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1 ntifying 255 loci affecting the sorghum seed ionome.
2  of genes and gene networks that control the ionome.
3 milies could be distinguished by their shoot ionomes.
4 families can be distinguished by their shoot ionomes.
5 tability of the ionomes, especially the zinc ionome, and yields known regulators and novel candidates
6 ting revealed that these changes in the leaf ionome are driven by the root and are associated with in
7 logenetic variation in a subset of the shoot ionome (Ca, Zn, Mn, Mg) was robust to this environmental
8     The screen reveals high stability of the ionomes, especially the zinc ionome, and yields known re
9 l effects on phylogenetic variation in shoot ionomes have not been quantified.
10 t a choline transporter gene, CTL1, controls ionome homeostasis by regulating the secretory trafficki
11                      By evaluating the shoot ionome in plants grown under different Fe nutritional co
12 bidopsis tsc10a mutant leads an altered leaf ionome, including increases in Na, K, and Rb and decreas
13                                        * The ionome is the elemental composition of a tissue or organ
14 othesis that phylogenetic variation in shoot ionomes is robust to environmental perturbation and that
15                                    While the ionome of cax1 and cax3 lines were modestly perturbed, t
16                Phylogenetic variation in the ionomes of plant shoots has been widely reported based o
17 trace element composition (also known as the ionome) of living organisms.
18  the Arabidopsis thaliana (Arabidopsis) leaf ionome, or elemental composition, contains such signatur
19 utrient-responsive genes in the roots and to ionome patterns in the shoots.
20 n by analyses of transcriptome, proteome and ionome shift in Arabidopsis.
21                               * Whilst shoot ionomes were sensitive to fertilizer treatment, phylogen
22 trace element supplements after the cellular ionome would result in optimized cell growth.

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