Isotope labeling-based quantitative proteomics of developing seeds of castor oil seed (Ricinus communis L.).
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Veit Schwämmle | Peter Roepstorff | Gilberto B Domont | P. Roepstorff | V. Schwämmle | G. Domont | F. Nogueira | G. Palmisano | A. A. Soares | F. Campos | Giuseppe Palmisano | Emanuel Soares | Fábio C S Nogueira | Emanuela L Soares | Arlete A Soares | Francisco A P Campos
[1] Veit Schwämmle,et al. Assessment and improvement of statistical tools for comparative proteomics analysis of sparse data sets with few experimental replicates. , 2013, Journal of proteome research.
[2] Ju-Sung Kim,et al. Computational identification and phylogenetic analysis of the oil-body structural proteins, oleosin and caleosin, in castor bean and flax. , 2013, Gene.
[3] B. Svensson,et al. Dissecting molecular interactions involved in recognition of target disulfides by the barley thioredoxin system. , 2012, Biochemistry.
[4] V. Pardeshi,et al. Proteome profiling of flax (Linum usitatissimum) seed: characterization of functional metabolic pathways operating during seed development. , 2012, Journal of proteome research.
[5] Richard D. Smith,et al. DanteR: an extensible R-based tool for quantitative analysis of -omics data , 2012, Bioinform..
[6] Jay J Thelen,et al. Modulation of Protein Phosphorylation, N-Glycosylation and Lys-Acetylation in Grape (Vitis vinifera) Mesocarp and Exocarp Owing to Lobesia botrana Infection* , 2012, Molecular & Cellular Proteomics.
[7] W. Crosby,et al. A Review on the Challenges for Increased Production of Castor , 2012 .
[8] J. Cuesta-Herranz,et al. Analysis of the structural and immunological stability of 2S albumin, nonspecific lipid transfer protein, and profilin allergens from mustard seeds. , 2012, Journal of agricultural and food chemistry.
[9] K. Wilson,et al. Mobilization of seed protein reserves. , 2012, Physiologia plantarum.
[10] P. Roepstorff,et al. Performance of isobaric and isotopic labeling in quantitative plant proteomics. , 2012, Journal of proteome research.
[11] S. Hoffmann-Benning,et al. dentification of lipids an lipid-binding proteins in phloem exudates from Arabidops s thalia a , 2012 .
[12] P. Roepstorff,et al. Proteomic profile of the nucellus of castor bean (Ricinus communis L.) seeds during development. , 2012, Journal of proteomics.
[13] D. Swarbreck,et al. Tissue-Specific Whole Transcriptome Sequencing in Castor, Directed at Understanding Triacylglycerol Lipid Biosynthetic Pathways , 2012, PloS one.
[14] K. Masmoudi,et al. Insights into Maize LEA proteins: from proteomics to functional approaches. , 2012, Plant & cell physiology.
[15] Markus Pauly,et al. Comparative deep transcriptional profiling of four developing oilseeds , 2011, The Plant journal : for cell and molecular biology.
[16] J. Topping,et al. Components of complex lipid biosynthetic pathways in developing castor (Ricinus communis) seeds identified by MudPIT analysis of enriched endoplasmic reticulum. , 2011, Journal of proteome research.
[17] S. Assmann,et al. The glycolytic enzyme, phosphoglycerate mutase, has critical roles in stomatal movement, vegetative growth, and pollen production in Arabidopsis thaliana , 2011, Journal of experimental botany.
[18] R. Leegood,et al. Metabolism of the seed and endocarp of cherry (Prunus avium L.) during development. , 2011, Plant physiology and biochemistry : PPB.
[19] J. Rogers,et al. Crop genome sequencing: lessons and rationales. , 2011, Trends in plant science.
[20] Veit Schwämmle,et al. BIOINFORMATICS ORIGINAL PAPER , 2022 .
[21] Martin R Larsen,et al. Selective enrichment of sialic acid–containing glycopeptides using titanium dioxide chromatography with analysis by HILIC and mass spectrometry , 2010, Nature Protocols.
[22] B. Haas,et al. Draft genome sequence of the oilseed species Ricinus communis , 2010, Nature Biotechnology.
[23] Mário Otávio Batalha,et al. Biodiesel production from castor oil in Brazil: A difficult reality , 2010 .
[24] Frank Kjeldsen,et al. Undesirable charge-enhancement of isobaric tagged phosphopeptides leads to reduced identification efficiency. , 2010, Journal of proteome research.
[25] M. Kuntz,et al. Characteristics of the tomato chromoplast revealed by proteomic analysis. , 2010, Journal of experimental botany.
