Skip navigation
  •  Home
  • UDC 
    • Getting started
    • RUC Policies
    • FAQ
    • FAQ on Copyright
    • More information at INFOguias UDC
  • Browse 
    • Communities
    • Browse by:
    • Issue Date
    • Author
    • Title
    • Subject
  • Help
    • español
    • Gallegan
    • English
  • Login
  •  English 
    • Español
    • Galego
    • English
  
View Item 
  •   DSpace Home
  • Facultade de Ciencias
  • Investigación (FCIE)
  • View Item
  •   DSpace Home
  • Facultade de Ciencias
  • Investigación (FCIE)
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

Evolutionary Implications of a Peroxidase with High Affinity for Cinnamyl Alcohols from Physcomitrium patens, a Non-Vascular Plant

Thumbnail
View/Open
Pomar_Federico_2021_Evolutionary_implications_peroxidase_high_affinity_cinnamyl_alcohols.pdf (1.515Mb)
Use this link to cite
http://hdl.handle.net/2183/28560
Atribución 4.0 Internacional (CC BY 4.0)
Except where otherwise noted, this item's license is described as Atribución 4.0 Internacional (CC BY 4.0)
Collections
  • Investigación (FCIE) [1228]
Metadata
Show full item record
Title
Evolutionary Implications of a Peroxidase with High Affinity for Cinnamyl Alcohols from Physcomitrium patens, a Non-Vascular Plant
Author(s)
Martínez-Cortés, T.
Pomar, Federico
Novo-Uzal, Esther
Date
2021-07-19
Citation
Martínez-Cortés, T.; Pomar, F.; Novo-Uzal, E. Evolutionary Implications of a Peroxidase with High Affinity for Cinnamyl Alcohols from Physcomitrium patens, a Non-Vascular Plant. Plants 2021, 10, 1476. https://doi.org/10.3390/plants10071476
Abstract
[Abstract] Physcomitrium (Physcomitrella) patens is a bryophyte highly tolerant to different stresses, allowing survival when water supply is a limiting factor. This moss lacks a true vascular system, but it has evolved a primitive water-conducting system that contains lignin-like polyphenols. By means of a three-step protocol, including ammonium sulfate precipitation, adsorption chromatography on phenyl Sepharose and cationic exchange chromatography on SP Sepharose, we were able to purify and further characterize a novel class III peroxidase, PpaPrx19, upregulated upon salt and H2O2 treatments. This peroxidase, of a strongly basic nature, shows surprising homology to angiosperm peroxidases related to lignification, despite the lack of true lignins in P. patens cell walls. Moreover, PpaPrx19 shows catalytic and kinetic properties typical of angiosperm peroxidases involved in oxidation of monolignols, being able to efficiently use hydroxycinnamyl alcohols as substrates. Our results pinpoint the presence in P. patens of peroxidases that fulfill the requirements to be involved in the last step of lignin biosynthesis, predating the appearance of true lignin.
Keywords
Physcomitrella
Hydroxycinnamyl alcohols
Plant evolution
Peroxidase
Abiotic stress
 
Editor version
https://doi.org/10.3390/plants10071476
Rights
Atribución 4.0 Internacional (CC BY 4.0)
ISSN
2223-7747

Browse

All of DSpaceCommunities & CollectionsBy Issue DateAuthorsTitlesSubjectsResearch GroupAcademic DegreeThis CollectionBy Issue DateAuthorsTitlesSubjectsResearch GroupAcademic Degree

My Account

LoginRegister

Statistics

View Usage Statistics
Sherpa
OpenArchives
OAIster
Scholar Google
UNIVERSIDADE DA CORUÑA. Servizo de Biblioteca.    DSpace Software Copyright © 2002-2013 Duraspace - Send Feedback