Hasan MM, Hasan MM, da Silva JA, Li X (2016) Regulation of phosphorus uptake and utilization:
transitioning from current knowledge to practical strategies. Cell Mol Biol Lett 21:7
He S, He Z, Yang X, Baligar VC (2012) Mechanisms of nickel uptake and hyperaccumulation by
plants and implications for soil remediation. Adv Agron 117:117–189
He X, Qu B, Li W, Zhao X, Teng W, Ma W, Tong Y (2015) The nitrate-inducible NAC
transcription factor TaNAC2-5A controls nitrate response and increases wheat yield. Plant
Physiol 169:1991–2005
Hechenberger M, Schwappach B, Fischer WN, Frommer WB, Jentsch TJ, Steinmeyer K (1996) A
family of putative chloride channels from Arabidopsis and functional complementation of a
yeast strain with a CLC gene disruption. J Biol Chem 271:33632–33638
Herdean A, Teardo E, Nilsson AK, Pfeil BE, Johansson ON, Ünnep R, Garab G (2016) A voltagedependent chloride channel fine-tunes photosynthesis in plants. Nat Commun 7:1–11
Hochmuth GJ, Gabelman WH, Gerloff GC (1985) A gene affecting tomato root morphology.
Hortscience 20(6):1099–1101
Høgh-Jensen H, Pedersen MB (2003) Morphological plasticity by crop plants and their potassium
use efficiency. J Plant Nutr 26:969–984
Hong JP, Takeshi Y, Kondou Y, Schachtman DP, Matsui M, Shin R (2013) Identification and
characterization of transcription factors regulating Arabidopsis HAK5. Plant Cell Physiol
54:1478–1490
Horie T, Yoshida K, Nakayama H, Yamada K, Oiki S, Shinmyo A (2001) Two types of HKT
transporters with different properties of NaC and KC transport in Oryza sativa. Plant J
27:129–138
Howarth JR, Fourcroy P, Davidian JC, Smith FW, Hawkesford MJ (2003) Cloning of two
contrasting high-affinity sulfate transporters from tomato induced by low sulfate and infection
by the vascular pathogen Verticillium dahlia. Planta 218:58–64
Hu B, Wang W, Ou S, Tang J, Li H, Che R, Liang C (2015) Variation in NRT1 1B contributes to
nitrate-use divergence between rice subspecies. Nat Genet 47:834
Huang NC, Chiang CS, Crawford NM, Tsay YF (1996) CHL1 encodes a component of the
low-affinity nitrate uptake system in Arabidopsis and shows cell type-specific expression in
roots. Plant Cell 8:2183–2191
Huang Q, Wang M, Xia Z (2018) The SULTR gene family in maize (Zea mays L): gene cloning and
expression analyses under sulfate starvation and abiotic stress. J Plant Physiol 220:24–33
Huang S, Sasaki A, Yamaji N, Okada H, Mitani-Ueno N, Ma JF (2020) The ZIP transporter family
member OsZIP9 contributes to root zinc uptake in rice under zinc-limited conditions. Plant
Physiol 183(3):1224–1234
Huen A, Bally J, Smith P (2018) Identification and characterisation of microRNAs and their target
genes in phosphate-starved Nicotiana benthamiana by small RNA deep sequencing and
5’RACE analysis. BMC Genomics 19:940
Iqbal A, Dong Q, Wang X, Gui H, Zhang H, Zhang X, Song M (2020) Transcriptome analysis
reveals differences in key genes and pathways regulating carbon and nitrogen metabolism in
cotton genotypes under N starvation and resupply. Int J Mol Sci 21:1500
Ivashikina N, Becker D, Ache P, Meyerhoff O, Felle HH, Hedrich R (2001) K+ channel profile and
electrical properties of Arabidopsis root hairs. FEBS Lett 508:463–469
Iwamoto M, Tagiri A (2016) MicroRNA-targeted transcription factor gene RDD1 promotes
nutrient ion uptake and accumulation in rice. Plant J 85:466–477
Jones-Rhoades MW, Bartel DP (2004) Computational identification of plant microRNAs and their
targets, including a stress-induced miRNA. Mol Cell 14:787–799
Jung JY, Shin R, Schachtman DP (2009) Ethylene mediates response and tolerance to potassium
deprivation in Arabidopsis. Plant Cell 21:607–621
Jungk A (2001) Root hairs and the acquisition of plant nutrients from soil. J Plant Nutr Soil Sci
164:121–129
5 Plant Roots and Mineral Nutrition: An Overview of Molecular Basis of Uptake and. . . 173
transitioning from current knowledge to practical strategies. Cell Mol Biol Lett 21:7
He S, He Z, Yang X, Baligar VC (2012) Mechanisms of nickel uptake and hyperaccumulation by
plants and implications for soil remediation. Adv Agron 117:117–189
He X, Qu B, Li W, Zhao X, Teng W, Ma W, Tong Y (2015) The nitrate-inducible NAC
transcription factor TaNAC2-5A controls nitrate response and increases wheat yield. Plant
Physiol 169:1991–2005
Hechenberger M, Schwappach B, Fischer WN, Frommer WB, Jentsch TJ, Steinmeyer K (1996) A
family of putative chloride channels from Arabidopsis and functional complementation of a
yeast strain with a CLC gene disruption. J Biol Chem 271:33632–33638
Herdean A, Teardo E, Nilsson AK, Pfeil BE, Johansson ON, Ünnep R, Garab G (2016) A voltagedependent chloride channel fine-tunes photosynthesis in plants. Nat Commun 7:1–11
Hochmuth GJ, Gabelman WH, Gerloff GC (1985) A gene affecting tomato root morphology.
