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Review
. 2013 Jul;112(2):347-57.
doi: 10.1093/aob/mcs293. Epub 2013 Jan 17.

Steep, cheap and deep: an ideotype to optimize water and N acquisition by maize root systems

Affiliations
Review

Steep, cheap and deep: an ideotype to optimize water and N acquisition by maize root systems

Jonathan P Lynch. Ann Bot. 2013 Jul.

Abstract

A hypothetical ideotype is presented to optimize water and N acquisition by maize root systems. The overall premise is that soil resource acquisition is optimized by the coincidence of root foraging and resource availability in time and space. Since water and nitrate enter deeper soil strata over time and are initially depleted in surface soil strata, root systems with rapid exploitation of deep soil would optimize water and N capture in most maize production environments. • THE IDEOTYPE: Specific phenes that may contribute to rooting depth in maize include (a) a large diameter primary root with few but long laterals and tolerance of cold soil temperatures, (b) many seminal roots with shallow growth angles, small diameter, many laterals, and long root hairs, or as an alternative, an intermediate number of seminal roots with steep growth angles, large diameter, and few laterals coupled with abundant lateral branching of the initial crown roots, (c) an intermediate number of crown roots with steep growth angles, and few but long laterals, (d) one whorl of brace roots of high occupancy, having a growth angle that is slightly shallower than the growth angle for crown roots, with few but long laterals, (e) low cortical respiratory burden created by abundant cortical aerenchyma, large cortical cell size, an optimal number of cells per cortical file, and accelerated cortical senescence, (f) unresponsiveness of lateral branching to localized resource availability, and (g) low K(m) and high Vmax for nitrate uptake. Some elements of this ideotype have experimental support, others are hypothetical. Despite differences in N distribution between low-input and commercial maize production, this ideotype is applicable to low-input systems because of the importance of deep rooting for water acquisition. Many features of this ideotype are relevant to other cereal root systems and more generally to root systems of dicotyledonous crops.

Keywords: Root phenes; anatomy; architecture; ideotype; nitrogen; water.

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Figures

Fig. 1.
Fig. 1.
The ‘steep, cheap, and deep’ ideotype for optimal acquisition of water and N by maize root systems, as discussed in the text.
Fig. 2.
Fig. 2.
Correlation between crown and brace root growth angles (CA and BA, respectively) and root depth, expressed as D95, the soil depth above which 95 % of root length is located, for inbred maize lines at 43 d after planting under low N (LN) and well-fertilized (HN) conditions in the field in central Pennsylvania, USA. Each point represents the mean of four replicates. From Trachsel et al. (2013).

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