Midrib Sucrose Accumulation and Sugar Transporter Gene Expression in YCS-Affected Sugarcane Leaves
暂无分享,去创建一个
[1] F. Gastal,et al. Short-term effects of defoliation intensity on sugar remobilization and N fluxes in ryegrass , 2018, Journal of experimental botany.
[2] W. Frommer,et al. Impaired phloem loading in zmsweet13a,b,c sucrose transporter triple knock-out mutants in Zea mays. , 2018, The New phytologist.
[3] R. Rodríguez‐Sotres,et al. Review: "Pyrophosphate and pyrophosphatases in plants, their involvement in stress responses and their possible relationship to secondary metabolism". , 2018, Plant science : an international journal of experimental plant biology.
[4] N. Murata,et al. ATP is a driving force in the repair of photosystem II during photoinhibition. , 2018, Plant, cell & environment.
[5] R. Lemoine,et al. Carbon source–sink relationship in Arabidopsis thaliana: the role of sucrose transporters , 2017, Planta.
[6] A. Bown,et al. 4-Aminobutyrate (GABA): a metabolite and signal with practical significance , 2017 .
[7] Annelie Marquardt,et al. Yellow Canopy Syndrome (YCS) in Sugarcane is Associated with Altered Carbon Partitioning in the Leaf , 2017, Sugar Tech.
[8] K. Hirschi,et al. Conjecture Regarding Posttranslational Modifications to the Arabidopsis Type I Proton-Pumping Pyrophosphatase (AVP1) , 2017, Front. Plant Sci..
[9] Benjamin T. Julius,et al. Sugar Transporters in Plants: New Insights and Discoveries , 2017, Plant & cell physiology.
[10] Xin-Guang Zhu,et al. Source–sink interaction: a century old concept under the light of modern molecular systems biology , 2017, Journal of experimental botany.
[11] D. Glassop,et al. An analysis of the role of the ShSUT1 sucrose transporter in sugarcane using RNAi suppression. , 2017, Functional plant biology : FPB.
[12] Nam V. Hoang,et al. A survey of the complex transcriptome from the highly polyploid sugarcane genome using full-length isoform sequencing and de novo assembly from short read sequencing , 2017, BMC Genomics.
[13] M. Tester,et al. AVP1: One Protein, Many Roles. , 2017, Trends in plant science.
[14] J. Ward,et al. Sucrose Transporter Localization and Function in Phloem Unloading in Developing Stems1[OPEN] , 2016, Plant Physiology.
[15] A. Faraz,et al. Role of sugars under abiotic stress. , 2016, Plant physiology and biochemistry : PPB.
[16] P. Qi,et al. Characterization and expression analyses of the H+-pyrophosphatase gene in rye , 2016, Journal of Genetics.
[17] Annelie Marquardt,et al. Changes in photosynthesis and carbohydrate metabolism in sugarcane during the development of Yellow Canopy Syndrome. , 2016, Functional plant biology : FPB.
[18] K. Hirschi,et al. Moving On Up: H(+)-PPase Mediated Crop Improvement. , 2016, Trends in biotechnology.
[19] Shin-Ichiro Inoue,et al. Photosynthesis Activates Plasma Membrane H+-ATPase via Sugar Accumulation1[OPEN] , 2016, Plant Physiology.
[20] M. Palmgren,et al. Plasma Membrane H(+)-ATPase Regulation in the Center of Plant Physiology. , 2016, Molecular plant.
[21] R. Ming,et al. Structure, phylogeny, allelic haplotypes and expression of sucrose transporter gene families in Saccharum , 2016, BMC Genomics.
[22] R. Gaxiola,et al. Apoplasmic loading in the rice phloem supported by the presence of sucrose synthase and plasma membrane-localized proton pyrophosphatase. , 2015, Annals of botany.
[23] V. Shulaev,et al. Constitutive and Companion Cell-Specific Overexpression of AVP1, Encoding a Proton-Pumping Pyrophosphatase, Enhances Biomass Accumulation, Phloem Loading, and Long-Distance Transport1[OPEN] , 2015, Plant Physiology.
[24] K. Koch,et al. Seed filling in domesticated maize and rice depends on SWEET-mediated hexose transport , 2015, Nature Genetics.
[25] Lily S. Cheung,et al. Structure of a eukaryotic SWEET transporter in a homotrimeric complex , 2015, Nature.
[26] A. ElSayed,et al. Biology and management of sugarcane yellow leaf virus: an historical overview , 2015, Archives of Virology.
[27] W. Frommer,et al. SWEETs, transporters for intracellular and intercellular sugar translocation. , 2015, Current opinion in plant biology.
