Biologyarticle2026-09-08

Molecular and physiological mechanisms of the cadmium response in seedlings of two Theobroma cacao L. genotypes

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Abstract

Abstract Aims Understanding the mechanisms of cadmium (Cd) accumulation in cacao plants is critical to mitigating health risks associated with Cd exposure through chocolate consumption. A general and genotype-specific molecular and physiological responses were characterized. Methods Seedlings of cacao genotypes PA121 and TSH660 were exposed to 0 and 10 ppm Cd in hydroponic conditions. Samples were collected at 0, 24, and 48 h (RNAseq) and at 60 days post-treatment (ICP-OES). Gene expression profiles were compared using differential gene expression (DEG) and gene ontology analyses. Gas exchange (Gs) and abscisic acid (ABA) measurements were conducted on greenhouse-grown PA121 seedlings. Results Both shared and genotype-specific changes were observed in genes associated with detoxification, ROS, and hormone metabolism, notably ABA-related genes. In leaves, the low-accumulator exhibited fewer DEGs than the high-accumulator, whereas in roots, both genotypes displayed similar expression profiles. The high-accumulating genotype exhibited fewer statistically significant expression changes in key hormone biosynthesis genes. In roots, Cd transport family genes, including ZIP/IRT and NRAMP, were downregulated. The high-accumulator genotype exhibited significant downregulation of one ZIP and one HMA5 ortholog, whereas the response of the low-accumulator genotype included upregulation of a different HMA5 ortholog. Additionally, high-accumulator seedlings exposed to 12 ppm Cd reduced Gs without significant changes in photosynthesis, while ABA concentrations increased in roots at 36 h after Cd exposure. Conclusions Together, these results support a model in which Cd induces ABA-mediated root signaling that reduces stomatal conductance and transpiration-driven mass flow, while suppressing the expression of active Cd transporters, thereby limiting Cd uptake.

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View paper (DOI)Open access versionOpenAlexPlant and SoilPublished 2026-09-08

Authors: Paola Delgadillo-Durán, Francisco Miguel Menéndez-Burns, Caren Rodriguez‐Medina, Andrea C. Montenegro, Albert Istvan, Mark J. Guiltinan, Roxana B. Yockteng, Siela N. Maximova

Institutions: Centre National de la Recherche Scientifique, Pennsylvania State University, Institut de Systématique, Évolution, Biodiversité, Colombian Corporation for Agricultural Research - AGROSAVIA