Literature DB >> 30173024

Soil properties and agronomic factors affecting cadmium concentrations in cacao beans: A nationwide survey in Ecuador.

David Argüello1, Eduardo Chavez2, Florian Lauryssen3, Ruth Vanderschueren3, Erik Smolders3, Daniela Montalvo3.   

Abstract

Recent cadmium (Cd) regulation in chocolate threatens the sustainability of cacao production in Southwest America. Cadmium contamination in cacao beans has not been assessed at a country level. A nationwide survey was conducted in Ecuador to identify the spatial distribution of Cd in cacao beans, as well as soil and agronomic factors involved. Paired soil and plant samples (pods and leaves) were collected at 560 locations. Information on agronomic practices was obtained through a prepared questionnaire for farmers. Total soil Cd averaged 0.44 mg kg-1 which is typical for young and non-polluted soils. Mean Cd concentration in peeled beans was 0.90 mg kg-1 and 45% of samples exceeded the 0.60 mg kg-1 threshold. Bean Cd hotspots were identified in some areas in seven provinces. Multivariate regression analysis showed that bean Cd concentrations increased with increasing total soil Cd and with decreasing soil pH, oxalate-extractable manganese (Mnox) and organic carbon (OC) (R2 = 0.65), suggesting that Cd solubility in soil mainly affects Cd uptake. Bean Cd concentration decreased a factor of 1.4 as the age of the orchard increased from 4 to 40 years. Bean Cd concentration was inconsistently affected by genotype (CCN-51 vs. Nacional), pruning or application of fertilizers. It is concluded that the relatively larger bean Cd concentrations in Ecuador are related to the high Cd uptake capacity of the plants combined with their cultivation on young soils, instead of Cd depleted weathered soils. Mitigation strategies should consider the application of amendments to modify such soil properties to lower soil Cd availability. There is scope for genetic mitigation strategy to reduce bean Cd, but this needs to be properly investigated.
Copyright © 2018 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Cadmium cocoa; Ecuadorian cacao; Soil survey; Spatial distribution

Mesh:

Substances:

Year:  2018        PMID: 30173024     DOI: 10.1016/j.scitotenv.2018.08.292

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  12 in total

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7.  Theobroma cacao L. cultivar CCN 51: a comprehensive review on origin, genetics, sensory properties, production dynamics, and physiological aspects.

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8.  Cadmium isotope fractionation reveals genetic variation in Cd uptake and translocation by Theobroma cacao and role of natural resistance-associated macrophage protein 5 and heavy metal ATPase-family transporters.

Authors:  Rebekah E T Moore; Ihsan Ullah; Vinicius H de Oliveira; Samantha J Hammond; Stanislav Strekopytov; Mark Tibbett; Jim M Dunwell; Mark Rehkämper
Journal:  Hortic Res       Date:  2020-05-01       Impact factor: 6.793

9.  Artisanal and Small Gold Mining and Petroleum Production as Potential Sources of Heavy Metal Contamination in Ecuador: A Call to Action.

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10.  Lowering the Toxicity of Cd to Theobroma cacao Using Soil Amendments Based on Commercial Charcoal and Lime.

Authors:  Carla Calixta Calva Jiménez; Liliana Valentina Pinedo Fernández; Cristiano E Rodrigues Reis
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