Proteomics analysis of the germinating seeds of Cariniana legalis (Mart.) Kuntze (Meliaceae): an endangered species of the Brazilian Atlantic Rainforest
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[1] Richard D. Thompson,et al. Genome-wide association studies with proteomics data reveal genes important for synthesis, transport and packaging of globulins in legume seeds. , 2017, The New phytologist.
[2] A. José,et al. Proteomic analysis of osmoprimed and heat-shock-treated Eucalyptus urophylla seeds , 2017, Trees.
[3] Zhiwei Cheng,et al. Proteomic Analysis Reveals Key Proteins and Phosphoproteins upon Seed Germination of Wheat (Triticum aestivum L.) , 2015, Front. Plant Sci..
[4] R. Garcés,et al. Sunflower (Helianthus annuus) fatty acid synthase complex: β-hydroxyacyl-[acyl carrier protein] dehydratase genes , 2015, Planta.
[5] V. Silveira,et al. Free amino acids, polyamines, soluble sugars and proteins during seed germination and early seedling growth of Cedrela fissilis Vellozo (Meliaceae), an endangered hardwood species from the Atlantic Forest in Brazil , 2015, Theoretical and Experimental Plant Physiology.
[6] Peng Zhang,et al. Proteome Analysis of Dormancy-Released Seeds of Fraxinus mandshurica Rupr. in Response to Re-Dehydration under Different Conditions , 2015, International journal of molecular sciences.
[7] S. Dhaubhadel,et al. Genome-wide analysis of Cyclophilin gene family in soybean (Glycine max) , 2014, BMC Plant Biology.
[8] C. Santa-Catarina,et al. Comparative proteomic analysis of somatic embryo maturation in Carica papaya L. , 2014, Proteome Science.
[9] Xiu-jun Lu,et al. Differential proteome analysis of mature and germinated seeds of Magnolia sieboldii K. Koch , 2014, Trees.
[10] Xiu-jun Lu,et al. Differential proteome analysis of mature and germinated seeds of Magnolia sieboldii K. Koch , 2014, Trees.
[11] R. Garcés,et al. Sunflower (Helianthus annuus) fatty acid synthase complex: enoyl-[acyl carrier protein]-reductase genes , 2014, Planta.
[12] Emmanuel Arnhold. Pacote em ambiente R para análise de variância e análises complementares , 2013 .
[13] Veit Schwämmle,et al. Isotope labeling-based quantitative proteomics of developing seeds of castor oil seed (Ricinus communis L.). , 2013, Journal of proteome research.
[14] N. Obroucheva. Aquaporins in seeds , 2013, Seed Science Research.
[15] Pingfang Yang,et al. Proteomics of rice seed germination , 2013, Front. Plant Sci..
[16] Tai Wang,et al. Use of proteomics to understand seed development in rice , 2013, Proteomics.
[17] C. Job,et al. Proteomic analysis of the enhancement of seed vigour in osmoprimed alfalfa seeds germinated under salinity stress , 2013, Seed Science Research.
[18] R. Saletti,et al. Mass spectrometry in the proteome analysis of mature cereal kernels. , 2012, Mass spectrometry reviews.
[19] D. Jackson,et al. Sugars, signalling, and plant development. , 2012, Journal of experimental botany.
[20] I. Møller,et al. Proteomics of desiccation tolerance during development and germination of maize embryos. , 2012, Journal of proteomics.
[21] J. Bewley. Seeds: Physiology of Development, Germination and Dormancy , 2012 .
[22] M. Glickman,et al. Proteasomal AAA-ATPases: structure and function. , 2012, Biochimica et biophysica acta.
[23] H. El-Maarouf-Bouteau,et al. Catalase is a key enzyme in seed recovery from ageing during priming. , 2011, Plant science : an international journal of experimental plant biology.
[24] A. D. De Ron,et al. 2-DE-based proteomic analysis of common bean (Phaseolus vulgaris L.) seeds. , 2011, Journal of proteomics.
[25] C. Santa-Catarina,et al. Challenges in proteome analyses of tropical plants , 2011 .
[26] M. Hajduch,et al. Using proteomics to study sexual reproduction in angiosperms , 2011, Sexual Plant Reproduction.
[27] George W. Bassel,et al. Germination—Still a mystery , 2010 .
