Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources. To investigate whether rooting depth and root length under mechanical impedance caused by compaction are correlated we evaluated 12 maize lines at two field sites. To distinguish between lateral and nodal roots, roots were sorted into different diameter classes. Coarse roots had diameters >1 mm and represent nodal root axes. Greater proportions of coarse roots on compacted plots were found at both field sites however results were driven by genotypic variation. Soil compaction reduced total rooting depth (in all diameter classes) and coarse rooting depth at both sites compared to non-compacted plots. Root distribution was influenced by com...
To better understand the role of root anatomy in regulating plant adaptation to soil mechanical impe...
To better understand the role of root anatomy in regulating plant adaptation to soil mechanical impe...
To better understand the role of root anatomy in regulating plant adaptation to soil mechanical impe...
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
© 2020 Elsevier B.V. Mechanical impedance is a primary constraint to root growth and hence the captu...
To better understand the role of root anatomy in regulating plant adaptation to soil mechanical impe...
To better understand the role of root anatomy in regulating plant adaptation to soil mechanical impe...
To better understand the role of root anatomy in regulating plant adaptation to soil mechanical impe...
To better understand the role of root anatomy in regulating plant adaptation to soil mechanical impe...
To better understand the role of root anatomy in regulating plant adaptation to soil mechanical impe...
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
Mechanical impedance is a primary constraint to root growth and hence the capture of soil resources....
© 2020 Elsevier B.V. Mechanical impedance is a primary constraint to root growth and hence the captu...
To better understand the role of root anatomy in regulating plant adaptation to soil mechanical impe...
To better understand the role of root anatomy in regulating plant adaptation to soil mechanical impe...
To better understand the role of root anatomy in regulating plant adaptation to soil mechanical impe...
To better understand the role of root anatomy in regulating plant adaptation to soil mechanical impe...
To better understand the role of root anatomy in regulating plant adaptation to soil mechanical impe...