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      <dc:title>Arginine biosynthesis and utilization in maritime pine</dc:title>
      <dc:creator>Llebrés, María Teresa</dc:creator>
      <dc:creator>Pascual-Moreno, María Belén</dc:creator>
      <dc:creator>Debille, Sandrine</dc:creator>
      <dc:creator>Trontin, JF</dc:creator>
      <dc:creator>Harvengt, Luc</dc:creator>
      <dc:creator>Ávila-Sáez, Concepción</dc:creator>
      <dc:creator>Cánovas-Ramos, Francisco Miguel</dc:creator>
      <dc:subject>Biología molecular vegetal</dc:subject>
      <dc:description>Vegetative propagation through somatic embryogenesis in combination with the cryopreservation&#xd;
of embryogenic lines is a major tool in conifer biotechnology. An important process during the&#xd;
maturation phase of embryogenesis is the biosynthesis and deposition of storage proteins. The&#xd;
accumulation of some abundant storage proteins in maturing cotyledonary somatic embryos (SE)&#xd;
is much lower than in mature zygotic embryos (ZE) showing an important influence of storage&#xd;
compounds on the quality of SE. Arginine constitutes a large portion of the amino acid pool in&#xd;
storage proteins of conifers and therefore arginine biosynthesis and utiization is a relevant&#xd;
metabolic pathway during pine embryogenesis and early growth.&#xd;
Research in our laboratory is focused on maritime pine (Pinus pinaster Ait.), a broadly planted&#xd;
conifer species in France, Spain and Portugal where it is distributed over approximately 4 million&#xd;
hectares. This conifer species is also one of the most advanced model trees for genetic and&#xd;
phenotypic studies and a large number of molecular and transcriptomic resources are currently&#xd;
available.&#xd;
With the aim to understand the molecular basis of the differential accumulation of storage proteins&#xd;
in SE and ZE, the arginine metabolic pathway has been studied in maritime pine, in collaboration&#xd;
with the French private institute FCBA. A general overview of this research programme will be&#xd;
presented and discussed. The knowledge acquired from our studies will help to refine&#xd;
biotechnological procedures for clonal propagation of conifers via somatic embryogenesis.&#xd;
Funding support by:The Spanish Ministerio de Economía y Competitividad (BIO2015-69285-R)&#xd;
and Junta de Andalucía (BIO-474). And the French Ministry of Agriculture (DGAL, N°2014-352,&#xd;
QuaSeGraine project). The project also benefited from the technical support of the&#xd;
XYLOBIOTECH facility (ANR-10-EQPX-16 XYLOFOREST).</dc:description>
      <dc:date>2017-10-30T13:49:45Z</dc:date>
      <dc:date>2017-10-30T13:49:45Z</dc:date>
      <dc:date>2017</dc:date>
      <dc:date>2017-10-30</dc:date>
      <dc:type>conference output</dc:type>
      <dc:identifier>http://hdl.handle.net/10630/14736</dc:identifier>
      <dc:language>eng</dc:language>
      <dc:relation>FEBS3+</dc:relation>
      <dc:relation>Barcelona (Spain)</dc:relation>
      <dc:relation>23 Octubre 2017</dc:relation>
      <dc:rights>open access</dc:rights>
      <dc:rights>by-nc-nd</dc:rights>
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