Effect of urea on lead absorption in corn (Zea mays L.), spinach (Spinacia oleracea L.) and cabbage (Brassica oleracea L.)

Agricultural intensification has led to an elevated use of pesticides and fertilizers such as urea, without considering the negative effects these products can cause, such as acidification of the soil and the entry of lead (Pb) into the trophic chain. The objective of this research was to determine...

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Published inAgronomía colombiana Vol. 38; no. 2; pp. 205 - 217
Main Authors Peñafiel-Sandoval, Zelma Beatriz, Iannacone, José
Format Journal Article
LanguageEnglish
Published Bogota Universidad Nacional de Colombia 01.05.2020
Universidad Nacional de Colombia, Facultad de Agronomía
Centro Editorial of Facultad de Ciencias Agrarias, Universidad Nacional de Colombia
Subjects
Online AccessGet full text
ISSN0120-9965
2357-3732
DOI10.15446/agron.colomb.v38n2.85082

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Abstract Agricultural intensification has led to an elevated use of pesticides and fertilizers such as urea, without considering the negative effects these products can cause, such as acidification of the soil and the entry of lead (Pb) into the trophic chain. The objective of this research was to determine the effect of urea on the absorption of lead (Pb) in the leaf structure of corn (Zea mays L.), spinach (Spinacia oleracea L.), and cabbage (Brassica oleracea L.). These three plant species were exposed to five different concentrations of urea and a constant concentration of Pb in the form of Pb acetate for 93 days. The effect of urea and Pb was determined through analysis of the leaf structure. The results showed an increase in the dry weight of corn, whereas in spinach (T4) (1.5 g urea kg-1 of soil plus 0.5 g Pb kg-1 of soil) dry weight decreased as well as the fresh weight and foliar area. An increase in the chlorophyll index in corn, spinach, and cabbage was observed in the treatments with urea, and there was an influence on soil acidification. We also observed that spinach concentrated more Pb (T4) in its foliage at higher rates of N application. The idiosyncratic nature of the crop combined effects of Pb and N highlights the need for more research on this subject.
AbstractList Agricultural intensification has led to an elevated use of pesticides and fertilizers such as urea, without considering the negative effects these products can cause, such as acidification of the soil and the entry of lead (Pb) into the trophic chain. The objective of this research was to determine the effect of urea on the absorption of lead (Pb) in the leaf structure of corn (Zea mays L.), spinach (Spinacia oleracea L.), and cabbage (Brassica oleracea L.). These three plant species were exposed to five different concentrations of urea and a constant concentration of Pb in the form of Pb acetate for 93 days. The effect of urea and Pb was determined through analysis of the leaf structure. The results showed an increase in the dry weight of corn, whereas in spinach (T4) (1.5 g urea kg-1 of soil plus 0.5 g Pb kg-1 of soil) dry weight decreased as well as the fresh weight and foliar area. An increase in the chlorophyll index in corn, spinach, and cabbage was observed in the treatments with urea, and there was an influence on soil acidification. We also observed that spinach concentrated more Pb (T4) in its foliage at higher rates of N application. The idiosyncratic nature of the crop combined effects of Pb and N highlights the need for more research on this subject.
Abstract Agricultural intensification has led to an elevated use of pesticides and fertilizers such as urea, without considering the negative effects these products can cause, such as acidification of the soil and the entry of lead (Pb) into the trophic chain. The objective of this research was to determine the effect of urea on the absorption of lead (Pb) in the leaf structure of corn (Zea mays L.), spinach (Spinacia oleracea L.), and cabbage (Brassica oleracea L.). These three plant species were exposed to five different concentrations of urea and a constant concentration of Pb in the form of Pb acetate for 93 days. The effect of urea and Pb was determined through analysis of the leaf structure. The results showed an increase in the dry weight of corn, whereas in spinach (T4) (1.5 g urea kg-1 of soil plus 0.5 g Pb kg-1 of soil) dry weight decreased as well as the fresh weight and foliar area. An increase in the chlorophyll index in corn, spinach, and cabbage was observed in the treatments with urea, and there was an influence on soil acidification. We also observed that spinach concentrated more Pb (T4) in its foliage at higher rates of N application. The idiosyncratic nature of the crop responses to the combined effects of Pb and N highlights the need for more research on this subject.
Agricultural intensification has led to an elevated use of pesticides and fertilizers such as urea, without considering the negative effects these products can cause, such as acidification of the soil and the entry of lead (Pb) into the trophic chain. The objective of this research was to determine the effect of urea on the absorption of lead (Pb) in the leaf structure of corn (Zea maysL.), spinach (Spinacia oleraceaL.), and cabbage (Brassica oleraceaL.). These three plant species were exposed to five different concentrations of urea and a constant concentration of Pb in the form of Pb acetate for 93 days. The effect of urea and Pb was determined through analysis of the leaf structure. The results showed an increase in the dry weight of corn, whereas in spinach (T4) (1.5 g urea kg-1 of soil plus 0.5 g Pb kg-1 of soil) dry weight decreased as well as the fresh weight and foliar area. An increase in the chlorophyll index in corn, spinach, and cabbage was observed in the treatments with urea, and there was an influence on soil acidification. We also observed that spinach concentrated more Pb (T4) in its foliage at higher rates of N application. The idiosyncratic nature of the crop combined effects of Pb and N highlights the need for more research on this subject.
Author Peñafiel-Sandoval, Zelma Beatriz
Iannacone, José
AuthorAffiliation Universidad Científica del Sur
Universidad Ricardo Palma
Universidad Nacional Federico Villarreal
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DocumentTitleAlternate Efecto de la urea en la absorción de plomo en maíz (Zea mays L.), espinaca (Spinacia olerácea L.) y col (Brassica olerácea L.)
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Issue 2
Keywords acidificación del suelo
fertilizantes
metales pesados
fertilizers
heavy metals
acidification of the soil
cultivos
crops
estructura de la hoja
leaf structure
Language English
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Snippet Agricultural intensification has led to an elevated use of pesticides and fertilizers such as urea, without considering the negative effects these products can...
Abstract Agricultural intensification has led to an elevated use of pesticides and fertilizers such as urea, without considering the negative effects these...
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StartPage 205
SubjectTerms Absorption
Acetic acid
Acidification
acidification of the soil
AGRONOMY
Brassica
Brassica oleracea
Chlorophyll
Corn
crops
Dry weight
Fertilizers
Foliage
heavy metals
Intensive farming
Lead
leaf structure
Leaves
Pesticides
Plant species
Selenium
Soil acidification
Soils
Spinach
Spinacia oleracea
Urea
Vegetables
Weight
Zea mays
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Title Effect of urea on lead absorption in corn (Zea mays L.), spinach (Spinacia oleracea L.) and cabbage (Brassica oleracea L.)
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