Chen ZH, Nimmo GA, Jenkins GI, Nimmo HG (2007) BHLH32 modulates several biochemical
and morphological processes that respond to Pi starvation in Arabidopsis. Biochem J 405:191–
198
Chen YF, Wang Y, Wu WH (2008a) Membrane transporters for nitrogen, phosphate and potassium
uptake in plants. J Integr Plant Biol 50:835–848
Chen ZH, Jenkins GI, Nimmo HG (2008b) Identification of an F-box protein that negatively
regulates Pi starvation responses. Plant Cell Physiol 49:1902–1906
Chen XB, Yao Q, Gao X, Jiang C, Harberd NP, Fu X (2016) Shoot-to-root mobile transcription
factor HY5 coordinates plant carbon and nitrogen acquisition. Curr Biol 26:640–646
Chen H, Yang Q, Chen K, Zhao S, Zhang C, Pan R, Chu W (2019) Integrated microRNA and
transcriptome profiling reveals a miRNA-mediated regulatory network of embryo abortion
under calcium deficiency in peanut (Arachis hypogaea L). BMC Genomics 20:1–17
Cheng CL, Acedo GN, Dewdney J, Goodman HM, Conkling MA (1991) Differential expression of
the two Arabidopsis nitrate reductase genes. Plant Physiol 96:275–279
Chiou TJ, Lin SI (2011) Signaling network in sensing phosphate availability in plants. Annu Rev
Plant Biol 62:185–206
Claus J, Bohmann A, Chavarría-Krauser A (2013) Zinc uptake and radial transport in roots of
Arabidopsis thaliana: a modelling approach to understand accumulation. Ann Bot 112:369–380
Costa C, Dwyer LM, Zhou X, Dutilleul P, Hamel C, Reid LM, Smith DL (2002) Root morphology
of contrasting maize genotypes. Agron J 94:96–101
Couturier J, Montanini B, Martin F, Brun A, Blaudez D, Chalot M (2007) The expanded family of
ammonium transporters in the perennial poplar plant. New Phytol 174:137–150
Cubero B, Nakagawa Y, Jiang XY, Miura KJ, Li F, Raghothama KG, Pardo JM (2009) The
phosphate transporter PHT4; 6 is a determinant of salt tolerance that is localized to the Golgi
apparatus of Arabidopsis. Mol Plant 2:535–552
Czempinski K, Frachisse JM, Maurel C, Barbier-Brygoo H, Mueller-Roeber B (2002) Vacuolar
membrane localization of the Arabidopsis ‘two-pore’ K+channel KCO1. Plant J 29:809–820
D’Apuzzo E, Rogato A, Simon-Rosin U, El Alaoui H, Barbulova A, Betti UMK (2004) Characterization of three functional high-affinity ammonium transporters in Lotus japonicus with differential transcriptional regulation and spatial expression. Plant Physiol 134:1763–1774
Daram P, Brunner S, Rausch C, Steiner C, Amrhein N, Bucher M (1999) Pht2; 1 encodes a
low-affinity phosphate transporter from Arabidopsis. Plant Cell 11:2153–2166
Davies TGE, Ying J, Xu Q, Li ZS, Li J, Gordon-Weeks R (2002) Expression analysis of putative
high-affinity phosphate transporters in Chinese winter wheat. Plant Cell Environ 25:1325–1339
Dean G, Casson S, Lindsey K (2004) KNAT6 gene of Arabidopsis is expressed in roots and is
required for correct lateral root formation. Plant Mol Biol 54:71–84
Deeken R, Geiger D, Fromm J, Koroleva O, Ache P, Langenfeld-Heyser R, Sauer N, May ST,
Hedrich R (2002) Loss of the AKT2/3 potassium channel affects sugar loading into the phloem
of Arabidopsis. Planta 216:334–344
Demidchik V, Shabala S, Isayenkov S, Cuin TA, Pottosin I (2018) Calcium transport across plant
membranes: mechanisms and functions. New Phytol 220:49–69
Devaiah BN, Nagarajan VK, Raghothama KG (2007) Phosphate homeostasis and root development
in Arabidopsis are synchronized by the zinc finger transcription factor ZAT6. Plant Physiol 145
(1):147–159
Ding Y, Zhou X, Zuo L, Wang H, Yu D (2016) Identification and functional characterization of the
sulfate transporter gene GmSULTR1; 2b in soybean. BMC Genomics 17:373
Du Q, Wang K, Xu C, Zou C, Xie C, Xu Y, Li WX (2016) Strand-specific RNA-Seq transcriptome
analysis of genotypes with and without low-phosphorus tolerance provides novel insights into
phosphorus-use efficiency in maize. BMC Plant Biol 16:1–12
Dürr J, Bücking H, Mult S, Wildhagen H, Palme K, Rennenberg H, Dittengou F, Herschbach C
(2010) Seasonal and cell type specific expression of sulfate transporters in the phloem of
Populus reveals tree specific characteristics for SO42 storage and mobilization. Plant Mol
Biol 72:499–517
170
E. Bhardwaj et al.
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