[28] R. V. Ribeiro,et al. Exogenous sucrose supply changes sugar metabolism and reduces photosynthesis of sugarcane through the down-regulation of Rubisco abundance and activity. , 2015, Journal of plant physiology.
[29] Tara N. Furstenau,et al. Arabidopsis Type I Proton-Pumping Pyrophosphatase Expresses Strongly in Phloem, Where It Is Required for Pyrophosphate Metabolism and Photosynthate Partitioning1[OPEN] , 2015, Plant Physiology.
[30] A. Tauzin,et al. Sucrose and invertases, a part of the plant defense response to the biotic stresses , 2014, Front. Plant Sci..
[31] I. Morkunas,et al. The role of sugar signaling in plant defense responses against fungal pathogens , 2014, Acta Physiologiae Plantarum.
[32] Björn Usadel,et al. Trimmomatic: a flexible trimmer for Illumina sequence data , 2014, Bioinform..
[33] Uzma,et al. Genetic Improvement of Sugarcane for Drought and Salinity Stress Tolerance Using Arabidopsis Vacuolar Pyrophosphatase (AVP1) Gene , 2014, Molecular Biotechnology.
[34] G. Bonnett. Developmental Stages (Phenology) , 2013 .
[35] A. Rae,et al. Anatomy and Morphology , 2013 .
[36] Michael D. Cramer,et al. Source and Sink Physiology , 2013 .
[37] C. Grof,et al. Phloem Transport of Resources , 2013 .
[38] K. Steppe,et al. Phloem transport: a review of mechanisms and controls. , 2013, Journal of experimental botany.
[39] J. Vangronsveld,et al. Plant sugars are crucial players in the oxidative challenge during abiotic stress: extending the traditional concept. , 2013, Plant, cell & environment.
[40] Ute Roessner,et al. Whole-Genome Mapping of Agronomic and Metabolic Traits to Identify Novel Quantitative Trait Loci in Bread Wheat Grown in a Water-Limited Environment1[W][OA] , 2013, Plant Physiology.
[41] T. Müller,et al. Carbohydrate Dynamics in Leaves of Rapeseed (Brassica napus) Under Drought , 2012 .
[42] J. Ward,et al. The mechanism of phloem loading in rice (Oryza sativa) , 2012, Molecules and cells.
[43] Alisdair R Fernie,et al. Sucrose Efflux Mediated by SWEET Proteins as a Key Step for Phloem Transport , 2012, Science.
[44] A. Roy,et al. LEAF BLADE AND MIDRIB ANATOMY OF TWO SUGARCANE CULTIVARS OF BANGLADESH , 2011 .
[45] M. Janicka-Russak. Plant Plasma Membrane H+-ATPase in Adaptation of Plants to Abiotic Stresses , 2011 .
[46] R. Gaxiola,et al. Plasma membrane localization of the type I H(+)-PPase AVP1 in sieve element-companion cell complexes from Arabidopsis thaliana. , 2011, Plant science : an international journal of experimental plant biology.
[47] M. Ashikari,et al. Vacuolar Proton Pumps and Aquaporins Involved in Rapid Internode Elongation of Deepwater Rice , 2011, Bioscience, biotechnology, and biochemistry.
[48] W. Frommer,et al. Sugar transporters for intercellular exchange and nutrition of pathogens , 2010, Nature.
[49] S. Rothstein,et al. Biological functions of asparagine synthetase in plants , 2010 .
[50] H. Gerós,et al. Regulation by salt of vacuolar H+-ATPase and H+-pyrophosphatase activities and Na+/H+ exchange , 2009, Plant signaling & behavior.
[51] W. W. Adams,et al. Activation of sucrose transport in defoliated Lolium perenne L.: an example of apoplastic phloem loading plasticity. , 2009, Plant & cell physiology.
[52] R. Meeley,et al. Sucrose transporter1 functions in phloem loading in maize leaves , 2009 .
[53] D. Braun,et al. Genetic Control of Carbon Partitioning in Grasses: Roles of Sucrose Transporters and Tie-dyed Loci in Phloem Loading1[C] , 2009, Plant Physiology.
[54] A. McCormick,et al. Regulation of photosynthesis by sugars in sugarcane leaves. , 2008, Journal of plant physiology.
[55] M. Janicka-Russak,et al. Response of plasma membrane H+-ATPase to heavy metal stress in Cucumis sativus roots , 2008, Journal of experimental botany.
[56] D. Braun,et al. Tie-dyed2 Functions with Tie-dyed1 to Promote Carbohydrate Export from Maize Leaves1[C][W][OA] , 2008, Plant Physiology.
[57] E. Komor,et al. Symptom expression of yellow leaf disease in sugarcane cultivars with different degrees of infection by Sugarcane yellow leaf virus , 2007 .
