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In acid soils, manganese (Mn) concentration increases, becoming toxic to plants. Mn toxicity differentially affects physiological processes in highbush blueberry (Vaccinium corymbosum L.) cultivars. However, the mechanisms involved in Mn toxicity of the new and traditionally established cultivars...


Gonzalez Villagra, JorgeLuengo Escobar, AnaRibera Fonseca, AlejandraCárcamo Fincheira, PazPatricia Omena Garcia, RebecaNunes Nesi, AdrianoInostroza Blancheteau, ClaudioAlberdi, MirenReyes Diaz, Marjorie[Differential mechanisms between traditionally established and new highbush blueberry (Vaccinium corymbosum L.) cultivars reveal new insights into manganese toxicity resistance]Differential mechanisms between traditionally established and new highbush blueberry (Vaccinium corymbosum L.) cultivars reveal new insights into manganese toxicity resistance

Manganese (Mn) toxicity limits plant growth in acid soils. Although Mn toxicity induces oxidative stress, the role of superoxide dismutase (SOD, EC.1.15.1.1) isoforms in conferring Mn tolerance remains unclear. Seedlings of ryegrass cultivars Nui (Mn-sensitive) and Kingston (Mn-tolerant) were hyd...


Ribera Fonseca, AlejandraInostroza Blancheteau, ClaudioCartes, PaulaRengel, ZedMora, M. L.[Early induction of Fe-SOD gene expression is involved in tolerance to Mn toxicity in perennial ryegrass]Early induction of Fe-SOD gene expression is involved in tolerance to Mn toxicity in perennial ryegrass

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