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1.
Plant Cell ; 22(11): 3603-20, 2010 Nov.
Article in English | MEDLINE | ID: mdl-21075769

ABSTRACT

Seed development and nitrogen (N) storage depend on delivery of amino acids to seed sinks. For efficient translocation to seeds, amino acids are loaded into the phloem in source leaves and along the long distance transport pathway through xylem-phloem transfer. We demonstrate that Arabidopsis thaliana AMINO ACID PERMEASE2 (AAP2) localizes to the phloem throughout the plant. AAP2 T-DNA insertion lines showed changes in source-sink translocation of amino acids and a decrease in the amount of seed total N and storage proteins, supporting AAP2 function in phloem loading and amino acid distribution to the embryo. Interestingly, in aap2 seeds, total carbon (C) levels were unchanged, while fatty acid levels were elevated. Moreover, branch and silique numbers per plant and seed yield were strongly increased. This suggests changes in N and C delivery to sinks and subsequent modulations of sink development and seed metabolism. This is supported by tracer experiments, expression studies of genes of N/C transport and metabolism in source and sink, and by phenotypic and metabolite analyses of aap2 plants. Thus, AAP2 is key for xylem to phloem transfer and sink N and C supply; moreover, modifications of N allocation can positively affect C assimilation and source-sink transport and benefit sink development and oil yield.


Subject(s)
Amino Acids/metabolism , Arabidopsis/chemistry , Arabidopsis/metabolism , Phloem/metabolism , Plant Oils , Seeds , Xylem/metabolism , Amino Acid Transport Systems, Acidic/genetics , Amino Acid Transport Systems, Acidic/metabolism , Arabidopsis/cytology , Arabidopsis/genetics , Arabidopsis Proteins/genetics , Arabidopsis Proteins/metabolism , Biological Transport , Carbon/metabolism , DNA, Bacterial/genetics , DNA, Bacterial/metabolism , Nitrogen/metabolism , Onions/cytology , Onions/genetics , Onions/metabolism , Plant Leaves/chemistry , Plant Leaves/cytology , Plant Leaves/metabolism , Plant Oils/chemistry , Plant Oils/metabolism , Plants, Genetically Modified/chemistry , Plants, Genetically Modified/cytology , Plants, Genetically Modified/genetics , Plants, Genetically Modified/metabolism , Recombinant Fusion Proteins/genetics , Recombinant Fusion Proteins/metabolism , Seeds/chemistry , Seeds/metabolism
2.
Plant J ; 59(4): 540-52, 2009 Aug.
Article in English | MEDLINE | ID: mdl-19392706

ABSTRACT

The embryo of Arabidopsis seeds is symplasmically isolated from the surrounding seed coat and endosperm, and uptake of nutrients from the seed apoplast is required for embryo growth and storage reserve accumulation. With the aim of understanding the importance of nitrogen (N) uptake into developing embryos, we analysed two mutants of AAP1 (At1g58360), an amino acid transporter that was localized to Arabidopsis embryos. In mature and desiccated aap1 seeds the total N and carbon content was reduced while the total free amino acid levels were strongly increased. Separately analysed embryos and seed coats/endosperm of mature seeds showed that the elevated amounts in amino acids were caused by an accumulation in the seed coat/endosperm, demonstrating that a decrease in uptake of amino acids by the aap1 embryo affects the N pool in the seed coat/endosperm. Also, the number of protein bodies was increased in the aap1 endosperm, suggesting that the accumulation of free amino acids triggered protein synthesis. Analysis of seed storage compounds revealed that the total fatty acid content was unchanged in aap1 seeds, but storage protein levels were decreased. Expression analysis of genes of seed N transport, metabolism and storage was in agreement with the biochemical data. In addition, seed weight, as well as total silique and seed number, was reduced in the mutants. Together, these results demonstrate that seed protein synthesis and seed weight is dependent on N availability and that AAP1-mediated uptake of amino acids by the embryo is important for storage protein synthesis and seed yield.


Subject(s)
Amino Acid Transport Systems, Neutral/metabolism , Amino Acids/metabolism , Arabidopsis Proteins/metabolism , Arabidopsis/embryology , Amino Acid Transport Systems, Neutral/genetics , Amino Acids/analysis , Arabidopsis/genetics , Arabidopsis Proteins/genetics , Carbon/analysis , Nitrogen/analysis , RNA, Messenger/metabolism , RNA, Plant/genetics , Seeds/genetics , Seeds/growth & development
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