Hortscience 20(6):1099–1101
Høgh-Jensen H, Pedersen MB (2003) Morphological plasticity by crop plants and their potassium
use efficiency. J Plant Nutr 26:969–984
Hong JP, Takeshi Y, Kondou Y, Schachtman DP, Matsui M, Shin R (2013) Identification and
characterization of transcription factors regulating Arabidopsis HAK5. Plant Cell Physiol
54:1478–1490
Horie T, Yoshida K, Nakayama H, Yamada K, Oiki S, Shinmyo A (2001) Two types of HKT
transporters with different properties of NaC and KC transport in Oryza sativa. Plant J
27:129–138
Howarth JR, Fourcroy P, Davidian JC, Smith FW, Hawkesford MJ (2003) Cloning of two
contrasting high-affinity sulfate transporters from tomato induced by low sulfate and infection
by the vascular pathogen Verticillium dahlia. Planta 218:58–64
Hu B, Wang W, Ou S, Tang J, Li H, Che R, Liang C (2015) Variation in NRT1 1B contributes to
nitrate-use divergence between rice subspecies. Nat Genet 47:834
Huang NC, Chiang CS, Crawford NM, Tsay YF (1996) CHL1 encodes a component of the
low-affinity nitrate uptake system in Arabidopsis and shows cell type-specific expression in
roots. Plant Cell 8:2183–2191
Huang Q, Wang M, Xia Z (2018) The SULTR gene family in maize (Zea mays L): gene cloning and
expression analyses under sulfate starvation and abiotic stress. J Plant Physiol 220:24–33
Huang S, Sasaki A, Yamaji N, Okada H, Mitani-Ueno N, Ma JF (2020) The ZIP transporter family
member OsZIP9 contributes to root zinc uptake in rice under zinc-limited conditions. Plant
Physiol 183(3):1224–1234
Huen A, Bally J, Smith P (2018) Identification and characterisation of microRNAs and their target
genes in phosphate-starved Nicotiana benthamiana by small RNA deep sequencing and
5’RACE analysis. BMC Genomics 19:940
Iqbal A, Dong Q, Wang X, Gui H, Zhang H, Zhang X, Song M (2020) Transcriptome analysis
reveals differences in key genes and pathways regulating carbon and nitrogen metabolism in
cotton genotypes under N starvation and resupply. Int J Mol Sci 21:1500
Ivashikina N, Becker D, Ache P, Meyerhoff O, Felle HH, Hedrich R (2001) K+ channel profile and
electrical properties of Arabidopsis root hairs. FEBS Lett 508:463–469
Iwamoto M, Tagiri A (2016) MicroRNA-targeted transcription factor gene RDD1 promotes
nutrient ion uptake and accumulation in rice. Plant J 85:466–477
Jones-Rhoades MW, Bartel DP (2004) Computational identification of plant microRNAs and their
targets, including a stress-induced miRNA. Mol Cell 14:787–799
Jung JY, Shin R, Schachtman DP (2009) Ethylene mediates response and tolerance to potassium
deprivation in Arabidopsis. Plant Cell 21:607–621
Jungk A (2001) Root hairs and the acquisition of plant nutrients from soil. J Plant Nutr Soil Sci
164:121–129
5 Plant Roots and Mineral Nutrition: An Overview of Molecular Basis of Uptake and. . . 173