[28] K. Dietz,et al. Changes in Antioxidant Enzymes during Ageing of Onion Seeds , 2010 .
[29] M. Hayashi,et al. A peroxisomal ABC transporter promotes seed germination by inducing pectin degradation under the control of ABI5. , 2010, The Plant journal : for cell and molecular biology.
[30] C. Job,et al. Proteomics reveal tissue‐specific features of the cress (Lepidium sativum L.) endosperm cap proteome and its hormone‐induced changes during seed germination , 2010, Proteomics.
[31] B. Heuer,et al. Proteome characterization of cassava (Manihot esculenta Crantz) somatic embryos, plantlets and tuberous roots , 2010, Proteome Science.
[32] Timothy Y. Huang,et al. Reactive oxygen species regulate a slingshot-cofilin activation pathway. , 2009, Molecular biology of the cell.
[33] Xiao-Feng Tang,et al. Biochemical and molecular characterization of plant MYB transcription factor family , 2009, Biochemistry (Moscow).
[34] Hsou-min Li,et al. Arabidopsis Stromal 70-kD Heat Shock Proteins Are Essential for Plant Development and Important for Thermotolerance of Germinating Seeds1[C][W][OA] , 2008, Plant Physiology.
[35] C. Job,et al. Transcriptome- and proteome-wide analyses of seed germination. , 2008, Comptes rendus biologies.
[36] W. Vensel,et al. Thioredoxin-Linked Proteins Are Reduced during Germination of Medicago truncatula Seeds1[W][OA] , 2007, Plant Physiology.
[37] R. Prodanović,et al. Antioxidative enzymes during germination of two lines of Serbian spruce [Picea omorika (Panč.) Purkyně] , 2007 .
[38] T. Beardmore,et al. Regulation of the β-hydroxyacyl ACP dehydratase gene of Picea mariana by alternative splicing , 2006, Plant Cell Reports.
[39] A. Mosseler,et al. Impacts of forest fragmentation on the mating system and genetic diversity of white spruce (Picea glauca) at the landscape level , 2006, Heredity.
[40] J. Vivanco,et al. The role of root exudates in rhizosphere interactions with plants and other organisms. , 2006, Annual review of plant biology.
[41] D. Bassham,et al. Germination and proteome analyses reveal intraspecific variation in seed dormancy regulation in common waterhemp (Amaranthus tuberculatus) , 2006, Weed Science.
[42] Juan Miguel García-Gómez,et al. BIOINFORMATICS APPLICATIONS NOTE Sequence analysis Manipulation of FASTQ data with Galaxy , 2005 .
[43] Douglas J. H. Olson,et al. Proteome analysis of embryo and endosperm from germinating tomato seeds , 2005, Proteomics.
[44] K. Laukens,et al. Preparation of protein extracts from recalcitrant plant tissues: An evaluation of different methods for two‐dimensional gel electrophoresis analysis , 2005, Proteomics.
[45] Sukyeong Lee,et al. Molecular chaperones in protein quality control. , 2005, Journal of biochemistry and molecular biology.
[46] L. Erickson,et al. A pollen-specific polygalacturonase-like cDNA from alfalfa , 1996, Sexual Plant Reproduction.
[47] D. Inzé,et al. Catalases in plants , 1995, Molecular Breeding.
[48] C. Bailly. Active oxygen species and antioxidants in seed biology , 2004, Seed Science Research.
[49] J. Vandekerckhove,et al. The Effect of α-Amanitin on the Arabidopsis Seed Proteome Highlights the Distinct Roles of Stored and Neosynthesized mRNAs during Germination1 , 2004, Plant Physiology.
[50] F. Cánovas,et al. Plant proteome analysis , 2004, Proteomics.
[51] F. Botha,et al. Respiratory metabolism and gene expression during seed germination , 1992, Plant Growth Regulation.
[52] O. Arrigoni,et al. The ascorbic acid system in seeds: to protect and to serve , 2003, Seed Science Research.
[53] Demetri T. Moustakas,et al. Structure of tRNA pseudouridine synthase TruB and its RNA complex: RNA recognition through a combination of rigid docking and induced fit , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[54] Taro Masuda,et al. Crystal structure of soybean 11S globulin: Glycinin A3B4 homohexamer , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[55] R. Mittler. Oxidative stress, antioxidants and stress tolerance. , 2002, Trends in plant science.
