Artículo

Bastías, D. A.; Ueno, A. C. & Gundel, P. E. (2023)"Global change factors influence plant - Epichloë associations".Journal of Fungi,9, (4),art.446

Registro:

Documento:
Artículo
Título en inglés:
Global change factors influence plant - Epichloë associations
Autor/es:
Bastías, Daniel A.; Ueno, Andrea Celeste; Gundel, Pedro Emilio
Filiación:
Bastías, Daniel A. AgResearch Limited. Grasslands Research Centre. Palmerston North, New Zealand.
Ueno, Andrea Celeste. Universidad de Talca. Instituto de Ciencias Biológicas. Centro de Ecología Integrativa. Talca, Chile.
Ueno, Andrea Celeste. Universidad de Talca. Instituto de Investigación Interdisciplinaria. Talca, Chile.
Gundel, Pedro Emilio. Universidad de Talca. Instituto de Ciencias Biológicas. Centro de Ecología Integrativa. Talca, Chile.
Gundel, Pedro Emilio. Universidad de Buenos Aires. Facultad de Agronomía. Instituto de Investigaciones Fisiológicas y Ecológicas Vinculadas a la Agricultura (IFEVA). Buenos Aires, Argentina.
Gundel, Pedro Emilio. CONICET – Universidad de Buenos Aires. Instituto de Investigaciones Fisiológicas y Ecológicas Vinculadas a la Agricultura (IFEVA). Buenos Aires, Argentina.
Año:
2023
Título revista:
Journal of Fungi
ISSN:
2309-608X
Volumen:
9
Número:
4
Páginas:
art.446
Temas:
CLIMATE CHANGE; ENDOPHYTE; STRESS; SYMBIOSIS; PHYTOHORMONE; ROS; ANTIOXIDANT; TRANSGENERATIONAL EFFECT
Idioma:
Inglés
URL al Editor:

Resumen:

There is an increasing interest in determining the influence of global change on plant– microorganism interactions. We review the results of experiments that evaluated the effects of the global change factors carbon dioxide, ozone, temperature, drought, flooding, and salinity on plant symbioses with beneficial Epichloë endophytes. The factors affected the performance of both plants and endophytes as well as the frequency of plants symbiotic with the fungus. Elevated carbon dioxide levels and low temperatures differentially influenced the growth of plants and endophytes, which could compromise the symbioses. Furthermore, we summarise the plant stage in which the effects of the factors were quantified (vegetative, reproductive, or progeny). The factors ozone and drought were studied at all plant stages, but flooding and carbon dioxide were studied in just a few of them. While only studied in response to ozone and drought, evidence showed that the effects of these factors on symbiotic plants persisted trans-generationally. We also identified the putative mechanisms that would explain the effects of the factors on plant–endophyte associations. These mechanisms included the increased contents of reactive oxygen species and defence-related phytohormones, reduced photosynthesis, and altered levels of plant primary metabolites. Finally, we describe the counteracting mechanisms by which endophytes would mitigate the detrimental effects of the factors on plants. In presence of the factors, endophytes increased the contents of antioxidants, reduced the levels of defence-related phytohormones, and enhanced the plant uptake of nutrients and photosynthesis levels. Knowledge gaps regarding the effects of global change on plant–endophyte associations were identified and discussed.

Citación:

---------- APA ----------

Bastías, D. A.; Ueno, A. C. & Gundel, P. E. (2023).Global change factors influence plant - Epichloë associations.Journal of Fungi,9, (4),art.446
10.3390/jof9040446

---------- CHICAGO ----------

Bastías, Daniel A., Ueno, Andrea Celeste, Gundel, Pedro Emilio.2023. "Global change factors influence plant - Epichloë associations".Journal of Fungi 9, no.4:art.446.
Recuperado de  
http://ri.agro.uba.ar/greenstone3/library/collection/arti/document/2023bastias