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Senescence-regulating genes were severely affected under full submergence.
Several studies have focused on the important role of ROS during hypoxia signaling under full submergence conditions (Baxter et al. 2014; Fukao et al. 2011; Liu et al. 2015; Yang and Hong 2015 ).
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This study provides evidence of differential regulation of OsRboh expression and ROS accumulation under partial or full submergence in rice.
In this study, significant physiological changes were observed in plant height, leaf sheath elongation and chlorophyll a, b and total content under partial and full submergence treatments.
To further dissect the effects of different levels of flooding, we investigated the physiological and molecular responses of rice seedlings under partial and full submergence.
Air, non-submerged controls; Sub, full submergence; 'TL3', upland rice; and 'FR13A', lowland rice.
To assess several physiological mechanisms associated with partial and full submergence in rice, plant height and leaf sheath length were determined in 14 days-old rice seedlings under partial submergence (PS) or full submergence (FS) for 2, 4, 6 and 8 days.
full submergence.
Control check (CK), partial submergence (PS) and full submergence (FS).
Notably, partial submergence led to faster elongation at a relatively early stage compared with full submergence.
Furthermore, partial submergence led to faster elongation at a relatively early stage compared with full submergence (Fig. 1).
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