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      Comparison of Protein Profiles of Proso Millet (Panicum miliaceum) Seeds of Various Korean Cultivars

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      https://www.riss.kr/link?id=A104996294

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      다국어 초록 (Multilingual Abstract)

      Seed storage proteins are used as carbon and nitrogen sources for the nutritional improvement of seeds. Since the composition of proteins from the Korean cultivars of proso millet is unknown, this study was conducted to obtain a reference map of millet seed proteins and identify the functional characteristics of the identified proteins. Proteins extracted from proso millet seeds of various cultivars were investigated using proteomic techniques such as 2-D electrophoresis coupled with mass fingerprinting; 1152 (differentially expressed) protein spots were detected on the 2-D gels. Among them, 26 reproducible protein spots were analyzed using matrix-assisted laser desorption/ionization time-of-flight/time-of-flight mass spectrometry. Out of the 26 proteins, 2 proteins were upregulated in all the millet cultivars, while 13 proteins were upregulated and 11 proteins were downregulated in 2 cultivars. Abundance of most of the identified protein species associated with polysaccharide and starch metabolism, transcription, and pathogenesis was significantly enhanced, while that of other protein species involved in glycolysis, stress response, and transduction was severely reduced. Taken together, the results suggest that the differential expression of the proteins from the four millet cultivars may be cultivar-specific. By conducting a proteomic investigation of millet seeds from different cultivars, we sought to better understand the functional categorization of individual proteins on the basis of their molecular functions. We believe that the identified proteins may help in investigating genetic variations in millet cultivars.
      Keywords : 2-DE, proso millet, protein profiling, seed protein
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      Seed storage proteins are used as carbon and nitrogen sources for the nutritional improvement of seeds. Since the composition of proteins from the Korean cultivars of proso millet is unknown, this study was conducted to obtain a reference map of mille...

      Seed storage proteins are used as carbon and nitrogen sources for the nutritional improvement of seeds. Since the composition of proteins from the Korean cultivars of proso millet is unknown, this study was conducted to obtain a reference map of millet seed proteins and identify the functional characteristics of the identified proteins. Proteins extracted from proso millet seeds of various cultivars were investigated using proteomic techniques such as 2-D electrophoresis coupled with mass fingerprinting; 1152 (differentially expressed) protein spots were detected on the 2-D gels. Among them, 26 reproducible protein spots were analyzed using matrix-assisted laser desorption/ionization time-of-flight/time-of-flight mass spectrometry. Out of the 26 proteins, 2 proteins were upregulated in all the millet cultivars, while 13 proteins were upregulated and 11 proteins were downregulated in 2 cultivars. Abundance of most of the identified protein species associated with polysaccharide and starch metabolism, transcription, and pathogenesis was significantly enhanced, while that of other protein species involved in glycolysis, stress response, and transduction was severely reduced. Taken together, the results suggest that the differential expression of the proteins from the four millet cultivars may be cultivar-specific. By conducting a proteomic investigation of millet seeds from different cultivars, we sought to better understand the functional categorization of individual proteins on the basis of their molecular functions. We believe that the identified proteins may help in investigating genetic variations in millet cultivars.
      Keywords : 2-DE, proso millet, protein profiling, seed protein

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      참고문헌 (Reference)

      1 Marçon, A., "Wheat streak mosaic virus resistance in foxtail millet, Setaria italica, L Beauv., and factors related to resistance"

      2 Yacoubi, R., "Toward characterizing seed vigor in alfalfa through proteomic analysis of germination and priming" 10 : 3891-3903, 2011

      3 Skylas, D. J., "The wheat‐grain proteome as a basis for more efficient cultivar identification" 1 : 1542-1546, 2001

      4 Vierling, E., "The roles of heat shock proteins in plants" 42 : 579-620, 1991

      5 Crosatti, C., "The interaction between cold and light controls the expression of the cold-regulated barley gene cor14b and the accumulation of the corresponding protein" 119 : 671-680, 1999

      6 Wehmeyer, N., "The expression of small heat shock proteins in seeds responds to discrete developmental signals and suggests a general protective role in desiccation tolerance" 122 : 1099-1108, 2000

      7 Rajjou, L., "The effect of α-amanitin on the Arabidopsis seed proteome highlights the distinct roles of stored and neosynthesized mRNAs during germination" 134 : 1598-1613, 2004

      8 Nwugo, C. C., "The effect of silicon on the leaf proteome of rice (Oryza sativa L.) plants under cadmium-stress" 10 : 518-528, 2010

      9 Chronis, D., "Sulfur Assimilation in Soybean" 43 : 1819-1827, 2003

      10 Emes, M., "Starch synthesis and carbon partitioning in developing endosperm" 54 : 569-575, 2003

      1 Marçon, A., "Wheat streak mosaic virus resistance in foxtail millet, Setaria italica, L Beauv., and factors related to resistance"

