To better understand the role of root anatomy in regulating plant adaptation to soil mechanical impedance, 12 maize lines were evaluated in two soils with and without compaction treatments under field conditions. Penetrometer resistance was 1-2 MPa greater in the surface 30 cm of the compacted plots at a water content of 17-20% (v/v). Root thickening in response to compaction varied among genotypes and was negatively associated with rooting depth at one field site under non-compacted plots. Thickening was not associated with rooting depth on compacted plots. Genotypic variation in root anatomy was related to rooting depth. Deeper-rooting plants were associated with reduced cortical cell file number in combination with greater mid cortical c...
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....
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...
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...
© The Author(s) 2020. To better understand the role of root anatomy in regulating plant adaptation t...
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....
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...
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...
© The Author(s) 2020. To better understand the role of root anatomy in regulating plant adaptation t...
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....