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Strong Increase of Foliar Inulin Occurs in Transgenic Lettuce Plants (Lactuca sativa L.) Overexpressing the Asparagine Synthetase A Gene from Escherichia coli
- Source :
- Journal of agricultural and food chemistry 55 (2007): 10827–10831. doi:10.1021/jf072437x, info:cnr-pdr/source/autori:Anatoli P. Sobolev (1); Anna L. Segre (1);, Donato Giannino (2); Domenico Mariotti (2); Chiara Nicolodi (2); Elvino Brosio (3); Maria E. Amato (4)/titolo:Strong Increase of Foliar Inulin Occurs in Transgenic Lettuce Plants (Lactuca sativa L.) Overexpressing the Asparagine Synthetase A Gene from Escherichia coli/doi:10.1021%2Fjf072437x/rivista:Journal of agricultural and food chemistry/anno:2007/pagina_da:10827/pagina_a:10831/intervallo_pagine:10827–10831/volume:55, info:cnr-pdr/source/autori:Sobolev A. P., Segre A.L ., Giannino D., Mariotti D., Nicolodi C., Brosio E., Amato M.E./titolo:Strong increase of foliar inulin occurs in transgenic lettuce plants (Lactuca sativa L.) overexpressing the Asparagine Synthetase A gene from Escherichia coli/doi:10.1021%2Fjf072437x/rivista:Journal of agricultural and food chemistry/anno:2007/pagina_da:10827/pagina_a:10831/intervallo_pagine:10827–10831/volume:55
- Publication Year :
- 2007
- Publisher :
- American Chemical Society, Books and Journals Division], [Easton, Pa., Stati Uniti d'America, 2007.
-
Abstract
- Transgenic lettuce (Lactuca sativa L. cv. 'Cortina') lines expressing the asparagine synthetase A gene from Escherichia coli were produced to alter the plant nitrogen status and eventually enhance growth. The relative molecular abundance of water-soluble metabolites was measured by H-1 NMR in transgenic and conventional plants at early developmental stages and grown under the same conditions. NMR metabolic profiles assessed that a transgenic, line and the wild-type counterpart shared the same compounds, but it also revealed side effects on the carbon metabolism following genetic modification. Concerning the nitrogen status, the amino acid content did not vary significantly, except for glutamic acid and gamma-aminobutyric acid, which diminished in the transgenics. As for the carbon metabolism, in transgenic leaves the contents of sucrose, glucose, and fructose decreased, whereas that of inulin increased up to 30 times, accompanied by the alteration of most Krebs's cycle organic acids and the rise of tartaric acid compared to nontransformed controls. Lettuce leaf inulins consisted of short oligomeric chains made of one glucose unit bound to two/four fructose units. Inulins are beneficial for human health, and they are extracted from plants and commercialized as long-chain types, whereas the short forms are synthesized chemically. Hence, lettuce genotypes with high content of foliar short-chain inulin represent useful materials for breeding strategies and a potential source for low molecular weight inulin.
- Subjects :
- Sucrose
Magnetic Resonance Spectroscopy
lattuga
Foliar Inulin
Transgene
Inulin
Asparagine synthetase
Lactuca
short-chain oligofructans
chemistry.chemical_compound
Lettuce Plants
Overexpressing
Escherichia coli
Asparagine
transgenic
metabolomica
biology
OGM
Fructose
Aspartate-Ammonia Ligase
General Chemistry
Glutamic acid
Lettuce
biology.organism_classification
Plants, Genetically Modified
NMR
inulina
Plant Leaves
foliar inulin
lettuce
metabolite profiling
nmr
chemistry
Biochemistry
General Agricultural and Biological Sciences
Subjects
Details
- Database :
- OpenAIRE
- Journal :
- Journal of agricultural and food chemistry 55 (2007): 10827–10831. doi:10.1021/jf072437x, info:cnr-pdr/source/autori:Anatoli P. Sobolev (1); Anna L. Segre (1);, Donato Giannino (2); Domenico Mariotti (2); Chiara Nicolodi (2); Elvino Brosio (3); Maria E. Amato (4)/titolo:Strong Increase of Foliar Inulin Occurs in Transgenic Lettuce Plants (Lactuca sativa L.) Overexpressing the Asparagine Synthetase A Gene from Escherichia coli/doi:10.1021%2Fjf072437x/rivista:Journal of agricultural and food chemistry/anno:2007/pagina_da:10827/pagina_a:10831/intervallo_pagine:10827–10831/volume:55, info:cnr-pdr/source/autori:Sobolev A. P., Segre A.L ., Giannino D., Mariotti D., Nicolodi C., Brosio E., Amato M.E./titolo:Strong increase of foliar inulin occurs in transgenic lettuce plants (Lactuca sativa L.) overexpressing the Asparagine Synthetase A gene from Escherichia coli/doi:10.1021%2Fjf072437x/rivista:Journal of agricultural and food chemistry/anno:2007/pagina_da:10827/pagina_a:10831/intervallo_pagine:10827–10831/volume:55
- Accession number :
- edsair.doi.dedup.....843954bd6efbc43ff5cb9b84bbc7891f
- Full Text :
- https://doi.org/10.1021/jf072437x