Our results reveal the great
capacity of cassava to rapidly recover from water deficit conditions
even when growing under a severe water deficit, as was used in
this study. The rapid ability to restore stomatal function and reactions
of carboxylation at satisfactory levels (Connor et al., 1981;
El-Sharkawy, 2012, 2014) explains the recovery of cassava plants
just one day after rewatering. Additionally, the pool of carbohydrates
stored within the plant, particularly the stem, may be rapidly
metabolized and used as a carbon source for the rapid recovery of
important physiological functions immediately after re-watering
Our results reveal the greatcapacity of cassava to rapidly recover from water deficit conditionseven when growing under a severe water deficit, as was used inthis study. The rapid ability to restore stomatal function and reactionsof carboxylation at satisfactory levels (Connor et al., 1981;El-Sharkawy, 2012, 2014) explains the recovery of cassava plantsjust one day after rewatering. Additionally, the pool of carbohydratesstored within the plant, particularly the stem, may be rapidlymetabolized and used as a carbon source for the rapid recovery ofimportant physiological functions immediately after re-watering
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