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Seedling roots were sorted and classified by root order (first sixth order roots).
As expected, mean root diameter increased with increasing root order (Fig. 2b).
The cumulative root length decreased sharply with increasing root order (Fig. 2a).
Morphometric root classification was used to characterize the architectural root order from which each Pythium isolate was derived.
A specific effect of root order, independent of branching density and apical diameter, contributed to explain these slow second-order lateral elongation rates.
Results showed the presence of heterogeneity in decomposition rates within fine-root architecture, and this pattern was influenced by classification methods (root order or diameter class).
Similar(45)
The cumulative root length of the first two root orders comprised over 60% of the total length of fine roots.
The morphological characteristics of P. tabuliformis seedling roots following N application treatment varied among root orders, but not all were significant (Fig. 2).
Our structure representations are rooted, ordered, labelled trees.
In this work we consider unrooted unordered trees, rooted unordered trees, unrooted ordered trees, and rooted ordered trees.
Preliminary experimental results over members of the RNAs P and Hammerhead families show that the tool can be used for detecting new structural similarities between RNA molecules, which could not be detected by the classical rooted-ordered tree alignment methods.
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