The phosphorylated pathway of serine biosynthesis links plant growth with nitrogen metabolism

被引:34
作者
Zimmermann, Sandra E. [1 ]
Benstein, Ruben M. [1 ,2 ]
Flores-Tornero, Maria [3 ,4 ]
Blau, Samira [1 ]
Anoman, Armand D. [3 ,4 ]
Rosa-Tellez, Sara [3 ,4 ]
Gerlich, Silke C. [1 ,5 ]
Salem, Mohamed A. [6 ,7 ]
Alseekh, Saleh [6 ,8 ]
Kopriva, Stanislav [1 ,5 ]
Wewer, Vera [1 ,5 ]
Fluegge, Ulf-Ingo [1 ,5 ]
Jacoby, Richard P. [1 ,5 ]
Fernie, Alisdair R. [6 ,8 ]
Giavalisco, Patrick [6 ,9 ]
Ros, Roc [3 ,4 ]
Krueger, Stephan [1 ]
机构
[1] Univ Cologne, Inst Plant Sci, D-50674 Cologne, Germany
[2] Umea Univ, Umea Plant Sci Ctr, Dept Plant Physiol, SE-90187 Umea, Sweden
[3] Univ Valencia, Fac Farm, Dept Biol Vegetal, Valencia, Spain
[4] Univ Valencia, Estruct Recerca Interdisciplinar Biotecnol & Biom, Burjassot 46100, Spain
[5] Univ Cologne, Cluster Excellence Plant Sci CEPLAS, D-50674 Cologne, Germany
[6] Max Planck Inst Mol Plant Physiol, D-14476 Potsdam, Germany
[7] Cairo Univ, Fac Pharm, Dept Pharmacognosy, Cairo 11562, Egypt
[8] Ctr Plant Syst Biol & Biotechnol, Plovdiv 4000, Bulgaria
[9] Max Planck Inst Biol Ageing, D-50933 Cologne, Germany
关键词
GLUTAMINE-SYNTHETASE GLN1/2; ONE-CARBON METABOLISM; ARABIDOPSIS-THALIANA; GAS-CHROMATOGRAPHY; DEHYDROGENASE; AMMONIUM; ACID; 3-PHOSPHOGLYCERATE; EXPRESSION; GLYCINE;
D O I
10.1093/plphys/kiab167
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Because it is the precursor for various essential cellular components, the amino acid serine is indispensable for every living organism. In plants, serine is synthesized by two major pathways: photorespiration and the phosphorylated pathway of serine biosynthesis (PPSB). However, the importance of these pathways in providing serine for plant development is not fully understood. In this study, we examine the relative contributions of photorespiration and PPSB to providing serine for growth and metabolism in the C3 model plant Arabidopsis thaliana. Our analyses of cell proliferation and elongation reveal that PPSB-derived serine is indispensable for plant growth and its loss cannot be compensated by photorespiratory serine biosynthesis. Using isotope labeling, we show that PPSB-deficiency impairs the synthesis of proteins and purine nucleotides in plants. Furthermore, deficiency in PPSB-mediated serine biosynthesis leads to a strong accumulation of metabolites related to nitrogen metabolism. This result corroborates N-15-isotope labeling in which we observed an increased enrichment in labeled amino acids in PPSB-deficient plants. Expression studies indicate that elevated ammonium uptake and higher glutamine synthetase/glutamine oxoglutarate aminotransferase (GS/GOGAT) activity causes this phenotype. Metabolic analyses further show that elevated nitrogen assimilation and reduced amino acid turnover into proteins and nucleotides are the most likely driving forces for changes in respiratory metabolism and amino acid catabolism in PPSB-deficient plants. Accordingly, we conclude that even though photorespiration generates high amounts of serine in plants, PPSB-derived serine is more important for plant growth and its deficiency triggers the induction of nitrogen assimilation, most likely as an amino acid starvation response.
引用
收藏
页码:1487 / 1506
页数:20
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