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Rat molar has more divergent roots than those of human, resulting in more chances to leave root remnants.
The maxillary molars suggested that widely divergent roots will require higher loads (causing rotation about the vertical axis of the root) to achieve similar levels of stress, even if the surface area of the root is similar to other less divergent tooth roots and this supports the present study [42].
The mandibular deciduous 08 had three columns and just two divergent roots.
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In addition to these divergent root architectures that have been selected for among rice agro-ecosystems, the increasingly fluctuating levels of stress that is projected to occur across rice growing systems may necessitate more diverse root architectures and better adaptability to uneven distribution of soil resources.
We have investigated the responses of root morphology and root-exuded organic acids to low P availability in three important food crops (barley, canola and potato) with divergent root traits using a hydroponic culture system.
In the current study, we investigated the responses in root morphology and root-exuded organic acids (OAs) to low available P (1 μM P) and sufficient P (50 μM P) in barley, canola and micropropagated seedlings of potato three important food crops with divergent root traits, using a hydroponic plant growth system.
A weighting matrix with finite weights is applied for the control of complex modes, whereas a weighting matrix with an infinite weight is used for controlling the divergent mode, with roots being real.
For example, as shown in Figure 3a, the 7th exon of Gm15g15960, showed Ψ with 88% in root tip and 6% in cotyledon (in Additional file 2: Table S11), suggesting divergent functions between root tip and cotyledon.
As things are, Descartes's stove and Montaigne's library tower have given us two ways of living and thinking that are at root divergent.
Divergent natural selection rooted in differential resource use can generate and maintain intraspecific eco-morphological divergence (i.e., resource polymorphism), ultimately leading to population splitting and speciation.
Results showed that plants evolved divergent adaptations of root morphology and exudation as a response to low P availability.
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