Colección SciELO Chile

Departamento Gestión de Conocimiento, Monitoreo y Prospección
Consultas o comentarios: productividad@anid.cl
Búsqueda Publicación
Búsqueda por Tema Título, Abstract y Keywords



Electrical signaling, stomatal conductance, ABA and Ethylene content in avocado trees in response to root hypoxia
Indexado
Scopus SCOPUS_ID:59449101296
DOI 10.4161/PSB.4.2.7872
Año 2009
Tipo

Citas Totales

Autores Afiliación Chile

Instituciones Chile

% Participación
Internacional

Autores
Afiliación Extranjera

Instituciones
Extranjeras


Abstract



Avocado (Persea americana Mill.) trees are among the most sensitive of fruit tree species to root hypoxia as a result of flooded or poorly drained soil. Similar to drought stress, an early physiological response to root hypoxia in avocado is a reduction of stomatal conductance. It has been previously determined in avocado trees that an extracellular electrical signal between the base of stem and leaves is produced and related to reductions in stomatal conductance in response to drought stress. The current study was designed to determine if changes in the extracellular electrical potential between the base of the stem and leaves in avocado trees could also be detected in response to short-term (min) or long-term (days) root hypoxia, and if these signals could be related to stomatal conductance (gs), root and leaf ABA and ACC concentrations, ethylene emission from leaves and leaf abscission. In contrast to previous observations for drought-stressed trees, short-term or long-term root hypoxia did not stimulate an electrical potential difference between the base of the stem and leaves. Short-term hypoxia did not result in a significant decrease in gs compared with plants in the control treatment, and no differences in ABA concentration were found between plants subjected to hypoxia and control plants. Long-term hypoxia in the root zone resulted in a significant decrease in gs, increased leaf ethylene and increased leaf abscission. The results indicate that for avocado trees exposed to root hypoxia, electrical signals do not appear to be the primary root-to-shoot communication mechanism involved in signaling for stomatal closure as a result of hypoxia in the root zone. ©2009 Landes Bioscience.

Métricas Externas



PlumX Altmetric Dimensions

Muestra métricas de impacto externas asociadas a la publicación. Para mayor detalle:

Disciplinas de Investigación



WOS
Plant Sciences
Biochemistry & Molecular Biology
Scopus
Plant Science
SciELO
Sin Disciplinas

Muestra la distribución de disciplinas para esta publicación.

Publicaciones WoS (Ediciones: ISSHP, ISTP, AHCI, SSCI, SCI), Scopus, SciELO Chile.

Colaboración Institucional



Muestra la distribución de colaboración, tanto nacional como extranjera, generada en esta publicación.


Autores - Afiliación



Ord. Autor Género Institución - País
1 GIL-MONTENEGRO, PILAR MACARENA Mujer Pontificia Universidad Católica de Chile - Chile
Instituto de Investigaciones Agropecuarias - Chile
2 GUROVICH-ROSENBERG, LUIS ALBERTO Hombre Pontificia Universidad Católica de Chile - Chile
3 Schaffer, B. Hombre Tropical Research & Education Center - Estados Unidos
4 García, Nicolás Hombre Pontificia Universidad Católica de Chile - Chile
5 ITURRIAGA-AGUERA, RODRIGO MANUEL Hombre Pontificia Universidad Católica de Chile - Chile

Muestra la afiliación y género (detectado) para los co-autores de la publicación.

Financiamiento



Fuente
Sin Información

Muestra la fuente de financiamiento declarada en la publicación.

Agradecimientos



Agradecimiento
Sin Información

Muestra la fuente de financiamiento declarada en la publicación.