SUCROSE TRANSPORTER 5 supplies Arabidopsis embryos with biotin and affects triacylglycerol accumulation

Author:

Pommerrenig Benjamin1,Popko Jennifer2,Heilmann Mareike2,Schulmeister Sylwia1,Dietel Katharina1,Schmitt Bianca1,Stadler Ruth1,Feussner Ivo2,Sauer Norbert1

Affiliation:

1. Molekulare Pflanzenphysiologie; Friedrich-Alexander Universität Erlangen-Nürnberg; Staudtstraße 5; D-91058; Erlangen; Germany

2. Abteilung Biochemie der Pflanze; Albrecht von Haller Institut für Pflanzenwissenschaften; Georg August Universität; Justus von Liebig Weg 11; D-37077; Göttingen; Germany

Publisher

Wiley

Subject

Cell Biology,Plant Science,Genetics

Reference44 articles.

1. Transient transformation of Arabidopsis leaf protoplasts: a versatile experimental system to study gene expression;Abel;Plant J.,1994

2. Biotin synthesis in higher plants: isolation of a cDNA encoding Arabidopsis thaliana bioB-gene product equivalent by functional complementation of a biotin auxotroph mutant bioB105 of Escherichia coli K12;Baldet;C. R. Acad. Sci. III,1996

3. An integrated overview of seed development in Arabidopsis thaliana ecotype WS;Baud;Plant Physiol. Biochem.,2002

4. The sucrose transporter AtSUC5 specifically expressed in the endosperm is involved in early seed development in Arabidopsis;Baud;Plant J.,2005

5. WRINKLED1 specifies the regulatory action of LEAFY COTYLEDON2 towards fatty acid metabolism during seed maturation in Arabidopsis;Baud;Plant J.,2007

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