Lu Y, Luo F, Yang M, Li X, Lian X (2011) Suppression of glutamate synthase genes significantly
affects carbon and nitrogen metabolism in rice (Oryza sativa L.). Sci China Life Sci 54:651–663
Lu YB, Qi YP, Yang LT, Guo P, Li Y, Chen LS (2015) Boron-deficiency-responsive microRNAs
and their targets in Citrus sinensis. leaves. BMC Plant Biol 15:271
Lucena C, Waters BM, Romera FJ, García MJ, Morales M, Alcántara E, Pérez-Vicente R (2006)
Ethylene could influence ferric reductase, iron transporter, and H+-ATPase gene expression by
affecting FER (or FER-like) gene activity. J Exp Bot 57(15):4145–4154
Ludewig U, von Wirén N, Frommer WB (2002) Uniport of NH by the root hair plasma membrane
ammonium transporter LeAMT1;. 1. J Biol Chem 277:13548–13555
Lundmark M, Kørner CJ, Nielsen TH (2010) Global analysis of microRNA in Arabidopsis in
response to phosphate starvation as studied by locked nucleic acid-based microarrays. Physiol
Plant 140:57–68
Lurin C, Geelen D, Barbier-Brygoo H, Guern J, Maurel C (1996) Cloning and functional expression
of a plant voltage-dependent chloride channel. Plant Cell 8:701–711
Lynch J (1995) Root architecture and plant productivity. Plant Physiol 109:7
Ma JF, Yamaji N (2015) A cooperative system of silicon transport in plants. Trends Plant Sci
20:435–442
Ma JF, Tamai K, Yamaji N, Mitani N, Konishi S, Katsuhara M, Yano M (2006) A silicon
transporter in rice. Nature 440:688–691
Ma CL, Qi YP, Liang WW, Yang LT, Lu YB, Guo P, Chen LS (2016) MicroRNA regulatory
mechanisms on Citrus sinensis leaves to magnesium-deficiency. Front Plant Sci 7:201
Malamy JE (2005) Intrinsic and environmental response pathways that regulate root system
architecture. Plant Cell Environ 28:67–77
Man H, Pollmann S, Weiler EW, Kirby EG (2011) Increased glutamine in leaves of poplar
transgenic with pine GS1a caused greater anthranilate synthetase α-subunit (ASA1) transcript
and protein abundances: an auxin-related mechanism for enhanced growth in GS transgenics? J
Exp Bot 62:4423–4431
Maniou F, Chorianopoulou SN, Bouranis DL (2014) New insights into trophic aerenchyma
formation strategy in maize (Zea mays L) organs during sulfate deprivation. Front Plant Sci
5:581
Marchive C, Yehudai-Resheff S, Germain A, Fei Z, Jiang X, Judkins J, Stern DB (2009) Abnormal
physiological and molecular mutant phenotypes link chloroplast polynucleotide phosphorylase
to the phosphorus deprivation response in Arabidopsis. Plant Physiol 151:905–924
Marchive C, Roudier F, Castaings L, Bréhaut V, Blondet E, Colot V, Krapp A (2013) Nuclear
retention of the transcription factor NLP7 orchestrates the early response to nitrate in plants. Nat
Commun 4:1–9
Maruyama-Nakashita A, Nakamura Y, Tohge T, Saito K, Takahashi H (2006) Arabidopsis SLIM1
is a central transcriptional regulator of plant sulfur response and metabolism. Plant Cell
18:3235–3251
Mäser P, Gierth M, Schroeder JI (2002a) Molecular mechanisms of potassium and sodium uptake in
plants. In: Progress in plant nutrition: plenary lectures of the XIV international plant nutrition
colloquium. Springer, Cham, pp 43–54
Mäser P, Hosoo Y, Goshima S, Horie T, Eckelman B, Yamada K, Schroeder JI (2002b) Glycine
residues in potassium channel-like selectivity filters determine potassium selectivity in fourloop-per-subunit HKT transporters from plants. Proc Natl Acad Sci 99:6428–6433
Massoud MB, Sakouhi K, Zhu E, Ferjani E, Sheehan D, Chaoui A (2018) Protective role of
exogenous phytohormones on redox status in pea seedlings under copper stress. J Plant Physiol
221:51–61
Matthewman CA, Kawashima CG, Húska D, Csorba T, Dalmay T, Kopriva S (2012) miR395 is a
general component of the sulfate assimilation regulatory network in Arabidopsis. FEBS Lett
586:3242–3248
Mayzlish-Gati E, De-Cuyper C, Goormachtig S et al (2012) Strigolactones are involved in root
response to low phosphate conditions in Arabidopsis. Plant Physiol 160(3):1329–1341
