Title : Overexpression of mutated forms of aspartate kinase and cystathionine gamma-synthase in tobacco leaves resulted in the high accumulation of methionine and threonine.

Pub. Date : 2008 Apr

PMID : 18208521






5 Functional Relationships(s)
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1 Plants co-expressing bAK and the full-length AtCGS (F-AtCGS) have significantly higher methionine and threonine levels compared with the levels found in wild-type plants, but the methionine level does not increase beyond that found in plants expressing F-AtCGS alone. Threonine Pyridoxal phosphate (PLP)-dependent transferases superfamily protein Arabidopsis thaliana
2 The transcript level of the two mutated forms of AtCGS significantly increased when there was a high content of threonine in the plants, suggesting that threonine modulates, probably indirectly, the transcript level of AtCGS. Threonine Pyridoxal phosphate (PLP)-dependent transferases superfamily protein Arabidopsis thaliana
3 The transcript level of the two mutated forms of AtCGS significantly increased when there was a high content of threonine in the plants, suggesting that threonine modulates, probably indirectly, the transcript level of AtCGS. Threonine Pyridoxal phosphate (PLP)-dependent transferases superfamily protein Arabidopsis thaliana
4 The transcript level of the two mutated forms of AtCGS significantly increased when there was a high content of threonine in the plants, suggesting that threonine modulates, probably indirectly, the transcript level of AtCGS. Threonine Pyridoxal phosphate (PLP)-dependent transferases superfamily protein Arabidopsis thaliana
5 The transcript level of the two mutated forms of AtCGS significantly increased when there was a high content of threonine in the plants, suggesting that threonine modulates, probably indirectly, the transcript level of AtCGS. Threonine Pyridoxal phosphate (PLP)-dependent transferases superfamily protein Arabidopsis thaliana