Gazzarrini S, Lejay L, Gojon A, Ninnemann O, Frommer WB, von Wirén N (1999) Three
functional transporters for constitutive, diurnally regulated, and starvation-induced uptake of
ammonium into Arabidopsis roots. Plant Cell 11:937–947
Getahun BB, Kassie MM, Visser RG, Van der Linden CG (2019) Genetic diversity of potato
cultivars for nitrogen use efficiency under contrasting nitrogen regimes. Potato Res 63:267–290
Gho YS, Jung KH (2019) Comparative expression analyses of rice and Arabidopsis phosphate
transporter families revealed their conserved roles for the phosphate starvation response. Plant
Breed Biotechnol 7:42–49
Gho YS, An G, Park HM, Jung KH (2018) A systemic view of phosphate starvation-responsive
genes in rice roots to enhance phosphate use efficiency in rice. Plant Biotechnol Rep
12:249–264
Gierth M, Mäser P, Schroeder JI (2005) The potassium transporter AtHAK5 functions in K+
deprivation-induced high-affinity K+ uptake and AKT1 K+ channel contribution to K+ uptake
kinetics in Arabidopsis roots. Plant Physiol 137:1105–1114
Godwin RM, Rae AL, Carroll BJ, Smith FW (2003) Cloning and characterization of two genes
encoding sulfate transporters from rice (Oryza sativa L). Plant Soil 257:113–123
Gong J, Li D, Li H, Zhou H, Xu J (2019) Identification of manganese-responsive microRNAs in
Arabidopsis by small RNA sequencing. Czech J Genet Plant Breed 55:76–82
González E, Solano R, Rubio V, Leyva A, Paz-Ares J (2005) Phosphate transporter traffic facilitator1 is a plant-specific SEC12-related protein that enables the endoplasmic reticulum exit of a
high-affinity phosphate transporter in Arabidopsis. Plant Cell 17:3500–3512
Good AG, Johnson SJ, De Pauw M, Carroll RT, Savidov N, Vidmar J, Stroeher V (2007)
Engineering nitrogen use efficiency with alanine aminotransferase. Botany 85:252–262
Grabov A (2007) Plant KT/KUP/HAK potassium transporters: single family–multiple functions.
Ann Bot 99:1035–1041
Green LS, Rogers EE (2004) FRD3 controls iron localization in Arabidopsis. Plant Physiol
136:2523–2531
Gruber BD, Giehl RF, Friedel S, von Wirén N (2013) Plasticity of the Arabidopsis root system
under nutrient deficiencies. Plant Physiol 163:161–179
Guignard MS, Leitch AR, Acquisti C, Eizaguirre C, Elser JJ, Hessen DO, Soltis DE (2017) Impacts
of nitrogen and phosphorus: from genomes to natural ecosystems and agriculture. Front Ecol
Evol 5:70
Guo B, Jin Y, Wussler C, Blancaflor EB, Motes CM, Versaw WK (2008) Functional analysis of the
Arabidopsis PHT4 family of intracellular phosphate transporters. New Phytol 177:889–898
Guo C, Zhao X, Liu X, Zhang L, Gu J, Li X, Xiao K (2013) Function of wheat phosphate
transporter gene TaPHT2; 1 in Pi translocation and plant growth regulation under replete and
limited Pi supply conditions. Planta 237:1163–1178
Guo W, Chen S, Hussain N, Cong Y, Liang Z, Chen K (2015a) Magnesium stress signaling in plant:
just a beginning. Plant Signal Behav 10(3):e992287
Guo Y, Zhu C, Gan L, Ng D, Xia K (2015b) Effects of exogenous gibberellic acid3 on iron and
manganese plaque amounts and iron and manganese uptake in rice. PLoS One 10(2):e0118177
Guo W, Nazim H, Liang Z, Yang D (2016) Magnesium deficiency in plants: an urgent problem.
Crop J 4:83–91
Gupta N, Ram H, Kumar B (2016) Mechanism of zinc absorption in plants: uptake, transport,
translocation and accumulation. Rev Environ Sci Bio/Technol 15:89–109
Haas FH, Heeg C, Queiroz R, Bauer A, Wirtz M, Hell R (2008) Mitochondrial serine
acetyltransferase functions as a pacemaker of cysteine synthesis in plant cells. Plant Physiol
148:1055–1067
Hamat HB, Kleinhofs A, Warner RL (1989) Nitrate reductase induction and molecular characterization in rice (Oryza sativa L). Mol Gen Genet 218:93–98
Hamburger D, Rezzonico E, Petétot JMC, Somerville C, Poirier Y (2002) Identification and
characterization of the Arabidopsis PHO1 gene involved in phosphate loading to the xylem.