176
E. Bhardwaj et al.
affects carbon and nitrogen metabolism in rice (Oryza sativa L.). Sci China Life Sci 54:651–663
Lu YB, Qi YP, Yang LT, Guo P, Li Y, Chen LS (2015) Boron-deficiency-responsive microRNAs
and their targets in Citrus sinensis. leaves. BMC Plant Biol 15:271
Lucena C, Waters BM, Romera FJ, García MJ, Morales M, Alcántara E, Pérez-Vicente R (2006)
Ethylene could influence ferric reductase, iron transporter, and H+-ATPase gene expression by
affecting FER (or FER-like) gene activity. J Exp Bot 57(15):4145–4154
Ludewig U, von Wirén N, Frommer WB (2002) Uniport of NH by the root hair plasma membrane
ammonium transporter LeAMT1;. 1. J Biol Chem 277:13548–13555
Lundmark M, Kørner CJ, Nielsen TH (2010) Global analysis of microRNA in Arabidopsis in
response to phosphate starvation as studied by locked nucleic acid-based microarrays. Physiol
Plant 140:57–68
Lurin C, Geelen D, Barbier-Brygoo H, Guern J, Maurel C (1996) Cloning and functional expression
of a plant voltage-dependent chloride channel. Plant Cell 8:701–711
Lynch J (1995) Root architecture and plant productivity. Plant Physiol 109:7
Ma JF, Yamaji N (2015) A cooperative system of silicon transport in plants. Trends Plant Sci
20:435–442
Ma JF, Tamai K, Yamaji N, Mitani N, Konishi S, Katsuhara M, Yano M (2006) A silicon
transporter in rice. Nature 440:688–691
Ma CL, Qi YP, Liang WW, Yang LT, Lu YB, Guo P, Chen LS (2016) MicroRNA regulatory
mechanisms on Citrus sinensis leaves to magnesium-deficiency. Front Plant Sci 7:201
Malamy JE (2005) Intrinsic and environmental response pathways that regulate root system
architecture. Plant Cell Environ 28:67–77
Man H, Pollmann S, Weiler EW, Kirby EG (2011) Increased glutamine in leaves of poplar
transgenic with pine GS1a caused greater anthranilate synthetase α-subunit (ASA1) transcript
and protein abundances: an auxin-related mechanism for enhanced growth in GS transgenics? J
Exp Bot 62:4423–4431
Maniou F, Chorianopoulou SN, Bouranis DL (2014) New insights into trophic aerenchyma
formation strategy in maize (Zea mays L) organs during sulfate deprivation. Front Plant Sci
5:581
Marchive C, Yehudai-Resheff S, Germain A, Fei Z, Jiang X, Judkins J, Stern DB (2009) Abnormal
physiological and molecular mutant phenotypes link chloroplast polynucleotide phosphorylase
to the phosphorus deprivation response in Arabidopsis. Plant Physiol 151:905–924
Marchive C, Roudier F, Castaings L, Bréhaut V, Blondet E, Colot V, Krapp A (2013) Nuclear
retention of the transcription factor NLP7 orchestrates the early response to nitrate in plants. Nat
Commun 4:1–9
Maruyama-Nakashita A, Nakamura Y, Tohge T, Saito K, Takahashi H (2006) Arabidopsis SLIM1
is a central transcriptional regulator of plant sulfur response and metabolism. Plant Cell
18:3235–3251
Mäser P, Gierth M, Schroeder JI (2002a) Molecular mechanisms of potassium and sodium uptake in
plants. In: Progress in plant nutrition: plenary lectures of the XIV international plant nutrition
colloquium. Springer, Cham, pp 43–54
Mäser P, Hosoo Y, Goshima S, Horie T, Eckelman B, Yamada K, Schroeder JI (2002b) Glycine
residues in potassium channel-like selectivity filters determine potassium selectivity in fourloop-per-subunit HKT transporters from plants. Proc Natl Acad Sci 99:6428–6433
Massoud MB, Sakouhi K, Zhu E, Ferjani E, Sheehan D, Chaoui A (2018) Protective role of
exogenous phytohormones on redox status in pea seedlings under copper stress. J Plant Physiol
221:51–61
Matthewman CA, Kawashima CG, Húska D, Csorba T, Dalmay T, Kopriva S (2012) miR395 is a
general component of the sulfate assimilation regulatory network in Arabidopsis. FEBS Lett
586:3242–3248
Mayzlish-Gati E, De-Cuyper C, Goormachtig S et al (2012) Strigolactones are involved in root
response to low phosphate conditions in Arabidopsis. Plant Physiol 160(3):1329–1341
176
E. Bhardwaj et al.
