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Storage lipids and proteins of Euterpe edulis seeds
Panza, Victor; Pighin, Dario; Láinez, Verónica; Pollero, Ricardo J; Maldonado, Sara.
Affiliation
  • Panza, Victor; INTA. Instituto de Recursos Biológicos CIRN. Buenos Aires. Argentina
  • Pighin, Dario; INTA. Instituto de Tecnología de los Alimentos. Morón. Argentina
  • Láinez, Verónica; Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales. Departamento de Biodiversidad y Biología Experimental. Buenos Aires. Argentina
  • Pollero, Ricardo J; CONICET-UNLP. Instituto de Investigaciones Bioquímicas de La Plata. La Plata. Argentina
  • Maldonado, Sara; INTA. Instituto de Recursos Biológicos CIRN. Buenos Aires. Argentina
Biocell ; 33(2): 99-106, Aug. 2009. ius, tab, graf
Article in English | BINACIS | ID: bin-127209
Responsible library: AR40.1
ABSTRACT
Comparative studies on fatty acid and protein composition of the endosperm and embryo of palmito (Euterpe edulis Martius) were conducted using gas-liquid chromatography and sodium dodecyl sulfate-polyacrylamide gel electrophoresis. On a dry weight basis, the embryo contained extremely lower amounts of lipids and proteins than did the endosperm, which was associated with the scarce lipid and protein bodies previously reported in axis and cotyledon. The fatty acid composition also exhibited differences between both tissues (I) the fatty acid diversity was greater in embryo than in endosperm; (II) embryo and endosperm contained predominantly linoleic, palmitic, oleic and stearic acids even though the relative values were different for each tissue. As compared to other palm species, the higher fatty acid unsaturation in Euterpe edulis seed could be involved in the previously reported short longevity and recalcitrant behavior during storage. Proteins of both tissues were heterogeneous in molecular mass. Some proteins were tissue-specific, but other were common, among them a highly glycosylated protein which migrated at about 55 kDa. We hypothesize that the latter, also reported in all previously studied palm species, is one of the proteins characterizing the Arecaceae family.(AU)
Subject(s)
Full text: Available Collection: National databases / Argentina Database: BINACIS Main subject: Plant Proteins / Seeds / Arecaceae / Fatty Acids / Fruit Language: English Journal: Biocell Year: 2009 Document type: Article Institution/Affiliation country: CONICET-UNLP/Argentina / INTA/Argentina / Universidad de Buenos Aires/Argentina
Full text: Available Collection: National databases / Argentina Database: BINACIS Main subject: Plant Proteins / Seeds / Arecaceae / Fatty Acids / Fruit Language: English Journal: Biocell Year: 2009 Document type: Article Institution/Affiliation country: CONICET-UNLP/Argentina / INTA/Argentina / Universidad de Buenos Aires/Argentina
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