We evaluated the yields of Oryza sativa L. ‘Nipponbare’ rice lines expressing a gene encoding an A20/AN1 domain stress-associated protein, AlSAP, from the halophyte grass Aeluropus littoralis under the control of different promoters. Three independent field trials were conducted, with drought imp...
Ghneim-Herrera, Thaura
,
Selvaraj, Michael Gomez
,
Meynard, Donaldo
,
Fabre, Denis
,
Peña, Alexandra
,
Romdhane, Walid Ben
,
Saad, Rania Ben
,
Ogawa, Satoshi
,
Rebolledo, María Camila
,
Ishitani, Manabu
,
Tohme, Joseph M.
,
Al-Doss, Abdullah
,
Guiderdoni, Emmanuel
,
Hassairi, Afif
,
[Expression of the Aeluropus littoralis AlSAP Gene Enhances Rice Yield under Field Drought at the Reproductive Stage]
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Expression of the Aeluropus littoralis AlSAP Gene Enhances Rice Yield under Field Drought at the Reproductive Stage
Drought stress has often caused significant decreases in crop production which could be associated with global warming. Enhancing drought tolerance without a grain yield penalty has been a great challenge in crop improvement. Here, we report the Arabidopsis thaliana galactinol synthase 2 gene (At...
The genetic improvement of drought resistance is essential for stable and adequate crop production in drought-prone areas1. Here we demonstrate that alteration of root system architecture improves drought avoidance through the cloning and characterization of DEEPER ROOTING 1 (DRO1), a rice quanti...
Uga, Y
,
Sugimoto, K
,
Ogawa, Satoshi
,
Rane, Jagadish
,
Ishitani, Manabu
,
Hara, N
,
Kitomi, Y
,
Inukai, Y
,
Ono, K
,
Kanno, N
,
Inoue, H
,
Takehisa, H
,
Motoyama, R
,
Nagamura, Y
,
Wu, J.
,
Matsumoto, T
,
Takai, T
,
Okuno, K
,
Yano, M.
,
[Control of root system architecture by DEEPER ROOTING 1 increases rice yield under drought conditions]
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Control of root system architecture by DEEPER ROOTING 1 increases rice yield under drought conditions