[58] R. Furbank,et al. Involvement of the sucrose transporter, OsSUT1, in the long-distance pathway for assimilate transport in rice. , 2007, Journal of experimental botany.
[59] B. Forde,et al. Glutamate in plants: metabolism, regulation, and signalling. , 2007, Journal of experimental botany.
[60] K. Schumacher,et al. Plant proton pumps , 2007, FEBS letters.
[61] Paul H. Moore,et al. Impact of sugarcane yellow leaf virus (ScYLV) on the carbohydrate status of sugarcane: Comparison of virus-free plants with symptomatic and asymptomatic virus-infected plants , 2007 .
[62] M. Janicka-Russak,et al. Modification of plasma membrane and vacuolar H+ -ATPases in response to NaCL and ABA. , 2007, Journal of plant physiology.
[63] P. Shewry,et al. Asparagine in plants , 2007 .
[64] N. Inada,et al. tie-dyed1 Regulates Carbohydrate Accumulation in Maize Leaves1[C][W][OA] , 2006, Plant Physiology.
[65] A. Gupta,et al. Sugar signalling and gene expression in relation to carbohydrate metabolism under abiotic stresses in plants , 2005, Journal of Biosciences.
[66] Masaru Ohta,et al. Contribution of inorganic components to osmotic adjustment and leaf folding for drought tolerance in pearl millet , 2005 .
[67] Ahmed Rebai,et al. Identification and Characterization of New Members of Vacuolar H+-Pyrophosphatase Family from Oryza sativa Genome , 2005, Russian Journal of Plant Physiology.
[68] K. Masmoudi,et al. Cloning and characterization of a wheat vacuolar cation/proton antiporter and pyrophosphatase proton pump. , 2005, Plant physiology and biochemistry : PPB.
[69] A. Rae,et al. Sucrose partitioning between vascular bundles and storage parenchyma in the sugarcane stem: a potential role for the ShSUT1 sucrose transporter , 2005, Planta.
[70] M. Palmgren,et al. Energization of Transport Processes in Plants. Roles of the Plasma Membrane H+-ATPase1 , 2004, Plant Physiology.
[71] S. Chapman,et al. Identification of Differentially Expressed Transcripts from Maturing Stem of Sugarcane by in silico Analysis of Stem Expressed Sequence Tags and Gene Expression Profiling , 2004, Plant Molecular Biology.
[72] R. Pinton,et al. Induction of nitrate uptake in maize roots: expression of a putative high-affinity nitrate transporter and plasma membrane H+-ATPase isoforms. , 2003, Journal of experimental botany.
[73] Rosanne E. Casu,et al. Identification of a novel sugar transporter homologue strongly expressed in maturing stem vascular tissues of sugarcane by expressed sequence tag and microarray analysis , 2003, Plant Molecular Biology.
[74] R. Furbank,et al. The sucrose transporter gene family in rice. , 2003, Plant & cell physiology.
[75] R. Furbank,et al. Three sucrose transporter genes are expressed in the developing grain of hexaploid wheat , 2002, Plant Molecular Biology.
[76] R. Furbank,et al. Cellular localisation and function of a sucrose transporter OsSUT1 in developing rice grains , 2001 .
[77] A. Dookun,et al. Further evidence of the association of a phytoplasma and a virus with yellow leaf syndrome in sugarcane , 2001 .
[78] G. Fink,et al. Drought- and salt-tolerant plants result from overexpression of the AVP1 H+-pump , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[79] A. Borland,et al. Carbohydrate and Proline Contents in Leaves, Roots, and Apices of Salt-Tolerant and Salt-Sensitive Wheat Cultivars1 , 2001, Russian Journal of Plant Physiology.
[80] C. Ullrich,et al. Immunolocalization of plasma-membrane H+-ATPase and tonoplast-type pyrophosphatase in the plasma membrane of the sieve element-companion cell complex in the stem of Ricinus communis L. , 2001, Planta.
[81] Y. Im,et al. Sensitivity of plasma membrane H+-ATPase of cucumber root system in response to low root temperature , 2000, Plant Cell Reports.
[82] Rongmin Zhao,et al. Cosuppression of a Plasma Membrane H+-ATPase Isoform Impairs Sucrose Translocation, Stomatal Opening, Plant Growth, and Male Fertility , 2000, Plant Cell.
[83] M. Boutry,et al. Identification and expression of three new Nicotiana plumbaginifolia genes which encode isoforms of a plasma-membrane H+-ATPase, and one of which is induced by mechanical stress , 2000, Planta.
[84] A. Bel,et al. Phloem loading in the sucrose-export-defective (SXD-1) mutant maize is limited by callose deposition at plasmodesmata in bundle sheath—vascular parenchyma interface , 2000, Protoplasma.