Plant Cell 14:889–902
172
E. Bhardwaj et al.
functional transporters for constitutive, diurnally regulated, and starvation-induced uptake of
ammonium into Arabidopsis roots. Plant Cell 11:937–947
Getahun BB, Kassie MM, Visser RG, Van der Linden CG (2019) Genetic diversity of potato
cultivars for nitrogen use efficiency under contrasting nitrogen regimes. Potato Res 63:267–290
Gho YS, Jung KH (2019) Comparative expression analyses of rice and Arabidopsis phosphate
transporter families revealed their conserved roles for the phosphate starvation response. Plant
Breed Biotechnol 7:42–49
Gho YS, An G, Park HM, Jung KH (2018) A systemic view of phosphate starvation-responsive
genes in rice roots to enhance phosphate use efficiency in rice. Plant Biotechnol Rep
12:249–264
Gierth M, Mäser P, Schroeder JI (2005) The potassium transporter AtHAK5 functions in K+
deprivation-induced high-affinity K+ uptake and AKT1 K+ channel contribution to K+ uptake
kinetics in Arabidopsis roots. Plant Physiol 137:1105–1114
Godwin RM, Rae AL, Carroll BJ, Smith FW (2003) Cloning and characterization of two genes
encoding sulfate transporters from rice (Oryza sativa L). Plant Soil 257:113–123
Gong J, Li D, Li H, Zhou H, Xu J (2019) Identification of manganese-responsive microRNAs in
Arabidopsis by small RNA sequencing. Czech J Genet Plant Breed 55:76–82
González E, Solano R, Rubio V, Leyva A, Paz-Ares J (2005) Phosphate transporter traffic facilitator1 is a plant-specific SEC12-related protein that enables the endoplasmic reticulum exit of a
high-affinity phosphate transporter in Arabidopsis. Plant Cell 17:3500–3512
Good AG, Johnson SJ, De Pauw M, Carroll RT, Savidov N, Vidmar J, Stroeher V (2007)
Engineering nitrogen use efficiency with alanine aminotransferase. Botany 85:252–262
Grabov A (2007) Plant KT/KUP/HAK potassium transporters: single family–multiple functions.
Ann Bot 99:1035–1041
Green LS, Rogers EE (2004) FRD3 controls iron localization in Arabidopsis. Plant Physiol
136:2523–2531
Gruber BD, Giehl RF, Friedel S, von Wirén N (2013) Plasticity of the Arabidopsis root system
under nutrient deficiencies. Plant Physiol 163:161–179
Guignard MS, Leitch AR, Acquisti C, Eizaguirre C, Elser JJ, Hessen DO, Soltis DE (2017) Impacts
of nitrogen and phosphorus: from genomes to natural ecosystems and agriculture. Front Ecol
Evol 5:70
Guo B, Jin Y, Wussler C, Blancaflor EB, Motes CM, Versaw WK (2008) Functional analysis of the
Arabidopsis PHT4 family of intracellular phosphate transporters. New Phytol 177:889–898
Guo C, Zhao X, Liu X, Zhang L, Gu J, Li X, Xiao K (2013) Function of wheat phosphate
transporter gene TaPHT2; 1 in Pi translocation and plant growth regulation under replete and
limited Pi supply conditions. Planta 237:1163–1178
Guo W, Chen S, Hussain N, Cong Y, Liang Z, Chen K (2015a) Magnesium stress signaling in plant:
just a beginning. Plant Signal Behav 10(3):e992287
Guo Y, Zhu C, Gan L, Ng D, Xia K (2015b) Effects of exogenous gibberellic acid3 on iron and
manganese plaque amounts and iron and manganese uptake in rice. PLoS One 10(2):e0118177
Guo W, Nazim H, Liang Z, Yang D (2016) Magnesium deficiency in plants: an urgent problem.
Crop J 4:83–91
Gupta N, Ram H, Kumar B (2016) Mechanism of zinc absorption in plants: uptake, transport,
translocation and accumulation. Rev Environ Sci Bio/Technol 15:89–109
Haas FH, Heeg C, Queiroz R, Bauer A, Wirtz M, Hell R (2008) Mitochondrial serine
acetyltransferase functions as a pacemaker of cysteine synthesis in plant cells. Plant Physiol
148:1055–1067
Hamat HB, Kleinhofs A, Warner RL (1989) Nitrate reductase induction and molecular characterization in rice (Oryza sativa L). Mol Gen Genet 218:93–98
Hamburger D, Rezzonico E, Petétot JMC, Somerville C, Poirier Y (2002) Identification and
characterization of the Arabidopsis PHO1 gene involved in phosphate loading to the xylem.
Plant Cell 14:889–902
172
E. Bhardwaj et al.
