<p>Future growing season weather and soil water as explanations of extremes in sorghum yield. Lines are from extreme low and high biomass years in simulations. Daily maximum air temperatures (Tmax) (a-e) and variations in growing season water filled pore space (wfps) (f-j). Global circulation model from which downscaled weather files were generated in the lower right of Fig a-e, and correspond to paired wfps Fig f-j. Colored values in the upper left of each panel represent correlation coefficient for correlations of Tmax or wfps with daily biomass increment for high and low biomass simulations.</p
<p>Proportional effect (%) of increasing N inputs by 105% from 8.4 to 17.3 g N ∙ m<sup>-2</sup>, on ...
Crop growth and development models that are based on physiological and physical principles and are d...
<p>Simulated sorghum biomass C in response to two N application rates, variable N timing and irrigat...
DAYCENT model output for soil C, greenhouse gas flux and aboveground biomass for sorghum. Simulation...
Global warming is widely predicted to decrease crop yields in tropical, sub-tropical and Mediterrane...
<p>Simulation results for input scaled biomass C (panels a and b) and nitrous oxide emissions (c and...
Drought and heat stress are increasingly important abiotic limitations to productivity of sorghum. H...
Breeding sorghum to withstand droughts is pivotal to secure crop production in regions vulnerable to...
Sorghum (Sorghum bicolor (L.) Moench.) is one of the major summer crops grown in the subtropics. The...
<p>Daily modeled sorghum growth trajectories in relation to inorganic nitrogen pools in the simulati...
Abstract Many crop species, particularly those of tropical origin, are chilling sensitive, so improv...
<div><p>External inputs to agricultural systems can overcome latent soil and climate constraints on ...
Based on sensitivity analyses the effect of changing in climate on sorghum has been investigated. Th...
External inputs to agricultural systems can overcome latent soil and climate constraints on producti...
This article is available at http://dx.doi.org/10.4236/as.2014.510087Decision Support System for Agr...
<p>Proportional effect (%) of increasing N inputs by 105% from 8.4 to 17.3 g N ∙ m<sup>-2</sup>, on ...
Crop growth and development models that are based on physiological and physical principles and are d...
<p>Simulated sorghum biomass C in response to two N application rates, variable N timing and irrigat...
DAYCENT model output for soil C, greenhouse gas flux and aboveground biomass for sorghum. Simulation...
Global warming is widely predicted to decrease crop yields in tropical, sub-tropical and Mediterrane...
<p>Simulation results for input scaled biomass C (panels a and b) and nitrous oxide emissions (c and...
Drought and heat stress are increasingly important abiotic limitations to productivity of sorghum. H...
Breeding sorghum to withstand droughts is pivotal to secure crop production in regions vulnerable to...
Sorghum (Sorghum bicolor (L.) Moench.) is one of the major summer crops grown in the subtropics. The...
<p>Daily modeled sorghum growth trajectories in relation to inorganic nitrogen pools in the simulati...
Abstract Many crop species, particularly those of tropical origin, are chilling sensitive, so improv...
<div><p>External inputs to agricultural systems can overcome latent soil and climate constraints on ...
Based on sensitivity analyses the effect of changing in climate on sorghum has been investigated. Th...
External inputs to agricultural systems can overcome latent soil and climate constraints on producti...
This article is available at http://dx.doi.org/10.4236/as.2014.510087Decision Support System for Agr...
<p>Proportional effect (%) of increasing N inputs by 105% from 8.4 to 17.3 g N ∙ m<sup>-2</sup>, on ...
Crop growth and development models that are based on physiological and physical principles and are d...
<p>Simulated sorghum biomass C in response to two N application rates, variable N timing and irrigat...