H2S in Plants : Past, Present and Beyond /

H2S in Plants: Past, Present and Beyond presents translational insights from animal to plant application. The recent discovery of several aspects of the function of H2S and its homeostasis in plant cells was propelled by discoveries in mammalian models. Based on the practical application of those an...

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Bibliographic Details
Corporate Author: ScienceDirect (Online service)
Format: eBook
Language:English
Published: London ; San Diego, CA : Academic Press, an imprint of Elsevier, [2024]
Series:Plant gasotransmitters and molecules with hormonal activity
Subjects:
Online Access:Connect to the full text of this electronic book
Table of Contents:
  • Front Cover
  • H2S in Plants
  • H2S in Plants: Past, Present and Beyond
  • Copyright
  • Contents
  • List of contributors
  • About the volume editors
  • 1
  • History of what has been learned since the discovery of H2S in plants
  • 1. Historical background of hydrogen sulfide
  • 1.1 The beginning of research on H2S in higher plant metabolism
  • Biochemistry of H2S in higher plants
  • 2.1 Persulfidation: Posttranslational modification mediated by H2S that regulates protein function
  • 2.2 H2S and gene regulation
  • 3. H2S and plant physiological processes
  • 4. H2S and plant response to environmental stresses
  • 5. H2S as a biotechnological tool
  • 6. Conclusions and future perspective
  • Acknowledgments
  • References
  • 2
  • Mammalian study techniques that have advanced H2S investigations in plant science
  • 1. Introduction
  • 2. Colorimetric method
  • 2.1 Methylene blue
  • 3. Fluorometric methods
  • 3.1 Monobromobimane and sulfidefluor-7 acetoxymethyl
  • 3.2 Other fluorescent probes
  • 4. Chromatographic methods
  • 4.1 Gas chromatography with flame photometric detector
  • 4.2 Ion chromatography with gas flow dialysis
  • 4.3 Gas chromatography using silver particles
  • 4.4 Gas chromatography with chemiluminescent sulfur detector
  • 4.5 Liquid chromatography-mass spectrometry
  • 5. Polarographic H2S sensor
  • 6. Quantification of H2S in plants
  • References
  • Further reading
  • 3
  • Analytical methods to assess H2S in plant tissues
  • 1. Introduction
  • General aspects of H2S in solution: Properties and reactivity
  • 3. Methods for H2S/HS− determination in plant tissue
  • 3.1 Iodometric method
  • 3.2 Spectrophotometric and colorimetric methods
  • 3.2.1 Zinc trap/methylene blue spectrophotometric method
  • 3.2.2 5,5'-dithiobis-(2-nitrobenzoic acid) method
  • 3.3 Spectrofluorimetry methods
  • 3.3.1 Washington state probes
  • 3.3.2 Sulfidefluor fluorescent probes
  • 3.3.3 7-Azido-4-methyl coumarin fluorescent probe
  • 3.4 Electrochemical methods
  • 3.4.1 Potentiometric methods: Ion-selective electrodes
  • 3.4.2 Amperometric method
  • 4. Trends in assessing H2S in plant tissues
  • 4.1 Spectrophotometric and colorimetric methods
  • 4.2 Spectrofluorimetric methods
  • 4.3 Electrochemical sensors
  • 4.4 Chromatographic methods
  • 5. Miscellaneous methods
  • 6. Conclusions and perspectives
  • References
  • 4
  • Fluorescent probes for H2S: Analytical parameters and syntheses
  • 1. Introduction
  • 1.1 Fluorescence probes
  • Analytical parameters related to fluorescent probes for H2S determination or imaging in plant tissues
  • 2.1 Fluorescent probes applied to H2S determination in plants
  • 2.2 Dual probes: Colorimetric and spectrofluorimetric detection
  • 2.3 Ratiometric fluorescent probes
  • 2.4 Two-photon fluorescence probes
  • 2.5 Near-infrared fluorescence probes
  • 3. Synthesis of selected fluorescent probes for H2S determination or bioimaging
  • 4. Concluding remarks
  • References
  • 5
  • Anabolism and catabolism of H2S in plants