about
Nitric oxide in guard cells as an important secondary messenger during stomatal closureBeneficial interactions of mitochondrial metabolism with photosynthetic carbon assimilation.Guard cell metabolism and CO2 sensing.ABA perception and signalling.Stimulation by abscisic acid of the activity of phosphoenolpyruvate carboxylase in leaf disks of Amaranthus hypochondriacus L., C4 plant: role of pH and protein levels.Pyrabactin, an ABA agonist, induced stomatal closure and changes in signalling components of guard cells in abaxial epidermis of Pisum sativum.Gum resin of Boswellia serrata inhibited human monocytic (THP-1) cell activation and platelet aggregation.Multiple strategies to prevent oxidative stress in Arabidopsis plants lacking the malate valve enzyme NADP-malate dehydrogenase.Interplay of light and temperature during the in planta modulation of C4 phosphoenolpyruvate carboxylase from the leaves of Amaranthus hypochondriacus L.: diurnal and seasonal effects manifested at molecular levels.Importance of AOX pathway in optimizing photosynthesis under high light stress: role of pyruvate and malate in activating AOX.Importance of ROS and antioxidant system during the beneficial interactions of mitochondrial metabolism with photosynthetic carbon assimilation.Induction of the AOX1D isoform of alternative oxidase in A. thaliana T-DNA insertion lines lacking isoform AOX1A is insufficient to optimize photosynthesis when treated with antimycin A.Dramatic difference in the responses of phosphoenolpyruvate carboxylase to temperature in leaves of C3 and C4 plants.Light activation of NADP malic enzyme in leaves of maize: marginal increase in activity, but marked change in regulatory properties of enzyme.Enhanced production of antimicrobial sesquiterpenes and lipoxygenase metabolites in elicitor-treated hairy root cultures of Solanum tuberosum.Marked modulation by phosphate of phosphoenolpyruvate carboxylase in leaves of Amaranthus hypochondriacus, a NAD-ME type C4 plant: decrease in malate sensitivity but no change in the phosphorylation status.Cytoplasmic alkalization precedes reactive oxygen species production during methyl jasmonate- and abscisic acid-induced stomatal closure.Marked changes in volume of mesophyll protoplasts of pea (Pisum sativum) on exposure to growth hormones.Molecular basis sets - a general similarity-based approach for representing chemical spaces.Nitric oxide production occurs downstream of reactive oxygen species in guard cells during stomatal closure induced by chitosan in abaxial epidermis of Pisum sativum.Nitric oxide production occurs after cytosolic alkalinization during stomatal closure induced by abscisic acid.Nitric Oxide (NO) Measurements in Stomatal Guard Cells.Evolution of C(4) phosphoenolpyruvate carboxylase in the genus Alternanthera: gene families and the enzymatic characteristics of the C(4) isozyme and its orthologues in C(3) and C(3)/C(4) Alternantheras.Modulation of phosphoenolpyruvate carboxylase in vivo by Ca2+ in Amaranthus hypochondriacus, a NAD-ME type C4 plant: possible involvement of Ca2+ in up-regulation of PEPC-protein kinase in vivo.Measurement of Mitochondrial Respiration in Isolated Protoplasts: Cytochrome and Alternative Pathways.Mechanism of Stomatal Closure in Plants Exposed to Drought and Cold StressIllumination increases the affinity of phosphoenolpyruvate carboxylase to bicarbonate in leaves of a C4 plant, Amaranthus hypochondriacusConsequence of restricted mitochondrial oxidative metabolism on photosynthetic carbon assimilation in mesophyll protoplasts: Decrease in light activation of four chloroplastic enzymesHydrogen peroxide production is an early event during bicarbonate induced stomatal closure in abaxial epidermis of ArabidopsisAscorbic acid is a key participant during the interactions between chloroplasts and mitochondria to optimize photosynthesis and protect against photoinhibitionPhotorespiration is complemented by cyclic electron flow and the alternative oxidase pathway to optimize photosynthesis and protect against abiotic stressOxidative stress induced in chloroplasts or mitochondria promotes proline accumulation in leaves of pea (Pisum sativum): another example of chloroplast-mitochondria interactionsErratum
P50
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P50
description
onderzoeker
@nl
researcher
@en
հետազոտող
@hy
name
Agepati S Raghavendra
@ast
Agepati S Raghavendra
@en
Agepati S Raghavendra
@es
Agepati S Raghavendra
@nl
type
label
Agepati S Raghavendra
@ast
Agepati S Raghavendra
@en
Agepati S Raghavendra
@es
Agepati S Raghavendra
@nl
altLabel
Raghavendra Agepati
@en
prefLabel
Agepati S Raghavendra
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Agepati S Raghavendra
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Agepati S Raghavendra
@es
Agepati S Raghavendra
@nl
P1053
C-2166-2011
P106
P31
P3762
P3829
P496
0000-0002-7376-4947