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In contrast to the axr3 single mutants, where root growth apparently wanders randomly with frequent changes in direction (e.g. kink in root in Figure 1k), the axr3-1 paxr3-3and axr3-3 pax1-1 double mutant roots grow more towards the gravity vector, and produce more root hairs.
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Prior to rotation, the mutant roots were growing in random directions, whereas WT roots elongated along the direction of gravity (Figure 3D).
The roots grow poorly and the sugar content is reduced.
Plant roots grow to acquire nutrients.
In the right conditions, switchgrass roots grow very deep.
In contrast to their growth at pH 6, vti13 mutant root hairs grew long and straight on MS media at pH 5. Oscillations in reactive oxygen species and extracellular pH are correlated with fluctuations in growth at the apex of pollen tubes and root hair cells (Messerli et al., 1999; Monshausen et al., 2007) and in the extensibility of the cell wall (Monshausen et al., 2008).
Furthermore, the mutant crown roots extended randomly, whereas the WT crown roots grew in the direction of gravity.
The total N concentration in the roots of OsNAR2.1 RNAi mutant plants was 63 66 % of that in wild-type roots grown in 0.2 mM N under IA conditions (Yan et al. 2011).
Plant roots grew from tubes into the solution.
Root exudates were collected from roots grown in nutrient solution which may differ from soil grown roots by, for example, the lack of root hairs.
Thereafter, the two roots grew vertically at similar rates, as though they were one root.
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