Root exudate metabolomes change under drought and show limited capacity for recovery

Метаболомы корневых экссудатов изменяются при засухе и обладают ограниченной способностью к восстановлению
Albert Gargallo‐Garriga, Catherine Preece, Jordi Sardans, Michal Oravec, Otmar Urban, Josep Peñuelas
2018-08-17

Quercus ilexdrought stressecometabolomicsmetabolite recoveryroot exudate metabolomes
Root exudates comprise a large variety of compounds released by plants into the rhizosphere, including low-molecular-weight primary metabolites (particularly saccharides, amino acids and organic acids) and secondary metabolites (phenolics, flavonoids and terpenoids). Changes in exudate composition could have impacts on the plant itself, on other plants, on soil properties (e.g. amount of soil organic matter), and on soil organisms. The effects of drought on the composition of root exudates, however, have been rarely studied. We used an ecometabolomics approach to identify the compounds in the exudates of Quercus ilex (holm oak) under an experimental drought gradient and subsequent recovery. Increasing drought stress strongly affected the composition of the exudate metabolome. Plant exudates under drought consisted mainly of secondary metabolites (71% of total metabolites) associated with plant responses to drought stress, whereas the metabolite composition under recovery shifted towards a dominance of primary metabolites (81% of total metabolites). These results strongly suggested that roots exude the most abundant root metabolites. The exudates were changed irreversibly by the lack of water under extreme drought conditions, and the plants could not recover.
1
An ecometabolomics approach characterized Quercus ilex root exudates across an experimental drought gradient and subsequent recovery.
2
During recovery, exudate composition shifted toward primary metabolites, which accounted for 81% of total metabolites.
3
Extreme drought irreversibly changed root exudates, and plants showed limited capacity to recover after water deprivation.
4
Increasing drought stress strongly altered the composition of the holm oak root exudate metabolome.
5
Under drought, secondary metabolites dominated exudates, comprising 71% of total metabolites and reflecting drought-stress responses.

Root exudate metabolomes of Quercus ilex (holm oak) under experimental drought and subsequent recovery

Drought-induced changes in exudate metabolite composition and their reversibility during recovery

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2018-08-17
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Albert Gargallo‐Garriga
Catherine Preece
Jordi Sardans
Michal Oravec
Otmar Urban
Josep Peñuelas
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