Transgenic Rice Overexperessing a Tomato Mitochondrial Phosphate Transporter, SlMPT3;1, Promotes Phosphate Uptake and Increases Grain Yield

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' Transgenic Rice Overexperessing a Tomato Mitochondrial Phosphate Transporter, SlMPT3;1, Promotes Phosphate Uptake and Increases Grain Yield' 의 주제별 논문영향력
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' Transgenic Rice Overexperessing a Tomato Mitochondrial Phosphate Transporter, SlMPT3;1, Promotes Phosphate Uptake and Increases Grain Yield' 의 참고문헌

  • Water stress induced changes in concentrations of proline and total soluble sugars in nodulated alfalfa (Medicago sativa) plants
    Irigoyen [1992]
  • Vacuolar SPX-MFS transporters are essential for phosphate adaptation in plants
    Liu J [2016]
  • Two rice phosphate transporters, OsPht1;2 and OsPht1;6, have different functions and kinetic properties in uptake and translocation
    Ai P [2009]
  • Turfgrass molecular genetic improvement for abiotic/edaphic stress resistance
    Duncan R [1999]
  • Transcriptional regulation of plant phosphate transporters
    Muchhal US [1999]
  • The plastidic pentose phosphate translocator represents a link between the cytosolic and the plastidic pentose phosphate pathways in plants
    Eicks M [2002]
  • The mitochondrial phosphate transporters modulate plant responses to salt stress via affecting ATP and gibberellin metabolism in Arabidopsis thaliana
    Zhu W [2012]
  • The mitochondrial carrier family of transport proteins: structural, functional, and evolutionary relationships
    Kuan J [1993]
  • The high-affinity phosphate transporter GmPT5 regulates phosphate transport to nodules and nodulation in soybean
    Qin L [2012]
  • The cis-acting CTTC-P1BS module is indicative for gene function of LjVTI12, a Qb-SNARE protein gene that is required for arbuscule formation in Lotus japonicus
    Lota F [2013]
  • The Sink-Specific Plastidic Phosphate Transporter PHT4;2 Influences Starch Accumulation and Leaf Size in Arabidopsis
    Irigoyen S [2011]
  • The Phosphate Transporter PHT4;6 is a Determinant of Salt Tolerance that Is Localized to the Golgi Apparatus of Arabidopsis
    Cubero B [2009]
  • The Phosphate Transporter Gene OsPht1;8 Is Involved in Phosphate Homeostasis in Rice
    Jia H [2011]
  • TaZAT8, a C2H2-ZFP type transcription factor gene in wheat, plays critical roles in mediating tolerance to Pi deprivation through regulating P acquisition, ROS homeostasis and root system establishment
    Ding W [2016]
  • Spectrophotometric characteristics of chlorophylls a and b and their pheophytins in ethanol
  • Signaling network in sensing phosphate availability in plants
    Chiou T [2011]
  • SPX4 Negatively Regulates Phosphate Signaling and Homeostasis through Its Interaction with PHR2 in Rice
    Lv Q [2014]
  • Root traits as tools for creating phosphorus effi cient crop varieties
  • Root exudates as mediators of mineral acquisition in low-nutrient environments
    Dakora F [2002]
  • Rice SPX-Major Facility Superfamily3, a Vacuolar Phosphate Efflux Transporter, Is Involved in Maintaining Phosphate Homeostasis in Rice
    Wang C [2015]
  • Regulation of phosphate transport and homeostasis in plant cells
    Mimura T [1999]
  • Redundancy in the function of mitochondrial phosphate transport in Saccharomyces cerevisiae and Arabidopsis thaliana
    Hamel P [2004]
  • Reducing the reliance on nitrogen fertilizer for wheat production
  • Proline Metabolism and Its Implications for Plant-Environment Interaction
    Paul EV [2010]
  • Plant responses to environmental stresses: from phytohormones to genome reorganization
    Plaxton WC [1999]
  • Phosphorus deficiency in Lupinus albus (altered lateral root development and enhanced expression of phosphoenolpyruvate carboxylase)
    Johnson JF [1996]
  • Phosphate transporters from the higher plant Arabidopsis thaliana
    Muchhal US [1996]
  • Phosphate transport and homeostasis in Arabidopsis
    Poirier Y [2002]
  • Phosphate starvation of maize inhibits lateral root formation and alters gene expression in the lateral root primordium zone
    Li Z [2012]
  • Phosphate homeostasis and root development in Arabidopsis are synchronized by the zinc finger transcription factor ZAT6
    Devaiah BN [2007]
  • Phosphate Transporter Gene Family of Arabidopsis thaliana
    Okumura S [1998]
  • Peach leaf curl disease shifts sugar metabolism in severely infected leaves from source to sink
  • Overexpression of the nitrate transporter, OsNRT2.3b, improves rice phosphorus uptake and translocation
    Feng H [2017]
  • Overexpression of mitochondrial phosphate transporter 3 severely hampers plant development through regulating mitochondrial function in Arabidopsis
    Jia F [2015]
  • Overexpression of GbWRKY1 positively regulates the Pi starvation response by alteration of auxin sensitivity in Arabidopsis
    Xu L [2012]
  • OsWRKY74, a WRKY transcription factor, modulates tolerance to phosphate starvation in rice
    Dai X [2016]
  • OsMYB2P-1, an R2R3 MYB Transcription Factor, Is Involved in the Regulation of Phosphate-Starvation Responses and Root Architecture in Rice
    Dai X [2012]
  • OsHAD1, a Haloacid Dehalogenase-Like APase, Enhances Phosphate Accumulation
    Pandey BK [2017]
  • Organic acids in the rhizosphere of Banksia integrifolia Lf
    Grierson P [1992]
  • Opportunities to improve phosphorus efficiency and soil fertility in rainfed lowland and upland rice ecosystems
    Kirk GJD [1998]
  • Members of the PHO1 gene family show limited functional redundancy in phosphate transfer to the shoot, and are regulated by phosphate deficiency via distinct pathways
  • Mapping of QTLs for phosphorusdeficiency tolerance in rice (Oryza sativa L.)
