ERD15—An attenuator of plant ABA responses and stomatal aperture

► ERD15 belongs to a conserved protein family ubiquitous but specific to plant kingdom. ► It has a role in both abiotic and biotic stress responses. ► ERD15 participates in regulating stomatal aperture. ► PAM2 motif suggests a role in posttranscriptional regulation of gene expression. Plants are con...

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Published inPlant science (Limerick) Vol. 182; pp. 19 - 28
Main Authors Aalto, Markku K., Helenius, Elina, Kariola, Tarja, Pennanen, Ville, Heino, Pekka, Hõrak, Hanna, Puzõrjova, Irina, Kollist, Hannes, Palva, E. Tapio
Format Journal Article
LanguageEnglish
Published Ireland Elsevier Ireland Ltd 2012
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Abstract ► ERD15 belongs to a conserved protein family ubiquitous but specific to plant kingdom. ► It has a role in both abiotic and biotic stress responses. ► ERD15 participates in regulating stomatal aperture. ► PAM2 motif suggests a role in posttranscriptional regulation of gene expression. Plants are continuously challenged by abiotic and biotic stress factors and need to mount appropriate responses to ensure optimal growth and survival. We have identified ERD15 as a central component in several stress responses in Arabidopsis thaliana. Comparative genomics demonstrates that ERD15 is a member of a small but highly conserved protein family ubiquitous but specific to the plant kingdom. The origin of ERD15 family of proteins can be traced to the time of emergence of land plants. The presence of the conserved PAM2 motif in ERD15 proteins is indicative of a possible interaction with poly(A) binding proteins and could suggest a role in posttranscriptional regulation of gene expression. The function of the other highly conserved motifs in ERD15 remains to be elucidated. The biological role of all ERD15 family members studied so far appears associated to stress responses and stress adaptation. Studies in Arabidopsis demonstrate a role in abiotic stress tolerance where ERD15 is a negative regulator of ABA signaling. The role in ABA signaling may also explain how ERD15 regulates stomatal aperture and consequently controls plant water relations.
AbstractList Plants are continuously challenged by abiotic and biotic stress factors and need to mount appropriate responses to ensure optimal growth and survival. We have identified ERD15 as a central component in several stress responses in Arabidopsis thaliana. Comparative genomics demonstrates that ERD15 is a member of a small but highly conserved protein family ubiquitous but specific to the plant kingdom. The origin of ERD15 family of proteins can be traced to the time of emergence of land plants. The presence of the conserved PAM2 motif in ERD15 proteins is indicative of a possible interaction with poly(A) binding proteins and could suggest a role in posttranscriptional regulation of gene expression. The function of the other highly conserved motifs in ERD15 remains to be elucidated. The biological role of all ERD15 family members studied so far appears associated to stress responses and stress adaptation. Studies in Arabidopsis demonstrate a role in abiotic stress tolerance where ERD15 is a negative regulator of ABA signaling. The role in ABA signaling may also explain how ERD15 regulates stomatal aperture and consequently controls plant water relations.
► ERD15 belongs to a conserved protein family ubiquitous but specific to plant kingdom. ► It has a role in both abiotic and biotic stress responses. ► ERD15 participates in regulating stomatal aperture. ► PAM2 motif suggests a role in posttranscriptional regulation of gene expression. Plants are continuously challenged by abiotic and biotic stress factors and need to mount appropriate responses to ensure optimal growth and survival. We have identified ERD15 as a central component in several stress responses in Arabidopsis thaliana. Comparative genomics demonstrates that ERD15 is a member of a small but highly conserved protein family ubiquitous but specific to the plant kingdom. The origin of ERD15 family of proteins can be traced to the time of emergence of land plants. The presence of the conserved PAM2 motif in ERD15 proteins is indicative of a possible interaction with poly(A) binding proteins and could suggest a role in posttranscriptional regulation of gene expression. The function of the other highly conserved motifs in ERD15 remains to be elucidated. The biological role of all ERD15 family members studied so far appears associated to stress responses and stress adaptation. Studies in Arabidopsis demonstrate a role in abiotic stress tolerance where ERD15 is a negative regulator of ABA signaling. The role in ABA signaling may also explain how ERD15 regulates stomatal aperture and consequently controls plant water relations.
Author Hõrak, Hanna
Helenius, Elina
Puzõrjova, Irina
Heino, Pekka
Pennanen, Ville
Kollist, Hannes
Aalto, Markku K.
Palva, E. Tapio
Kariola, Tarja
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  organization: Institute of Technology, University of Tartu, Nooruse 1, 50411 Tartu, Estonia
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  surname: Kollist
  fullname: Kollist, Hannes
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  surname: Palva
  fullname: Palva, E. Tapio
  email: tapio.palva@helsinki.fi
  organization: Department of Biosciences, Division of Genetics, POB 56, Viikki Biocenter, University of Helsinki, FI-00014 Helsinki, Finland
BackLink https://www.ncbi.nlm.nih.gov/pubmed/22118612$$D View this record in MEDLINE/PubMed
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Keywords ABA signaling
Posttranscriptional regulation
Stomatal regulation
Plant defense
Abiotic stress
Language English
License Copyright © 2011 Elsevier Ireland Ltd. All rights reserved.
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Snippet ► ERD15 belongs to a conserved protein family ubiquitous but specific to plant kingdom. ► It has a role in both abiotic and biotic stress responses. ► ERD15...
Plants are continuously challenged by abiotic and biotic stress factors and need to mount appropriate responses to ensure optimal growth and survival. We have...
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SubjectTerms ABA signaling
Abiotic stress
abscisic acid
Abscisic Acid - metabolism
Adaptation, Physiological
Arabidopsis - genetics
Arabidopsis - metabolism
Arabidopsis Proteins - metabolism
Arabidopsis thaliana
binding proteins
biotic stress
embryophytes
gene expression regulation
Gene Expression Regulation, Plant
genomics
Plant defense
Plant Stomata - metabolism
plant-water relations
Posttranscriptional regulation
Signal Transduction
stomatal movement
Stomatal regulation
stress response
stress tolerance
Stress, Physiological - physiology
Transcription, Genetic
Title ERD15—An attenuator of plant ABA responses and stomatal aperture
URI https://dx.doi.org/10.1016/j.plantsci.2011.08.009
https://www.ncbi.nlm.nih.gov/pubmed/22118612
https://search.proquest.com/docview/906559501
Volume 182
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