Complementary Phenotyping of Maize Root Architecture by Root Pulling Force and X-Ray Computed Tomography
Shao, M.-R.; Jiang, N.; Li, M.; Howard, A.; Lehner, K.; Mullen, J. L.; Gunn, S. L.; McKay, J.; Topp, C. N.
Show abstract
The root system is critical for the survival of nearly all land plants and a key target for improving abiotic stress tolerance, nutrient accumulation, and yield in crop species. Although many methods of root phenotyping exist, within field studies one of the most popular methods is the extraction and measurement of the upper portion of the root system, known as the root crown, followed by trait quantification based on manual measurements or 2D imaging. However, 2D techniques are inherently limited by the information available from single points of view. Here, we used X-ray computed tomography to generate highly accurate 3D models of maize root crowns and created computational pipelines capable of measuring 71 features from each sample. This approach improves estimates of the genetic contribution to root system architecture, and is refined enough to detect various changes in global root system architecture over developmental time as well as more subtle changes in root distributions as a result of environmental differences. We demonstrate that root pulling force, a high-throughput method of root extraction that provides an estimate of root biomass, is associated with multiple 3D traits from our pipeline. Our combined methodology can therefore be used to calibrate and interpret root pulling force measurements across a range of experimental contexts, or scaled up as a stand-alone approach in large genetic studies of root system architecture.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- In silico analysis of the evolution of root phenotypes during maize domestication in Neolithic soils of Tehuacan 95%
- Functional phenomics and genetics of the root economics space in winter wheat using high-throughput phenotyping of respiration and architecture 95%
- Root growth responses to mechanical impedance are regulated by a network of ROS, ethylene and auxin signalling in Arabidopsis. 95%
Similar papers in this journal
- Characterization of growth and development of sorghum genotypes with differential susceptibility to Striga hermonthica 95%
- Cortical parenchyma wall width (CPW) regulates root metabolic cost and maize performance under suboptimal water availability 95%
- Root anatomical gradients and cultivar differences underlie variation in root hydraulic properties in German winter wheat 94%
Similar papers in this journal
- Nodal root diameter and node number in maize (Zea mays L.) interact to influence plant growth under nitrogen stress 96%
- Inoculation with the mycorrhizal fungus Rhizophagus irregularis modulates the relationship between root growth and nutrient content in maize (Zea mays L.) 96%
- Between Two Extremes: Tripsacum dactyloides Root Anatomical Responses to Drought and Waterlogging 95%
Similar papers in this journal
- Temporally resolved growth patterns reveal novel information about the polygenic nature of complex quantitative traits 94%
- A biphasic trajectory for maize stalk mechanics shaped by genetic, environmental, and biotic factors 93%
- Loss of Tonoplast Sucrose Transporter SUT4 Alters Seasonal Growth, Carbohydrate Allocation, and Fertility in Field-Grown Poplar 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.