<?xml version="1.0" encoding="UTF-8"?><?xml-stylesheet type="text/xsl" href="static/style.xsl"?><OAI-PMH xmlns="http://www.openarchives.org/OAI/2.0/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.openarchives.org/OAI/2.0/ http://www.openarchives.org/OAI/2.0/OAI-PMH.xsd"><responseDate>2026-06-01T09:22:30Z</responseDate><request verb="GetRecord" identifier="oai:riuma.uma.es:10630/11934" metadataPrefix="marc">https://riuma.uma.es/rest/oai/request</request><GetRecord><record><header><identifier>oai:riuma.uma.es:10630/11934</identifier><datestamp>2026-02-03T12:08:24Z</datestamp><setSpec>com_10630_2254</setSpec><setSpec>col_10630_37959</setSpec></header><metadata><record xmlns="http://www.loc.gov/MARC21/slim" xmlns:dcterms="http://purl.org/dc/terms/" xmlns:doc="http://www.lyncode.com/xoai" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.loc.gov/MARC21/slim http://www.loc.gov/standards/marcxml/schema/MARC21slim.xsd">
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      <subfield code="a">El-Azaz-Ciudad, Jorge</subfield>
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      <subfield code="a">De-la-Torre-Fazio, Fernando Nicolás</subfield>
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      <subfield code="a">Pascual-Moreno, María Belén</subfield>
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      <subfield code="a">Ávila-Sáez, Concepción</subfield>
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      <subfield code="a">Cánovas-Ramos, Francisco Miguel</subfield>
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      <subfield code="c">2016-09-02</subfield>
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      <subfield code="a">METABOLIC CHANNELING OF PHE FOR LIGNIN&#xd;
BIOSYNTHESIS IN MARITIME PINE&#xd;
Jorge El-Azaz, Fernando de la Torre, Belén Pascual,&#xd;
Concepción Ávila and Francisco M. Cánovas&#xd;
Departamento de Biología Molecular y Bioquímica, Universidad de Málaga.&#xd;
Málaga, Spain&#xd;
Email: jelazaz@alu.uma.es&#xd;
The amino acid phenylalanine (Phe) is the main precursor of&#xd;
phenylpropanoids biosynthesis in plants. This vast family of Phederived&#xd;
compounds can represent up to 30% of captured&#xd;
photosynthetic carbon, playing essential roles in plants such as cell&#xd;
wall components, defense molecules, pigments and flavors. In&#xd;
addition to its physiological importance, phenylpropanoids and&#xd;
particularly lignin, a component of wood, are targets in plant&#xd;
biotechnology.&#xd;
The arogenate pathway has been proposed as the main pathway for&#xd;
Phe biosynthesis in plants (Maeda et al., 2010). The final step in Phe&#xd;
biosynthesis, catalyzed by the enzyme arogenate dehydratase (ADT),&#xd;
has been considered as a key regulatory point in Phe biosynthesis,&#xd;
due to its key branch position in the pathway, the multiple&#xd;
isoenzymes identified in plants and the existence of a feedback&#xd;
inhibition mechanism by Phe. So far, the regulatory mechanisms&#xd;
underlying ADT genes expression have been poorly characterized,&#xd;
although a strong regulation of the Phe metabolic flux should be&#xd;
expected depending on its alternative use for protein biosynthesis&#xd;
versus phenylpropanoid biosynthesis. This second fate involves a&#xd;
massive carbon flux compared to the first one.&#xd;
In this study we report our current research activities in the&#xd;
transcriptional regulation of ADT genes by MYB transcription factors&#xd;
in the conifer Pinus pinaster (maritime pine). The conifers channels&#xd;
massive amounts of photosynthetic carbon for phenylpropanoid&#xd;
biosynthesis during wood formation. We have identified the&#xd;
complete ADT gene family in maritime pine (El-Azaz et al., 2016)&#xd;
and a set of ADT isoforms specifically related with the lignification&#xd;
process. The potential control of transcription factors previously&#xd;
reported as key regulators in pine wood formation (Craven-Bartle et&#xd;
al., 2013) will be presented.&#xd;
Maeda et al. (2010) Plant Cell 22: 832-849.&#xd;
El-Azaz et al. (2016) The Plant Jounal. Accepted article, doi:&#xd;
10.1111/tpj.13195&#xd;
Craven-Bartle et al. (2013). The Plant Journal 74(5):755-766</subfield>
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      <subfield code="a">Coníferas - Congresos</subfield>
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      <subfield code="a">Metabolic channelingof phe for lignin biosynthesis in maritime pine</subfield>
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