Based on state-of-the-art GC-MS/MS systems, our sample-to-data ethylene analysis service can help you define ethylene diversity and quantify ethylene levels in your samples, so as to investigate the physiological mechanisms of ethylene biosynthesis, signaling, action, and perception in plants.
Ethylene (ETH, H2C=CH2), a gaseous phytohormone, is the first gaseous molecule found to function as a hormone. Since ethylene was initially known to stimulate adventitious root formation, there has been a great interest in exploring ethylene. Studies have found that ETH plays an important role in modulating plant growth and development throughout the plant life cycle, including seed germination, flower senescence, and fruit ripening and abscission. ETH is also involved in defense against pathogens or elicitor attacks, and responses to abiotic stresses like chemical exposure, hypoxia, wounding, freezing, chilling, nutrient availability, and flooding. Moreover, the ETH concentration may vary according to the plant species, developmental stage of the plant, and organ types such as flower, root, and leaf. It is very important to monitor and control ethylene emission in plants to accelerate plant growth and fruit freshness. Thus, there is a growing demand for simple, affordable, and accurate ETH analysis methods for measuring ETH concentrations.
Figure 1. Ethylene biosynthesis and signaling pathways (Corbineau et al., 2014).
v-innovate Technologies offers detection and quantification of ethylene in plants using the rapid and highly sensitive Agilent 7890A gas chromatography–mass spectrometry (GC‐MS) system. We are experienced in dealing with a variety of sample types and can achieve high effectiveness and recovery rates consistently exceeding 85%, without homogeneity between samples.
Quantification method: external standard method
Detectable ETHs | CAS | Quantification Method |
---|---|---|
Ethylene (ETH) | 74-85-1 | External standard method |
Fresh plant tissues >2 g. Provide young plant tissues for best results. Samples should be frozen in liquid nitrogen immediately after collection, and then transferred to -80°C for storage.
At least 3 biological replicates.
v-innovate Technologies provides comprehensive ethylene analysis services using state-of-the-art gas chromatography coupled to mass spectrometry (GC-MS). We are committed to clarifying the biosynthesis, signaling, and action of ETH in the regulation of plant developmental and physiological processes.
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