textWhen plant cells grow and when they are mechanically stimulated or wounded or attacked by pathogens, they release ATP into their extracellular matrix. This extracellular ATP (eATP) can induce cell signaling changes that alter cell growth and promote adaptive changes to biotic and abiotic stresses. Cells control the eATP concentration with ecto-phosphatases. Among the most important of these are the nucleoside triphosphate-diphosphohydrolases (NTPDases) called apyrases. There are seven apyrases in Arabidopsis, and at least two of these, APY1 and APY2, help control the eATP concentration. The expression of APY1/APY2 can be inhibited by RNAi, and this suppression leads to growth inhibition. Because prior work showed that increased levels o...
Root organogenesis involves cell division, differentiation and expansion. The molecular mechanisms r...
textApyrases (NTP-diphosphohydrolases, EC 3.6.1.5) are a family of enzymes that catalyze the hydroly...
Lateral root (LR) emergence represents a highly coordinated process in which the plant hormone auxin...
ATP can serve as a signal molecule in the extracellular space to regulate biological processes and p...
Recent research has suggested that ATP may not only serve as an energy storage molecule, but when p...
textIn mammalian cells, it is well documented that extracellular ATP is a signaling molecule. Recen...
Exciting contributions to the field of plant biology have challenged traditional views of and modes ...
textPlants are constantly assaulted with abiotic and biotic stresses. They have developed mechanism...
Two class III peroxidases from Arabidopsis, AtPrx33 and Atprx34, have been studied in this paper. Th...
textAdenosine triphosphate (ATP) is well recognized for its role as the primary cellular energy curr...
Plant roots are required to anchor the plant in the soil, acquire water and nutrients and respond to...
Stomatal regulation is crucial to reduce water consumption under drought conditions. Extracellular A...
Nucleoside tri- and diphosphates, ubiquitous molecules inside all living cells, function as essent...
Thesis (M.S., Biological Sciences (Molecular and Cellular Biology))--California State University, Sa...
Distribution of auxin within plant tissues is of great importance for developmental plasticity, incl...
Root organogenesis involves cell division, differentiation and expansion. The molecular mechanisms r...
textApyrases (NTP-diphosphohydrolases, EC 3.6.1.5) are a family of enzymes that catalyze the hydroly...
Lateral root (LR) emergence represents a highly coordinated process in which the plant hormone auxin...
ATP can serve as a signal molecule in the extracellular space to regulate biological processes and p...
Recent research has suggested that ATP may not only serve as an energy storage molecule, but when p...
textIn mammalian cells, it is well documented that extracellular ATP is a signaling molecule. Recen...
Exciting contributions to the field of plant biology have challenged traditional views of and modes ...
textPlants are constantly assaulted with abiotic and biotic stresses. They have developed mechanism...
Two class III peroxidases from Arabidopsis, AtPrx33 and Atprx34, have been studied in this paper. Th...
textAdenosine triphosphate (ATP) is well recognized for its role as the primary cellular energy curr...
Plant roots are required to anchor the plant in the soil, acquire water and nutrients and respond to...
Stomatal regulation is crucial to reduce water consumption under drought conditions. Extracellular A...
Nucleoside tri- and diphosphates, ubiquitous molecules inside all living cells, function as essent...
Thesis (M.S., Biological Sciences (Molecular and Cellular Biology))--California State University, Sa...
Distribution of auxin within plant tissues is of great importance for developmental plasticity, incl...
Root organogenesis involves cell division, differentiation and expansion. The molecular mechanisms r...
textApyrases (NTP-diphosphohydrolases, EC 3.6.1.5) are a family of enzymes that catalyze the hydroly...
Lateral root (LR) emergence represents a highly coordinated process in which the plant hormone auxin...