PGR1
Abscisic Acid Immunoassay Detection Kit
Quantitate the levels of abscisic acid (ABA) in plant tissue
Synonym(s):
Abscisic Acid Detection Kit, Immunoassay Kit
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General description
Abscisic Acid Immunoassay Detection Kit is used to quantitate the levels of abscisic acid (ABA) in plant tissues under normal and stress conditions. The plant growth regulator (PGR) enzyme immunoassay detection kit is a convenient test for the quantitative determination of plant hormones. The test utilizes monoclonal antibodies specific to the targeted hormones.
Application
Abscisic Acid Immunoassay Detection Kit has been used in measuring the levels of abscisic acid (ABA):
- in Sedum alfredii roots
- in Brassica juncea plant
- in Medicago truncatula and Arabidopsis thaliana seedlings
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10 - Combustible liquids
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Annals of botany, 99(2), 293-299 (2007-01-05)
Survival of many herbaceous species in Mediterranean habitats during the dry, hot summer depends on the induction of summer dormancy by changes in environmental conditions during the transition between the winter (growth) season to the summer (resting) season, i.e. longer
Frontiers in plant science, 7, 521-521 (2016-05-21)
The role of nitric oxide (NO) and sulfur (S) on stomatal responses and photosynthetic performance was studied in mustard (Brassica juncea L.) in presence or absence of salt stress. The combined application of 100 μM NO (as sodium nitroprusside) and
BMC plant biology, 17(1), 195-195 (2017-11-11)
Hexoses are important metabolic signals that respond to abiotic and biotic stresses. Cold stress adversely affects plant growth and development, limiting productivity. The mechanism by which sugars regulate plant cold tolerance remains elusive. We examined the function of INVINH1, a
EXO modifies sucrose and trehalose responses and connects the extracellular carbon status to growth.
Frontiers in plant science, 4, 219-219 (2013-06-28)
Plants have the capacity to adapt growth to changing environmental conditions. This implies the modulation of metabolism according to the availability of carbon (C). Particular interest in the response to the C availability is based on the increasing atmospheric levels
PloS one, 6(11), e26982-e26982 (2011-11-11)
The NFX1-LIKE1 (NFXL1) and NFXL2 genes were identified as regulators of salt stress responses. The NFXL1 protein is a nuclear factor that positively affects adaptation to salt stress. The nfxl1-1 loss-of-function mutant displayed reduced survival rates under salt and high
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