      2 Yacoubi, R., "Toward characterizing seed vigor in alfalfa through proteomic analysis of germination and priming" 10 : 3891-3903, 2011

      3 Skylas, D. J., "The wheat‐grain proteome as a basis for more efficient cultivar identification" 1 : 1542-1546, 2001

      4 Vierling, E., "The roles of heat shock proteins in plants" 42 : 579-620, 1991

      5 Crosatti, C., "The interaction between cold and light controls the expression of the cold-regulated barley gene cor14b and the accumulation of the corresponding protein" 119 : 671-680, 1999

      6 Wehmeyer, N., "The expression of small heat shock proteins in seeds responds to discrete developmental signals and suggests a general protective role in desiccation tolerance" 122 : 1099-1108, 2000

      7 Rajjou, L., "The effect of α-amanitin on the Arabidopsis seed proteome highlights the distinct roles of stored and neosynthesized mRNAs during germination" 134 : 1598-1613, 2004

      8 Nwugo, C. C., "The effect of silicon on the leaf proteome of rice (Oryza sativa L.) plants under cadmium-stress" 10 : 518-528, 2010

      9 Chronis, D., "Sulfur Assimilation in Soybean" 43 : 1819-1827, 2003

      10 Emes, M., "Starch synthesis and carbon partitioning in developing endosperm" 54 : 569-575, 2003

      11 Mesa‐Stonestreet, D., "Sorghum proteins: the concentration, isolation, modification, and food applications of kafirins" 75 : R90-R104, 2010

      12 Macdonald, F. D., "Solubilization of the starch-granule-bound starch synthase of normal maize kernels" 73 : 175-178, 1983

      13 Sun, W., "Small heat shock proteins and stress tolerance in plants" 1577 : 1-9, 2002

      14 Schwender, J., "Rubisco without the Calvin cycle improves the carbon efficiency of developing green seeds" 432 : 779-782, 2004

      15 Georgopoulos, C., "Role of the major heat shock proteins as molecular chaperones" 9 : 601-634, 1993

      16 Wang, W, "Role of plant heat-shock proteins and molecular chaperones in the abiotic stress response" 9 : 244-252, 2004

      17 He, D., "Proteomics of rice seed germination" 4 : 2013

      18 Gallardo, K., "Proteomics of Medicago truncatula seed development establishes the time frame of diverse metabolic processes related to reserve accumulation" 133 : 664-682, 2003

      19 Fan, W., "Proteomics analysis of rice seedling responses to ovine saliva" 168 : 500-509, 2011

      20 Kottapalli, K. R., "Proteomics analysis of mature seed of four peanut cultivars using two-dimensional gel electrophoresis reveals distinct differential expression of storage, anti-nutritional, and allergenic proteins" 175 : 321-329, 2008

      21 Abu Hena Mostafa Kamal, "Proteomics Analysis of Embryo and Endosperm from Mature Common Buckwheat Seeds" 한국식물학회 54 (54): 81-91, 2011

      22 Sahnoun‐Abid, I., "Proteomic characterisation of subclover seed storage proteins during germination" 89 : 1787-1801, 2009

      23 Majoul, T., "Proteomic analysis of the effect of heat stress on hexaploid wheat grain: Characterization of heat‐responsive proteins from total endosperm" 3 : 175-183, 2003

      24 Sano, N., "Proteomic analysis of stress-related proteins in rice seeds during the desiccation phase of grain filling" 30 : 147-156, 2013

      25 Hajduch, M., "Proteomic analysis of seed filling in Brassica napus. Developmental characterization of metabolic isozymes using high-resolution two-dimensional gel electrophoresis" 141 : 32-46, 2006

      26 Veeranagamallaiah, G., "Proteomic analysis of salt stress responses in foxtail millet (Setaria italica L. cv. Prasad) seedlings" 175 : 631-641, 2008

      27 Chi, F., "Proteomic analysis of rice seedlings infected by Sinorhizobium meliloti 1021" 10 : 1861-1874, 2010

      28 Yang, M. F., "Proteomic analysis of oil mobilization in seed germination and postgermination development of Jatropha curcas" 8 : 1441-1451, 2009

      29 Yang, P., "Proteomic analysis of de‐etiolated rice seedlings upon exposure to light" 7 : 2459-2468, 2007

      30 Gallardo, K., "Proteomic analysis of Arabidopsis seed germination and priming" 126 : 835-848, 2001

      31 Sung Cheol Koo, "Proteomic Analysis of Seed Storage Proteins in Low Allergenic Soybean Accession" 한국응용생명화학회 54 (54): 332-339, 2011

