AbstractThe mechanism behind enhanced salt tolerance conferred by the overexpression of glyoxalase pathway enzymes was studied in transgenic vis-à-vis wild-type (WT) plants. We have recently documented that salinity stress induces higher level accumulation of methylglyoxal (MG), a potent cytotoxin and primary substrate for glyoxalase pathway, in various plant species [Yadav, S.K., Singla-Pareek, S.L., Ray, M., Reddy, M.K. and Sopory, S.K. (2005) MG levels in plants under salinity stress are dependent on glyoxalase I and glutathione. Biochem. Biophys. Res. Commun. 337, 61–67]. The transgenic tobacco plants overexpressing glyoxalase pathway enzymes, resist an increase in the level of MG that increased to over 70% in WT plants under salinity s...
AbstractMonodehydroascorbate reductase (MDHAR, EC 1.6.5.4) is a key enzyme of the ascorbate (AsA)-gl...
We investigated the long-term responses of tobacco tissues to salt stress, with a particular interes...
Synechocystis salt-responsive gene 1 (sysr1) was engineered for expression in higher plants, and gen...
AbstractThe mechanism behind enhanced salt tolerance conferred by the overexpression of glyoxalase p...
The mechanism behind enhanced salt tolerance conferred by the overexpression of glyoxalase pathway e...
The glyoxalase pathway involving glyoxalase I (gly I) and glyoxalase II (gly II) enzymes is required...
Methylglyoxal (MG), a cytotoxic by-product produced mainly from triose phosphates, is used as a subs...
We reported earlier that engineering of the glyoxalase pathway (a two-step reaction mediated through...
The involvement of glutathione transferases (GSTs) in plant’s tolerance to abiotic stresses has been...
Cytotoxic compounds like reactive carbonyl compounds such as methylglyoxal (MG), melandialdehyde (MD...
Monodehydroascorbate reductase (MDHAR, EC 1.6.5.4) is a key enzyme of the ascorbate (AsA)-glutathion...
The present investigation was carried out to study the distinct salt tolerance mechanism in two sets...
Glutathione S-transferases (GSTs) are multifunctional proteins and forms major part, of plant cellul...
Despite its ubiquitous presence, the role of glyoxalase I has not been well investigated in plants. ...
Being sessile organisms, plants are frequently exposed to various environmental stresses that cause ...
AbstractMonodehydroascorbate reductase (MDHAR, EC 1.6.5.4) is a key enzyme of the ascorbate (AsA)-gl...
We investigated the long-term responses of tobacco tissues to salt stress, with a particular interes...
Synechocystis salt-responsive gene 1 (sysr1) was engineered for expression in higher plants, and gen...
AbstractThe mechanism behind enhanced salt tolerance conferred by the overexpression of glyoxalase p...
The mechanism behind enhanced salt tolerance conferred by the overexpression of glyoxalase pathway e...
The glyoxalase pathway involving glyoxalase I (gly I) and glyoxalase II (gly II) enzymes is required...
Methylglyoxal (MG), a cytotoxic by-product produced mainly from triose phosphates, is used as a subs...
We reported earlier that engineering of the glyoxalase pathway (a two-step reaction mediated through...
The involvement of glutathione transferases (GSTs) in plant’s tolerance to abiotic stresses has been...
Cytotoxic compounds like reactive carbonyl compounds such as methylglyoxal (MG), melandialdehyde (MD...
Monodehydroascorbate reductase (MDHAR, EC 1.6.5.4) is a key enzyme of the ascorbate (AsA)-glutathion...
The present investigation was carried out to study the distinct salt tolerance mechanism in two sets...
Glutathione S-transferases (GSTs) are multifunctional proteins and forms major part, of plant cellul...
Despite its ubiquitous presence, the role of glyoxalase I has not been well investigated in plants. ...
Being sessile organisms, plants are frequently exposed to various environmental stresses that cause ...
AbstractMonodehydroascorbate reductase (MDHAR, EC 1.6.5.4) is a key enzyme of the ascorbate (AsA)-gl...
We investigated the long-term responses of tobacco tissues to salt stress, with a particular interes...
Synechocystis salt-responsive gene 1 (sysr1) was engineered for expression in higher plants, and gen...