Agriculture Reference
In-Depth Information
Mitsukawa N, Okumura S, Shirano Y, Sato S, Kato T, Harashima S, Shibata D (1997)
Overexpression of an Arabidopsis thaliana high-affinity phosphate transporter gene in tobacco
cultured cells enhances cell growth under phosphate-limited conditions. Proc Natl Acad Sci U
S A 94:7098-7102
Miura K, Rus A, Sharkhuu A, Yokoi S, Karthikeyan AS, Raghothama KG, Baek D, Koo YD, Jin
JB, Bressan RA, Yun DJ, Hasegawa PM (2005) The Arabidopsis SUMO E3 ligase SIZ1
controls phosphate deficiency responses. Proc Natl Acad Sci U S A 102:7760-7765
Miura M, Lee J, Gong Q, Ma S, Jin JB, Yoo CY, Miura T, Sato A, Bohnert HJ, Hasegawa PM
(2011) SIZ1 regulation of phosphate starvation-induced root architecture remodeling involves
the control of auxin accumulation. Plant Physiol 155:1000-1012
Mollier A, Pellerin S (1999) Maize root system growth and development as influenced by
phosphorus deficiency. J Exp Bot 50:487-497
Morcuende R, Bari R, Gibon Y, Zhen W, Pant BD, Bl¨sing O, Usadel B, Czechowski T, Udvardi
MK, Stitt M, Scheible W-R (2007) Genome-wide reprogramming of metabolism and regula-
tory networks of Arabidopsis in response to phosphorus. Plant Cell Environ 30:85-112
Muchhal US, Pardo JM, Raghothama KG (1996) Phosphate transporters from the higher plant
Arabidopsis thaliana . Proc Natl Acad Sci U S A 93:10519-10523
Muchhal US, Raghothama KG (1999) Transcriptional regulation of plant phosphate transporters.
Proc Natl Acad Sci U S A 96:5868-5872
Mudge SR, Rae AL, Diatloff E, Smith FW (2002) Expression analysis suggests novel roles for
members of the Pht1 family of phosphate transporters in Arabidopsis . Plant J 31:341-353
M¨ ller R, Nilsson L, Krintel C, Nielsen TH (2004) Gene expression during recovery from
phosphate starvation in roots and shoots of Arabidopsis thaliana . Physiol Plant 122:233-243
M¨ ller R, Nilsson L, Nielsen LK, Nielsen TH (2005) Interaction between phosphate starvation
signalling and hexokinase-independent sugar sensing in Arabidopsis leaves. Physiol Plant
124:81-90
Nagy R, Vasconcelos MJV, Zhao S, McElver J, Bruce W, Amrhein N, Raghothama KG, Bucher M
(2006) Differential regulation of five Pht1 phosphate transporters from maize ( Zea mays L.).
Plant Biol 8:186-197
Neumann G, Martinoia E (2002) Cluster roots - an underground adaptation for survival in extreme
environments. TRENDS Plant Sci 7:162-167
Neumann G, R¨mheld V (1999) Root excretion of carboxylic acids and protons in phosphorus-
deficient plants. Plant Soil 211:121-130
Nielsen TH, Krapp A, R¨per-Schwarz U, Stitt M (1998) The sugar-mediated regulation of genes
encoding the small subunit of Rubisco and the regulatory subunit of ADP glucose
pyrophosphorylase is modified by phosphate and nitrogen. Plant Cell Environ 12:443-454
Nilsson L, M¨ ller R, Nielsen TH (2007) Increased expression of the MYB-related transcription
factor, PHR1, leads to enhanced phosphate uptake in Arabidopsis thaliana. Plant Cell Environ
30:1499-1512
Nilsson L, M¨ ller R, Nielsen TH (2010) Dissecting the plant trascriptome and the regulatory
response to tomato deprivation. Physiol Plant 139:129-143
Nilsson L, Lundmark M, Jensen PE, Nielsen TH (2012) The Arabidopsis transcription factor
PHR1 is essential for adaptation to high light and retaining functional photosynthesis during
phosphate starvation. Physiol Plant 144:35-47
Niu YF, Chai RS, Jin GL, Wang H, Tang CX, Zhang YS (2012) Responses of root architecture
development to low phosphorus availability: a review. Ann Bot 112:391-408
Oono Y, Kawahara Y, Kanamori H, Mizuno H, Yamagata H, Yamamoto M, Hosokawa S,
Ikawa H, Akahane I, Zhu Z, Wu J, Itoh T, Matsumoto T (2011) mRNA-seq reveals a
comprehensive transcriptome profile of rice under phosphate stress. Rice 4:50-65
Oono Y, Kobayashi F, Kawahara Y, Yazawa T, Handa H, Itoh T, Matsumoto T (2013) Charac-
terisation of the wheat ( Triticum aestivum L.) transcriptome by de novo assembly for the
discovery of phosphate starvation-responsive genes: gene expression in Pi-stressed wheat.
BMC Genomics 14:77
Osborne LD, Rengel Z (2002) Screening cereals for genotypic variation in efficiency of phospho-
rus uptake and utilisation. Aust J Agric Res 53:295-303
Search WWH ::




Custom Search