Using a field to lab approach, mature deep-rooting traits in wheat were correlated to root phenotypes measured on young plants from controlled conditions. Mature deep-rooting root traits of 20 wheat genotypes at maturity were established via coring in three field trials across 2 years. Field traits were correlated to phenotypes expressed by the 20 genotypes after growth in four commonly used lab screens: (i) soil tubes for root emergence, elongation, length, and branching at four ages to 34 days after sowing (DAS); (ii) paper pouches 7 DAS and (iii) agar chambers for primary root (PR) number and angles at 8 DAS; and (iv) soil baskets for PR and nodal root (NR) number and angle at 42 DAS. Correlations between lab and field root traits (r2=0....
Root traits influence the amount of water and nutrient absorption, and are important for maintaining...
© 2019 The Author(s) Correlations between juvenile wheat root traits, and grain yield and yield comp...
Wheat root systems may not be optimal for the acquisition of subsoil water, due to excessive root g...
We aim to incorporate deep root traits into future wheat varieties to increase access to stored soil...
Modelling and limited data suggest that crops with deeper and longer roots capture more soil resourc...
Background and aims: We were interested to know if laboratory screens of root growth could be used t...
Root system size is a key trait for improving water and nitrogen uptake efficiency in wheat (Triticu...
Phenotyping root traits and understanding their inheritance are critical for crop improvement, as th...
Wheat varieties with greater yields arise today mainly by selecting for harvested grain yield in fie...
Background and Aims: Plant roots growing underground are critical for soil resource acquisition, anc...
International audienceRoots are essential for water and nutrient uptake but are rarely the direct ta...
The aims of this study were to investigate genotypic variations in root traits at phytomer level of ...
<div><p>Root traits influence the amount of water and nutrient absorption, and are important for mai...
<p>(A) Root distribution pattern analyzed in drought tolerant and susceptible genotypes grown under ...
Root traits influence the amount of water and nutrient absorption, and are important for maintaining...
© 2019 The Author(s) Correlations between juvenile wheat root traits, and grain yield and yield comp...
Wheat root systems may not be optimal for the acquisition of subsoil water, due to excessive root g...
We aim to incorporate deep root traits into future wheat varieties to increase access to stored soil...
Modelling and limited data suggest that crops with deeper and longer roots capture more soil resourc...
Background and aims: We were interested to know if laboratory screens of root growth could be used t...
Root system size is a key trait for improving water and nitrogen uptake efficiency in wheat (Triticu...
Phenotyping root traits and understanding their inheritance are critical for crop improvement, as th...
Wheat varieties with greater yields arise today mainly by selecting for harvested grain yield in fie...
Background and Aims: Plant roots growing underground are critical for soil resource acquisition, anc...
International audienceRoots are essential for water and nutrient uptake but are rarely the direct ta...
The aims of this study were to investigate genotypic variations in root traits at phytomer level of ...
<div><p>Root traits influence the amount of water and nutrient absorption, and are important for mai...
<p>(A) Root distribution pattern analyzed in drought tolerant and susceptible genotypes grown under ...
Root traits influence the amount of water and nutrient absorption, and are important for maintaining...
© 2019 The Author(s) Correlations between juvenile wheat root traits, and grain yield and yield comp...
Wheat root systems may not be optimal for the acquisition of subsoil water, due to excessive root g...