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B-1deficiency affects water uptake into the root, transport through the shoot, and loss of water from the leaves [ 42].
Prevention of Na+ entry into the root, transport to and allocation within the leaf, and sequestration into the vacuole are strategies with which plants cope with high salt environment.
Seedlings were placed on top of the growth media and modeling clay, such that either the hypocotyl base and root differentiation zone (shoot to root transport) or the root maturation zone (hypocotyl to root and root to hypocotyl transport) laid on the dry modeling clay.
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Analysis and evaluation of these mechanisms would be greatly facilitated by the availability of a dynamic model that can predict soil contaminant uptake by roots, transport from roots through stems to leaves, and accumulation in plant during the transport process.
Indeed, a demonstration of shoot-to-root transport and biological activity of shoot-derived miR399 in roots is consistent with the role as a long-distance signal for the regulation of plant phosphate homeostasis [ 44, 45] and the graft-transmissible induction of potato tuberisation by miR172 implies its long-distance signalling role [ 75].
Three of them were described as involved in root nutrient transport, in water transport and in root hairs.
In Arabidopsis roots growing in the RootChip16, ABA treatment was not required for the induction of root cell transport activity, suggesting the transporter(s) involved are constitutively expressed.
Interestingly, the ABA-regulated AP2 domain transcription factor ABI4 was recently shown to repress expression of the auxin transporter PIN1, and accordingly abi4 mutants display enhanced root auxin transport (Shkolnik-Inbar and Bar-Zvi 2011).
These findings pointed to a substantial contribution of a single AQP isoform to root water transport.
Intraspecific root water transport has so far been compared in only a small number of species: rice, maize, grapevine and Arabidopsis (Sutka et al. [2011]).
We investigated genotypic differences related to root water transport in four genotypes selected because of their differing water use efficiency (JAC doi: 10.1111/jac.12079. 2014).
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