      32 Jha, B., "Proteome profiling of seed storage proteins reveals the nutritional potential of Salicornia brachiata Roxb., an extreme halophyte" 60 : 4320-4326, 2012

      33 Islam, N., "Proteome approaches to characterize seed storage proteins related to ditelocentric chromosomes in common wheat (Triticum aestivum L.)" 2 : 1146-1155, 2002

      34 Chitteti, B. R., "Proteome and phosphoproteome differential expression under salinity stress in rice (Oryza sativa) roots" 6 : 1718-1727, 2007

      35 Yang, P., "Proteome analysis of rice uppermost internodes at the milky stage" 6 : 3330-3338, 2006

      36 Herman, E. M., "Protein storage bodies and vacuoles" 11 : 601-613, 1999

      37 Ogé, L., "Protein repair L-isoaspartyl methyltransferase1 is involved in both seed longevity and germination vigor in Arabidopsis" 20 : 3022-3037, 2008

      38 Helm, J. L., "Proso millet in North Dakota"

      39 Marlett, J. A., "Position of the American Dietetic Association: health implications of dietary fiber" 102 : 993-1000, 2002

      40 Mal, B., "Minor millets in South Asia : learnings from IFAD-NUS Project in India and Nepal. Bioversity International, Maccarese, Rome, Italy and the MS Swaminathan Research Foundation, Chennai, India"

      41 Saleh, A. S., "Millet grains:Nutritional quality, processing, and potential health benefits" 12 : 281-295, 2013

      42 Yang, Q., "Identification of aluminum‐responsive proteins in rice roots by a proteomic approach: Cysteine synthase as a key player in Al response" 7 : 737-749, 2007

      43 Foley, R. C., "Identification and characterisation of seed storage protein transcripts from Lupinus angustifolius" 11 : 1-, 2011

      44 O'Farrell, P. H., "High resolution two-dimensional electrophoresis of proteins" 250 : 4007-4021, 1975

      45 Guo, S., "Heat shock protein 70 regulates cellular redox status by modulating glutathione-related enzyme activities" 12 : 45-254, 2007

      46 Smidansky, E. D., "Expression of a modified ADP-glucose pyrophosphorylase large subunit in wheat seeds stimulates photosynthesis and carbon metabolism" 225 : 965-976, 2007

      47 Baltensperger, D., "EC95-137 Producing and Marketing Proso Millet in the High Plains"

      48 Bourgeois, M., "Dissecting the proteome of pea mature seeds reveals the phenotypic plasticity of seed protein composition" 9 : 254-271, 2009

      49 Xu, C., "Differential proteomic responses to water stress induced by PEG in two creeping bentgrass cultivars differing in stress tolerance" 167 : 1477-1485, 2010

      50 Gallo, G., "Differential proteomic analysis highlights metabolic strategies associated with balhimycin production in Amycolatopsis balhimycina chemostat cultivations" 9 : 1-, 2010

      51 Pereira, M. A., "Dietary fiber and risk of coronary heart disease: a pooled analysis of cohort studies" 164 : 370-376, 2004

      52 Rajput, S. G., "Development and utilization of genomic resources for genetic improvement of proso millet (Panicum miliaceum L.)" ETD collection for University of Nebraska-Lincoln 2015

      53 He, D., "Constructing the metabolic and regulatory pathways in germinating rice seeds through proteomic approach" 11 : 2693-2713, 2011

      54 Islam, S., "Comparative proteome analysis of seed storage and allergenic proteins among four narrow-leafed lupin cultivars" 135 : 1230-1238, 2012

      55 Brown, L., "Cholesterol-lowering effects of dietary fiber: a meta-analysis" 69 : 30-42, 1999

      56 Finnie, C., "Aspects of the barley seed proteome during development and germination" 32 : 517-519, 2004

      57 Bouvier F., "Arabidopsis SAMT1 defines a plastid transporter regulating plastid biogenesis and plant development" 18 : 3088-3105, 2006

      58 Han, C., "Analysis of proteome profile in germinating soybean seed, and its comparison with rice showing the styles of reserves mobilization in different crops" 8 : e56947-, 2013

      59 Bradford, M. M., "A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding" 72 : 248-254, 1976

      60 Ding, C., "A proteomic approach to analyze nitrogen-and cytokinin-responsive proteins in rice roots" 39 : 1617-1626, 2012

      61 Li, W., "A proteomic analysis of seed development in Brassica campestri L" 7 : e50290-, 2012

      62 Torabi, S., "A comparative proteome approach to decipher the mechanism of rice adaptation to phosphorous deficiency" 9 : 159-170, 2009

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