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1 on, specifically from epidermal cells of the root apex.
2 specific cell populations within the primary root apex.
3 and the sinus membrane is elevated over the root apex.
4 of the phytohormone auxin from the shoot to root apex.
5 egulation of oxIAA levels in the Arabidopsis root apex.
6 abolically active cells found in the growing root apex.
7 d in epidermal and hypodermal tissues at the root apex.
8 edons and a reduction in auxin levels in the root apex.
9 n distribution and stem cell function at the root apex.
10 proliferating and endocycling domains of the root apex.
11 rtex cells within the elongation zone of the root apex.
12 ion (CEJ), CEJ to root apex, and cusp tip to root apex.
13 opetal, post-phloem movement of auxin to the root apex.
14 spect of the root, occasionally reaching the root apex.
15 inly involves decreased cell division at the root apex.
16 distribution of auxin within the Arabidopsis root apex.
17 rominent in the proliferating regions of the root apex.
18 MS medium, except in regions proximal to the root apex.
19 8, low N increases auxin accumulation in the root apex.
20 otype-specific lncRNA-mediated regulation in root apexes.
21 rinsically lower H(+)-ATPase activity in the root apex, (2) greater salt-induced membrane depolarizat
23 us, both lateral corrective bending near the root apex and root tip impedance could be due to differe
24 postproliferation phase of elongation at the root apex and this was associated with extensive radial
26 l infection and death of border cells at the root apex appears to selectively suppress fungal growth
27 We show that salinity application to the root apex arrests root growth in a highly tissue- and tr
28 he central stele and then, upon reaching the root apex, auxin is transported basipetally through the
29 f 10 (out of 25 detected) amino acids in the root apex but not in the mature zone and changed the org
30 creased auxin-induced gene expression in the root apex, but decreased expression in regions where lat
31 of AAK6 reduces cell production in the aak6 root apex, but this is partially compensated for by long
33 Na(+) uptake was about 4-fold higher in the root apex compared with the mature zone, mature root cel
34 e the effect of predictors such as symptoms, root apex development (closed versus open), and type of
35 se in the root hair zone is dependent on the root apex-expressed auxin synthesis gene OsYUCCA8 (OsYUC
36 f the auxin permease AUX1 in the Arabidopsis root apex has revealed a novel phloem-based IAA transpor
37 and stem cell maintenance must occur at the root apex in order to ensure the continuous growth of pl
38 hibit reduced shootward IAA transport at the root apex in radiotracer experiments and reduced gravitr
39 involved in organizing the distal end of the root apex, including the extent and pattern of cell divi
40 Pi-dependent activation of autophagy in the root apex is a consequence of local Pi sensing and the a
42 ts in epidermal cells of the rapidly growing root apex, mature epidermal cells, cortical and epiderma
43 ncentrations were observed internally at the root apex (meristem), with As also accumulating in the r
45 (mu-SXRF) showed that Hg accumulated at the root apex of alfalfa and was distributed through the vas
46 rhizosphere induces citrate efflux from the root apex of the Al-tolerant maize (Zea mays) hybrid Sou
50 lateral root cap tissues of the Arabidopsis root apex reveals that the auxin permease regulates a se
51 dapted plants, such as rice, it is typically root apexes, sites of rapid entry for water/nutrients, w
55 Carazinho extends TaMATE1B expression to the root apex, where it confers citrate efflux and enhanced
56 es OsYUC8-mediated auxin biosynthesis in the root apex, which is subsequently mobilized to the root h