[26] L. Ponnala,et al. Megadalton Complexes in the Chloroplast Stroma of Arabidopsis thaliana Characterized by Size Exclusion Chromatography, Mass Spectrometry, and Hierarchical Clustering* , 2010, Molecular & Cellular Proteomics.
[27] J. Koziol. Comments on the rank product method for analyzing replicated experiments , 2010, FEBS letters.
[28] W. Majeran,et al. Reconstruction of Metabolic Pathways, Protein Expression, and Homeostasis Machineries across Maize Bundle Sheath and Mesophyll Chloroplasts: Large-Scale Quantitative Proteomics Using the First Maize Genome Assembly1[W][OA] , 2010, Plant Physiology.
[29] D. Alonso,et al. Characterization of the 11S globulin gene family in the castor plant Ricinus communis L. , 2010, Journal of agricultural and food chemistry.
[30] M. Hajduch,et al. Quantitative Proteomics of Seed Filling in Castor: Comparison with Soybean and Rapeseed Reveals Differences between Photosynthetic and Nonphotosynthetic Seed Metabolism1[C][W][OA] , 2009, Plant Physiology.
[31] A. Maule,et al. Normal growth of Arabidopsis requires cytosolic invertase but not sucrose synthase , 2009, Proceedings of the National Academy of Sciences.
[32] M. J. da Silva,et al. Proteome analysis of castor bean seeds , 2008 .
[33] D. Oliver,et al. The Role of Acetyl-Coenzyme A Synthetase in Arabidopsis1[OA] , 2008, Plant Physiology.
[34] I. Graham. Seed storage oil mobilization. , 2008, Annual review of plant biology.
[35] J. Gressel. Transgenics are imperative for biofuel crops , 2008 .
[36] Lokesh Kumar,et al. Mfuzz: A software package for soft clustering of microarray data , 2007, Bioinformation.
[37] G. Domont,et al. Proteome analysis of embryogenic cell suspensions of cowpea (Vigna unguiculata) , 2007, Plant Cell Reports.
[38] J. Schwender,et al. Light Enables a Very High Efficiency of Carbon Storage in Developing Embryos of Rapeseed1 , 2005, Plant Physiology.
[39] T. Chia,et al. Storage oil breakdown during embryo development of Brassica napus (L.). , 2005, Journal of experimental botany.
[40] Gordon K. Smyth,et al. limma: Linear Models for Microarray Data , 2005 .
[41] J. Schwender,et al. Rubisco without the Calvin cycle improves the carbon efficiency of developing green seeds , 2004, Nature.
[42] Rainer Breitling,et al. Rank products: a simple, yet powerful, new method to detect differentially regulated genes in replicated microarray experiments , 2004, FEBS letters.
[43] D. Dennis,et al. Higher-plant cofactor-independent phosphoglyceromutase: purification, molecular characterization and expression , 1993, Plant Molecular Biology.
[44] D. Randall,et al. Regulation of pyruvate dehydrogenase complex activity in plant cells. , 2003, European journal of biochemistry.
[45] John D. Storey. A direct approach to false discovery rates , 2002 .
[46] Kruger,et al. Control of gluconeogenesis by isocitrate lyase in endosperm of germinating castor bean seedlings , 1999, The Plant journal : for cell and molecular biology.
[47] E. Nordhoff,et al. Sample purification and preparation technique based on nano-scale reversed-phase columns for the sensitive analysis of complex peptide mixtures by matrix-assisted laser desorption/ionization mass spectrometry. , 1999, Journal of mass spectrometry : JMS.
[48] S. C. Thorpe,et al. Allergy to castor bean. I. Its relationship to sensitization to common inhalant allergens (atopy). , 1988, The Journal of allergy and clinical immunology.
[49] S. C. Thorpe,et al. Allergy to castor bean. II. Identification of the major allergens in castor bean seeds. , 1988, The Journal of allergy and clinical immunology.
[50] J. Bewley,et al. Seed development in Ricinus communis cv. Hale (castor bean). III: Pattern of storage protein and phytin accumulation in the endosperm , 1985 .
[51] J. Bewley,et al. Seed development in Ricinus communis cv. Hale (castor bean). II: Accumulation of phytic acid in the developing endosperm and embryo in relation to the deposition of lipid, protein, and phosphorus , 1984 .
[52] J. Bewley,et al. Seed development in Ricinus communis (castor bean). I. Descriptive morphology , 1982 .
[53] J. Miernyk,et al. Compartmentation of Nonphotosynthetic Carbohydrate Metabolism , 1982 .