[85] Sung-ju Ahn,et al. Inducible Expression of Plasma Membrane H⁺-ATPase in the Roots of Figleaf Gourd Plants under Chilling Root Temperature , 1999 .
[86] R. A. Bailey,et al. Association of a phytoplasma with a yellow leaf syndrome of sugarcane in Africa , 1998 .
[87] F. Cánovas,et al. Cytosolic localization in tomato mesophyll cells of a novel glutamine synthetase induced in response to bacterial infection or phosphinothricin treatment , 1998, Planta.
[88] R. Serrano,et al. A major isoform of the maize plasma membrane H(+)-ATPase: characterization and induction by auxin in coleoptiles. , 1996, The Plant cell.
[89] Y. Sakakibara,et al. Isolation and characterization of cDNAs encoding vacuolar H+-pyrophosphatase isoforms from rice (Oryza sativa L.) , 1996, Plant Molecular Biology.
[90] U. Sonnewald,et al. Molecular cloning, characterization and expression analysis of isoforms encoding tonoplast-bound proton-translocating inorganic pyrophosphatase in tobacco , 1995, Plant Molecular Biology.
[91] M. Boutry,et al. The Plasma Membrane H+-ATPase (A Highly Regulated Enzyme with Multiple Physiological Functions) , 1995, Plant physiology.
[92] M. Stitt,et al. Impaired photoassimilate partitioning caused by phloem-specific removal of pyrophosphate can be complemented by a phloem-specific cytosolic yeast-derived invertase in transgenic plants. , 1995, The Plant cell.
[93] J. Bennetzen,et al. Integration and nonrandom mutation of a plasma membrane proton ATPase gene fragment within the Bs1 retroelement of maize. , 1994, The Plant cell.
[94] J. Bonnemain,et al. Immunolocalization of the Plasma Membrane H+ -ATPase in Minor Veins of Vicia faba in Relation to Phloem Loading , 1994, Plant physiology.
[95] P. Hasegawa,et al. NaCl Regulation of Plasma Membrane H+-ATPase Gene Expression in a Glycophyte and a Halophyte , 1993, Plant physiology.
[96] E. Aro,et al. Photoinhibition of Photosystem II. Inactivation, protein damage and turnover. , 1993, Biochimica et biophysica acta.
[97] H. Heldt,et al. Phloem Transport of Amino Acids in Relation to their Cytosolic Levels in Barley Leaves. , 1992, Plant physiology.
[98] P. A. Rea,et al. Molecular cloning and sequence of cDNA encoding the pyrophosphate-energized vacuolar membrane proton pump of Arabidopsis thaliana. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[99] C. J. Nelson,et al. Photosynthate partitioning in Basal zones of tall fescue leaf blades. , 1991, Plant physiology.
[100] J. Boyer,et al. Low water potentials affect expression of genes encoding vegetative storage proteins and plasma membrane proton ATPase in soybean , 1991, Plant Molecular Biology.
[101] C. J. Nelson,et al. Growth Rates and Carbohydrate Fluxes within the Elongation Zone of Tall Fescue Leaf Blades. , 1987, Plant physiology.
[102] D. Geiger,et al. Solute distribution in sugar beet leaves in relation to Phloem loading and translocation. , 1973, Plant physiology.
[103] E. Artschwager. Structure and Taxonomic Value of the Dewlap in Sugarcane , 1951 .
[104] Xinyou Yin,et al. Increased sink strength offsets the inhibitory effect of sucrose on sugarcane photosynthesis. , 2017, Journal of plant physiology.
[105] F. Botha,et al. Sugarcane : physiology, biochemistry, and functional biology , 2014 .
[106] A. Fuglsang,et al. Plant Proton Pumps: Regulatory Circuits Involving H+-ATPase and H+-PPase , 2011 .
[107] R. Burton,et al. Expression of vacuolar H+-pyrophosphatase (OVP3) is under control of an anoxia-inducible promoter in rice , 2009, Plant Molecular Biology.
[108] A. McCormick,et al. Changes in photosynthetic rates and gene expression of leaves during a source-sink perturbation in sugarcane. , 2008, Annals of botany.
[109] D. Braun,et al. Tie-dyed2 Functions with Tie-dyed1 to Promote Carbohydrate Export from Maize Leaves1[C][W][OA] , 2008, Plant Physiology.
[110] N. Aoki,et al. Molecular cloning and expression analysis of a gene for a sucrose transporter in maize (Zea mays L.). , 1999, Plant & cell physiology.
[111] J. Davies,et al. Energetics of the plasma membrane pyrophosphatase , 1997 .
[112] G. Stewart,et al. Accumulation of amino acids and related compounds in relation to environmental stress. , 1980 .