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OE of SpPKE1 enhanced drought tolerance in tobacco.
Fig. 6 Overexpression of OsPYL3 and OsPYL9 exhibit enhanced drought stress tolerance.
These results indicated that the ectopic expression of OsPYL3 and OsPYL9 enhanced drought stress tolerance in rice (Fig. 6a c).
The hybrids thus displayed both types of parental strategies which could have conferred enhanced drought adaptability upon them.
The overexpression of AtPYL5 leads to ABA hypersensitivity during early seedling development, as well as enhanced drought stress tolerance (Klingler et al. 2010).
Overexpression of ArathEULS3 enhanced drought resistance (Li et al. 2014) and plants showed less disease symptoms after P. syringae infection compared to wild type plants or plants with lower transcript levels of the lectin gene (Van Hove et al. 2015).
Second, overexpression of OsPYL3 and OsPYL9 enhanced drought stress tolerance, which can be partly explained by a slower water loss rate through the stomata in transgenic lines (Fig.��6).
Pyrophosphate: fructose-6-phosphate 1-phosphotransferase was associated to seedling salt tolerance (Lim et al. 2014) while overexpression of a flavin monooxygenase designated as YUCCA enhanced drought tolerance of A. thaliana (Cha et al. 2015).
The iaaM-OX transgenic lines with higher endogenous indole-3-acetic acid (IAA) level and IAA pre-treated wild type (WT) plants exhibited enhanced drought stress resistance, while the yuc1yuc2yuc6 triple mutants with lower endogenous IAA level showed decreased stress resistance in comparison to non-treated WT plants.
The cyp707a3 mutant plants are hypersensitive to ABA and exhibited enhanced drought tolerance [47].
Overexpression of ABF3 in Arabidopsis confers enhanced drought tolerance [ 7].
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