    Wissuwa M [1998]
  • Kinetic characterization of two phosphate uptake systems with different affinities in suspension-cultured Catharanthus roseus protoplasts
    Furihata T [1992]
  • Involvement of OsSPX1 in phosphate homeostasis in rice
    Wang C [2009]
  • Involvement of OsPht1;4 in phosphate acquisition and mobilization facilitates embryo development in rice
    Zhang F [2015]
  • Interaction of proline, sugars, and anthocyanins during photosynthetic acclimation of Arabidopsis thaliana to drought stress
    Sperdouli I [2012]
  • In vitro analyses of mitochondrial ATP/phosphate carriers from Arabidopsis thaliana revealed unexpected Ca2+-effects
    Lorenz A [2015]
  • Improvement of phosphorus efficiency in rice on the basis of understanding phosphate signaling and homeostasis
    Wu P [2013]
  • Improvement in phosphate acquisition and utilization by a secretory purple acid phosphatase (OsPAP21b) in rice
    Mehra P [2017]
  • Identification and characterization of the Arabidopsis PHO1 gene involved in phosphate loading to the xylem
    Hamburger D [2012]
  • Genome-wide analysis and expression profiling of zinc finger homeodomain (ZHD) family genes reveal likely roles in organ development and stress responses in tomato
    Khatun K [2017]
  • Genome-wide DNA polymorphisms in low phosphate tolerant and sensitive rice genotypes
    Mehra P [2015]
  • Genetic engineering of improved nitrogen use efficiency in rice by the tissue-specific expression of alanine aminotransferase
    Shrawat AK [2008]
  • Gene ontology analysis for RNA-seq: accounting for selection bias
    Young MD [2010]
  • Functional characterization of the rice SPX-MFS family reveals a key role of OsSPX-MFS1 in controlling phosphate homeostasis in leaves
    Wang C [2012]
  • Functional analysis of the Arabidopsis PLDZ2 promoter reveals an evolutionarily conserved low-Pi-responsive transcriptional enhancer element
  • Function of wheat phosphate transporter gene TaPHT2;1 in Pi translocation and plant growth regulation under replete and limited Pi supply conditions
    Guo C [2013]
  • Enhancing plant phosphorus use efficiency for sustainable cropping
    Shenoy V [2005]
  • Enhanced phosphorus nutrition in monocots and dicots over-expressing a phosphorus-responsive type I H+-pyrophosphatase
    Yang H [2007]
  • Dissection of local and systemic transcriptional responses to phosphate starvation in Arabidopsis
    Thibaud MC [2010]
  • Differential expression analysis for sequence count data
    Anders S [2010]
  • Comprehensive sequence and whole-life-cycle expression profile analysis of the phosphate transporter gene family in rice
    Liu F [2011]
  • Cloning, functional expression, and mutational analysis of a cDNA for Lotus japonicus mitochondrial phosphate transporter
    Nakamori K [2002]
  • Circadian clock-regulated phosphate transporter PHT4;1 plays an important role in Arabidopsis defense
    Wang GY [2011]
  • Characterization of a protein of the plastid inner envelope having homology to animal inorganic phosphate, chloride and organicanion transporters
    Roth C [2004]
  • AtPHT4;4 is a chloroplast-localized ascorbate transporter in Arabidopsis
    Miyaji T [2015]
  • Arabidopsis mesophyll protoplasts: A versatile cell system for transient gene expression analysis
    Yoo SD [2007]
  • Arabidopsis Pht1;5 Mobilizes Phosphate between Source and Sink Organs and Influences the Interaction between Phosphate Homeostasis and Ethylene Signaling
  • Arabidopsis ANTR1 is a thylakoid Na+-dependent phosphate transporter: functional characterization in Escherichia coli
    Pavon LR [2008]
  • A constitutive expressed phosphate transporter, OsPht1;1, modulates phosphate uptake and translocation in phosphatereplete Rice
    Sun S [2012]
  • A Chloroplast phosphate transporter, PHT2;1, influences allocation of phosphate within the plant and phosphatestarvation responses
    Versaw WK [2002]