One of the technology options that can help farmers cope with water scarcity at the field level is alternate wetting and drying (AWD). Limited information is available on the varietal responses to nitrogen, AWD, and their interactions. Field experiments were conducted at the International Rice Research Institute (IRRI) farm in 2009 dry season (DS), 2009 wet season (WS), and 2010 DS to determine genotypic responses and water use efficiency of rice under two N rates and two water management treatments. Grain yield was not significantly different between AWD and continuous flooding (CF) across the three seasons. Interactive effects among variety, water management, and N rate were not significant. The high yield was attributed to the significan...
Compared to drought-susceptible rice cultivars (DSRs), drought-resistance rice cultivars (DRRs) coul...
As the global population grows, demand on food production will also rise. For rice, one limiting fac...
As the global population grows, demand on food production will also rise. For rice, one limiting fac...
One of the technology options that can help farmers cope with water scarcity at the field level is a...
Alternate wetting and drying (AWD) irrigation in lowland rice has been successfully implemented in f...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
Alternate wetting and drying (AWD) irrigation in lowland rice has been successfully implemented in f...
The present global water crisis threatens the sustainability of irrigated rice production as the dem...
AbstractTo meet the major challenge of increasing rice production to feed a growing population under...
The experiments were conducted to evaluate the yield performance of the inbred and hybrid rice varie...
Of all the crops, rice is the one that consumes the most water. Rice yields and quality are signific...
To meet the major challenge of increasing rice production to feed a growing population under increas...
Alternate wetting and drying (AWD) technique has been developed and evaluated on rice (Oryza sativa)...
Alternate wetting and drying (AWD) technique has been developed and evaluated on rice (Oryza sativa)...
Alternate wetting and drying (AWD) technique has been developed and evaluated on rice (Oryza sativa)...
Compared to drought-susceptible rice cultivars (DSRs), drought-resistance rice cultivars (DRRs) coul...
As the global population grows, demand on food production will also rise. For rice, one limiting fac...
As the global population grows, demand on food production will also rise. For rice, one limiting fac...
One of the technology options that can help farmers cope with water scarcity at the field level is a...
Alternate wetting and drying (AWD) irrigation in lowland rice has been successfully implemented in f...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
Alternate wetting and drying (AWD) irrigation in lowland rice has been successfully implemented in f...
The present global water crisis threatens the sustainability of irrigated rice production as the dem...
AbstractTo meet the major challenge of increasing rice production to feed a growing population under...
The experiments were conducted to evaluate the yield performance of the inbred and hybrid rice varie...
Of all the crops, rice is the one that consumes the most water. Rice yields and quality are signific...
To meet the major challenge of increasing rice production to feed a growing population under increas...
Alternate wetting and drying (AWD) technique has been developed and evaluated on rice (Oryza sativa)...
Alternate wetting and drying (AWD) technique has been developed and evaluated on rice (Oryza sativa)...
Alternate wetting and drying (AWD) technique has been developed and evaluated on rice (Oryza sativa)...
Compared to drought-susceptible rice cultivars (DSRs), drought-resistance rice cultivars (DRRs) coul...
As the global population grows, demand on food production will also rise. For rice, one limiting fac...
As the global population grows, demand on food production will also rise. For rice, one limiting fac...