LabName:Alcazar: Difference between revisions

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'''1. Immune-related hybrid incompatibility in plants ''' <br>
'''1. Natural variation and evolution of immune resistance in plants.''' <br>
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We study the evolution of ''Resistance'' genes and interacting loci that condition '''immune-related hybrid incompatibility''', a lethal activation of defense produced after the cross of different individuals in natural ''Arabidopsis thaliana'' populations. This research is complemented by the study of the modulation of ''NB-LRR'' signaling by '''temperature''' which is important under the current climate change predictions. <br><br>
Plant resistance to pathogens is an important field of research with direct applications. We study the molecular bases and evolution of ''Resistance'' genes and other loci that condition plant immunity. We explore the mechanisms which have naturally evolved in plant populations to resist against biotic threats. This research is complemented by the study of the modulation of some immune responses  by '''temperature''' which is important under the current climate change predictions. <br><br>
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'''2. Natural variation of stress-induced metabolites'''
'''2. Natural variation of stress-induced metabolites'''

Revision as of 14:11, 2 November 2014




Dept. Biology, Healthcare & Environment
Section of Plant Physiology
Facultat de Farmàcia, Av. Joan XXIII 27-31
08028 Barcelona, Spain

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Genetics of Plant-Environment Interactions

We study the genetic and molecular bases for the adaptation of plants to their local environments. We mainly focus on the evolutionary adaptation of plant populations to abiotic and biotic stresses, which are major threats for plant survival. Derived from our basic research, we investigate ways for improving stress protection.


CURRENT AREAS OF RESEARCH



1. Natural variation and evolution of immune resistance in plants.

Plant resistance to pathogens is an important field of research with direct applications. We study the molecular bases and evolution of Resistance genes and other loci that condition plant immunity. We explore the mechanisms which have naturally evolved in plant populations to resist against biotic threats. This research is complemented by the study of the modulation of some immune responses by temperature which is important under the current climate change predictions.


2. Natural variation of stress-induced metabolites


In collaboration with the lab of Prof. A.F. Tiburcio at the same department, we study the genetic bases for the naturally occurring variation of stress protective metabolites that condition resistance traits in plants.


Rubén Alcázar is Ramón y Cajal Researcher at the Department of Natural Products, Plant Biology and Soil Science of the University of Barcelona.
For a more detailed view of our research, have a look at our Research Projects and Scientific Publications sections.
For general public information have a look at +info. Historial record of main press releases can be found at Edublogs
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News and Announcements e-Board


LATEST PUBLICATIONS

Editorial article of upcoming e-book in Frontiers in Plant Science. Editors: Ruben Alcazar & A.F. Tiburcio.
Plant polyamines in stress and development: an emerging area of research in plant sciences 
The Roles of Polyamines during the lifespan of plants:from development to stress
Tiburcio AF, Altabella T, Bitrián M and Alcázar R. (2014) Planta 240: 1-18.

More news

Ruben Alcazar Lab granted by the Spanish Programme of Scientific and Technical Excellence 2014.





The Faculty | The University | The Campus | Scientific and Technological Centers




Full address:
Facultat de Farmacia
Universitat de Barcelona
Unitat de Fisiologia Vegetal
Avda Joan XXIII s/n
08028 Barcelona (Spain)


About the logo: Skyline of the city of Barcelona, where our lab is located.

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