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Developmental regulation of photosynthate distribution in leaves of rice
SHINANO, TAKURO
NAKAJIMA, KANTO
WASAKI, JUN
MORI, HARUHIDE
ZHENG, TEI
OSAKI, MITSURU
??, ??
Location: http://hdl.handle.net/2115/946
Photosynthetica. 44(1), 2006, 1-10
http://dx.doi.org/10.1007/s11099-005-0151-6

mRNA expression patterns of genes for metabolic key enzymes sucrose phosphate synthase (SPS), phosphoenolpyruvate carboxylase (PEPC), pyruvate kinase, ribulose 1,5-bisphosphate carboxylase/oxygenase, glutamine synthetase 1, and glutamine synthetase 2 were investigated in leaves of rice plants grown at two nitrogen (N) supplies (N0.5, N3.0). The relative gene expression patterns were similar in all leaves except for 9th leaf, in which mRNA levels were generally depressed. Though increased N supply prolonged the expression period of each mRNA, it did not affect the relative expression intensity of any mRNA in a given leaf. SPS Vmax, SPS limiting and PEPC activities, and carbon flow were examined. The ratio between PEPC activity and SPS Vmax was higher in leaves developed at the vegetative growth stage (vegetative leaves: 5th and 7th leaves) than in leaves developed after the ear primordia formation stage (reproductive leaves: 9th and flag leaves). PEPC activity and SPS Vmax decreased with declining leaf N content. After using 14CO2 the 14C photosynthate distribution in the amino acid fraction was higher in vegetative than in reproductive leaves when compared for the same leaf N status. Thus, at high PEPC/SPS activities ratio, more 14C photosynthate was distributed to the amino acid pool, whereas at higher SPS activity more 14C was channelled into the saccharide fraction. Thus, leaf ontogeny was an important factor controlling photosynthate distribution to the N- or C-pool, respectively, regardless of the leaf N status.

Belongs to: Hokkaido University Collection of Scholarly and Academic Papers

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Developmental regulation of photosynthate distribution in leaves of rice
Id. 5707472
Idioma inglés
Titulo Developmental regulation of photosynthate distribution in leaves of rice
Autor(es) SHINANO, TAKURO
NAKAJIMA, KANTO
WASAKI, JUN
MORI, HARUHIDE
ZHENG, TEI
OSAKI, MITSURU
??, ??
Location http://hdl.handle.net/2115/946
Photosynthetica. 44(1), 2006, 1-10
http://dx.doi.org/10.1007/s11099-005-0151-6
Versión 1.0
Estado Final
Descripción mRNA expression patterns of genes for metabolic key enzymes sucrose phosphate synthase (SPS), phosphoenolpyruvate carboxylase (PEPC), pyruvate kinase, ribulose 1,5-bisphosphate carboxylase/oxygenase, glutamine synthetase 1, and glutamine synthetase 2 were investigated in leaves of rice plants grown at two nitrogen (N) supplies (N0.5, N3.0). The relative gene expression patterns were similar in all leaves except for 9th leaf, in which mRNA levels were generally depressed. Though increased N supply prolonged the expression period of each mRNA, it did not affect the relative expression intensity of any mRNA in a given leaf. SPS Vmax, SPS limiting and PEPC activities, and carbon flow were examined. The ratio between PEPC activity and SPS Vmax was higher in leaves developed at the vegetative growth stage (vegetative leaves: 5th and 7th leaves) than in leaves developed after the ear primordia formation stage (reproductive leaves: 9th and flag leaves). PEPC activity and SPS Vmax decreased with declining leaf N content. After using 14CO2 the 14C photosynthate distribution in the amino acid fraction was higher in vegetative than in reproductive leaves when compared for the same leaf N status. Thus, at high PEPC/SPS activities ratio, more 14C photosynthate was distributed to the amino acid pool, whereas at higher SPS activity more 14C was channelled into the saccharide fraction. Thus, leaf ontogeny was an important factor controlling photosynthate distribution to the N- or C-pool, respectively, regardless of the leaf N status.
Tipo 921268 bytes
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Palabras clave glutamine synthetases
Tipo de recurso article (author version)
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The original publication is available at www.springerlink.com
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Fecha de contribución 25-oct-2007
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