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![NO3−, PO43− and SO42− deprivation reduced LKT1‐mediated low‐affinity K+ uptake and SKOR‐mediated K+ translocation in tomato and Arabidopsis plants - Ródenas - 2017 - Physiologia Plantarum - Wiley Online Library NO3−, PO43− and SO42− deprivation reduced LKT1‐mediated low‐affinity K+ uptake and SKOR‐mediated K+ translocation in tomato and Arabidopsis plants - Ródenas - 2017 - Physiologia Plantarum - Wiley Online Library](https://onlinelibrary.wiley.com/cms/asset/9a270fe0-3e54-41f6-be01-b45201a662b3/ppl12558-fig-0008-m.jpg)
NO3−, PO43− and SO42− deprivation reduced LKT1‐mediated low‐affinity K+ uptake and SKOR‐mediated K+ translocation in tomato and Arabidopsis plants - Ródenas - 2017 - Physiologia Plantarum - Wiley Online Library
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![NO3−, PO43− and SO42− deprivation reduced LKT1‐mediated low‐affinity K+ uptake and SKOR‐mediated K+ translocation in tomato and Arabidopsis plants - Ródenas - 2017 - Physiologia Plantarum - Wiley Online Library NO3−, PO43− and SO42− deprivation reduced LKT1‐mediated low‐affinity K+ uptake and SKOR‐mediated K+ translocation in tomato and Arabidopsis plants - Ródenas - 2017 - Physiologia Plantarum - Wiley Online Library](https://onlinelibrary.wiley.com/cms/asset/dd7b4061-449b-4edd-9a78-801414099f8d/ppl12558-fig-0005-m.jpg)
NO3−, PO43− and SO42− deprivation reduced LKT1‐mediated low‐affinity K+ uptake and SKOR‐mediated K+ translocation in tomato and Arabidopsis plants - Ródenas - 2017 - Physiologia Plantarum - Wiley Online Library
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NO3−, PO43− and SO42− deprivation reduced LKT1‐mediated low‐affinity K+ uptake and SKOR‐mediated K+ translocation in tomato and Arabidopsis plants - Ródenas - 2017 - Physiologia Plantarum - Wiley Online Library
![NO3−, PO43− and SO42− deprivation reduced LKT1‐mediated low‐affinity K+ uptake and SKOR‐mediated K+ translocation in tomato and Arabidopsis plants - Ródenas - 2017 - Physiologia Plantarum - Wiley Online Library NO3−, PO43− and SO42− deprivation reduced LKT1‐mediated low‐affinity K+ uptake and SKOR‐mediated K+ translocation in tomato and Arabidopsis plants - Ródenas - 2017 - Physiologia Plantarum - Wiley Online Library](https://onlinelibrary.wiley.com/cms/asset/c87a0bcd-e49a-4709-a850-ea93a34a9e5a/ppl12558-fig-0007-m.jpg)
NO3−, PO43− and SO42− deprivation reduced LKT1‐mediated low‐affinity K+ uptake and SKOR‐mediated K+ translocation in tomato and Arabidopsis plants - Ródenas - 2017 - Physiologia Plantarum - Wiley Online Library
![NO3−, PO43− and SO42− deprivation reduced LKT1‐mediated low‐affinity K+ uptake and SKOR‐mediated K+ translocation in tomato and Arabidopsis plants - Ródenas - 2017 - Physiologia Plantarum - Wiley Online Library NO3−, PO43− and SO42− deprivation reduced LKT1‐mediated low‐affinity K+ uptake and SKOR‐mediated K+ translocation in tomato and Arabidopsis plants - Ródenas - 2017 - Physiologia Plantarum - Wiley Online Library](https://onlinelibrary.wiley.com/cms/asset/3465ca7f-86db-4f2f-a7ba-82df555082f8/ppl12558-fig-0006-m.jpg)
NO3−, PO43− and SO42− deprivation reduced LKT1‐mediated low‐affinity K+ uptake and SKOR‐mediated K+ translocation in tomato and Arabidopsis plants - Ródenas - 2017 - Physiologia Plantarum - Wiley Online Library
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