Metabolic leaf responses to potassium availability in oil palm (Elaeis guineensis Jacq.) trees grown in the field
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Authors
Mirande-Ney, Cathleen
Tcherkez, Guillaume
Balliau, Thierry
Zivy, Michael
Gilard, Francoise
Cui, Jing
Ghashghaie, Jaleh
Lamade, Emmanuelle
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Elsevier
Abstract
Oil palm growth and production is highly dependent on potassium (K) fertilization. Presently, monitoring K
fertilization is difficult since it depends on soil properties, crosses and other nutrients. To adjust K fertilization
precisely during cultivation, leaf biomarkers that can indicate changes in tree K status before the appearance of
symptoms on fruit production and yield, are required. However, the metabolic response of oil palm leaves to K
availability is poorly documented. Here, we investigated the response of oil palm leaf metabolome and proteome
to K availability in two crosses (Deli x La Mé, and Deli x Yangambi) grown in the field. Our result show that one to
two years only after the onset of K fertilization treatments, there were changes in N metabolism, photosynthesis
and mitochondrial metabolism, with a differential effect in the two crosses. In particular, there were changes in
sugars, amino and organic acids pointing to modifications in photosynthetic and catabolic (Krebs cycle) capacity
and this agreed with the effect seen on enzyme content. Therefore, K availability led to rapid changes in leaf
primary metabolism, opening avenues for the utilization of leaf metabolic signature as a marker of K nutrition in
oil palm.
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Environmental and Experimental Botany
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Restricted until
2037-12-31