[56] Y. Morohashi. Peroxidase activity develops in the micropylar endosperm of tomato seeds prior to radicle protrusion. , 2002, Journal of experimental botany.
[57] S. Misra,et al. The Douglas-fir BiP promoter is functional in Arabidopsis and responds to wounding , 2002, Planta.
[58] O. Lorenzo,et al. GA(3)-induced expression of a new functional AAA-ATPase (FsA1) is correlated with the onset of germination in Fagus sylvatica L. seeds (beechnuts). , 2002, Plant & cell physiology.
[59] M. Guarnieri,et al. Differences in the activity and distribution of peroxidases from three different portions of germinating Brassica oleracea seeds. , 2002, Physiologia plantarum.
[60] J. Derek Bewleyl,et al. Seed Germination and Dormancy , 2002 .
[61] A. Ferré-D’Amaré,et al. Cocrystal Structure of a tRNA Ψ55 Pseudouridine Synthase Nucleotide Flipping by an RNA-Modifying Enzyme , 2001, Cell.
[62] C. Guy,et al. Comprehensive expression profile analysis of the Arabidopsis Hsp70 gene family. , 2001, Plant physiology.
[63] B. Ooraikul,et al. Studies on germination conditions and antioxidant contents of wheat grain. , 2001, International journal of food sciences and nutrition.
[64] C. Vázquez-Yanes,et al. Cactus seed germination: a review , 2000 .
[65] Robert M. Stroud,et al. The structural basis for tRNA recognition and pseudouridine formation by pseudouridine synthase I , 2000, Nature Structural Biology.
[66] R. Aalen. Peroxiredoxin antioxidants in seed physiology , 1999, Seed Science Research.
[67] F. Gubler,et al. Target genes and regulatory domains of the GAMYB transcriptional activator in cereal aleurone. , 1999, The Plant journal : for cell and molecular biology.
[68] J. G. Scandalios,et al. Catalase activity and hydrogen peroxide levels are inversely correlated in maize scutella during seed germination. , 1999, Redox report : communications in free radical research.
[69] B. W. Shirley. Flavonoids in seeds and grains: physiological function, agronomic importance and the genetics of biosynthesis , 1998, Seed Science Research.
[70] B. W. Shirley,et al. Analysis of Flavanone 3-Hydroxylase in Arabidopsis Seedlings (Coordinate Regulation with Chalcone Synthase and Chalcone Isomerase) , 1996, Plant physiology.
[71] R. Kalla,et al. Gibberellin-regulated expression of a myb gene in barley aleurone cells: evidence for Myb transactivation of a high-pI alpha-amylase gene promoter. , 1995, The Plant cell.
[72] P. Shewry,et al. Seed storage proteins: structures and biosynthesis. , 1995, The Plant cell.
[73] M. Nishimura,et al. Accumulation of Vacuolar H+-Pyrophosphatase and H+-ATPase during Reformation of the Central Vacuole in Germinating Pumpkin Seeds , 1994, Plant physiology.
[74] T. Jeng,et al. Hydration effect on lipid peroxidation and peroxide-scavenging enzymes activity of artificially aged peanut seed , 1994 .
[75] H. Marschner,et al. Activities of Hydrogen Peroxide-Scavenging Enzymes in Germinating Wheat Seeds , 1993 .
[76] J. Bewley,et al. Gene expression in seed development and germination. , 1990, Progress in nucleic acid research and molecular biology.
[77] A. Pradet,et al. ATP Production by Respiration and Fermentation, and Energy Charge during Aerobiosis and Anaerobiosis in Twelve Fatty and Starchy Germinating Seeds. , 1985, Plant physiology.
[78] V. Neuhoff,et al. Clear background and highly sensitive protein staining with Coomassie Blue dyes in polyacrylamide gels: A systematic analysis , 1985 .
[79] P. Evans,et al. Sequence, structure and activity of phosphoglycerate kinase: a possible hinge-bending enzyme , 1979, Nature.
[80] H. Halvorson,et al. Consideration of the Possibility that the slow step in protein denaturation reactions is due to cis-trans isomerism of proline residues. , 1975, Biochemistry.