400 and 600 Zn mg·kg−1, in combination with bovine and chicken manures and mushroom substrate on Cu and Ni content, uptake and bioaccumulation factor in cocksfoot (Dactylis glomerata L.). Control objects without Zn and organic fertilizers and after application of only different Zn doses and only organic fertilizers were also tested. Application of Zn at 400 and 600 mg·kg−1 significantly decreased the content, uptake and value of bioaccumulation factor of Cu in the grass. Different Zn doses were not found to influence the content and bioaccumulation factor of Ni in cocksfoot, but application at 200 Zn mg·kg−1 increased Ni uptake. Chicken manure increased the content and bioaccumulation factor of Cu and Ni in the test plant, and all the organic fertilizers increased their uptake. Cocksfoot showed no tendency to excessive bioaccumulation of Cu and Ni.

Funder

Polish Ministry of Science and Higher Education

Publisher

MDPI AG

Subject

Plant Science,Agronomy and Crop Science,Food Science

Reference66 articles.

1. Micronutrients in Crop Production Sparks;Donald;Advances in Agronomy,2002

2. Alloway, B.J. (2008). Micronutrient Deficiencies in Global Crop Production, Springer.

3. Interaction of copper, zinc, and their importance in plant physiology: Review, Acquisition and Transport;Yassen;Middle East J. Appl. Sci.,2020

4. In situ distribution and speciation of toxic copper, nickel, and zinc in hydrated roots of cowpea;Kopittke;Plant Physiol.,2011

5. Influence of high and low levels of plant-beneficial heavy metal ions on plant growth and development;Arif;Front. Environ. Sci.,2016

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