Measuring quantitative changes in plant hormones and derivatives is crucial to understand how reactive oxygen species trigger signaling cascades to regulate stress responses. In this chapter, we describe the liquid chromatography-mass spectrometry procedure that we use to extract and quantify salicylic acid (SA), jasmonic acid (JA), and related compounds in common extracts of Arabidopsis tissue. The method can provide quantitative data on SA, SA glucosides, and JA, as well as information on oxidized and conjugated forms of these compounds and related derivatives of benzoic acid
Background Plant hormones play a pivotal role in several physiological processes during a plant's li...
A metabolomic strategy based on a rapid high performance liquid chromatography (LC) method coupled w...
The presence and relative concentration of phytohormones may be regarded as a good indicator of an o...
We describe an efficient method for the rapid quantitative determination of the abundance of three a...
Homeostasis between the cytoplasmic plant hormone salicylic acid (SA) and its’ inactive, vacuolar st...
Application of metabolomics techniques to plant physiology is now considerable, and LC-MS is often b...
Plant hormones are the key regulators of adaptive stress response. Abiotic stresses such as drought ...
When dealing with adverse or limiting growth conditions, plants respond by specific-stress mechanism...
An approach for the detection and characterization of SA derivatives in plant samples is presented b...
Copyright © 2015 Zhi-hong Huang et al. This is an open access article distributed under the Creative...
Phytohormones play essential roles in the regulation of growth and development in plants. Plant horm...
Salicylic acid (SA) is an important stress signaling phytohormone and plays an essential role in phy...
Abstract Background Phytohormones are the key metabolites participating in the regulation of multipl...
Many analytical procedures have been developed to determine the importance of phytohormones in diffe...
Phytohormones are central components of complex signalling networks in plants. The interplay between...
Background Plant hormones play a pivotal role in several physiological processes during a plant's li...
A metabolomic strategy based on a rapid high performance liquid chromatography (LC) method coupled w...
The presence and relative concentration of phytohormones may be regarded as a good indicator of an o...
We describe an efficient method for the rapid quantitative determination of the abundance of three a...
Homeostasis between the cytoplasmic plant hormone salicylic acid (SA) and its’ inactive, vacuolar st...
Application of metabolomics techniques to plant physiology is now considerable, and LC-MS is often b...
Plant hormones are the key regulators of adaptive stress response. Abiotic stresses such as drought ...
When dealing with adverse or limiting growth conditions, plants respond by specific-stress mechanism...
An approach for the detection and characterization of SA derivatives in plant samples is presented b...
Copyright © 2015 Zhi-hong Huang et al. This is an open access article distributed under the Creative...
Phytohormones play essential roles in the regulation of growth and development in plants. Plant horm...
Salicylic acid (SA) is an important stress signaling phytohormone and plays an essential role in phy...
Abstract Background Phytohormones are the key metabolites participating in the regulation of multipl...
Many analytical procedures have been developed to determine the importance of phytohormones in diffe...
Phytohormones are central components of complex signalling networks in plants. The interplay between...
Background Plant hormones play a pivotal role in several physiological processes during a plant's li...
A metabolomic strategy based on a rapid high performance liquid chromatography (LC) method coupled w...
The presence and relative concentration of phytohormones may be regarded as a good indicator of an o...