Cargando…

The cell morphogenesis ANGUSTIFOLIA (AN) gene, a plant homolog of CtBP/BARS, is involved in abiotic and biotic stress response in higher plants

BACKGROUND: ANGUSTIFOLIA (AN), one of the CtBP family proteins, plays a major role in microtubule-dependent cell morphogenesis. Microarray analysis of mammalian AN homologs suggests that AN might function as a transcriptional activator and regulator of a wide range of genes. Genetic characterization...

Descripción completa

Detalles Bibliográficos
Autores principales: Gachomo, Emma W, Jimenez-Lopez, Jose C, Smith, Sarah R, Cooksey, Anthony B, Oghoghomeh, Oteri M, Johnson, Nicholas, Baba-Moussa, Lamine, Kotchoni, Simeon O
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3663690/
https://www.ncbi.nlm.nih.gov/pubmed/23672620
http://dx.doi.org/10.1186/1471-2229-13-79
_version_ 1782271020251480064
author Gachomo, Emma W
Jimenez-Lopez, Jose C
Smith, Sarah R
Cooksey, Anthony B
Oghoghomeh, Oteri M
Johnson, Nicholas
Baba-Moussa, Lamine
Kotchoni, Simeon O
author_facet Gachomo, Emma W
Jimenez-Lopez, Jose C
Smith, Sarah R
Cooksey, Anthony B
Oghoghomeh, Oteri M
Johnson, Nicholas
Baba-Moussa, Lamine
Kotchoni, Simeon O
author_sort Gachomo, Emma W
collection PubMed
description BACKGROUND: ANGUSTIFOLIA (AN), one of the CtBP family proteins, plays a major role in microtubule-dependent cell morphogenesis. Microarray analysis of mammalian AN homologs suggests that AN might function as a transcriptional activator and regulator of a wide range of genes. Genetic characterization of AN mutants suggests that AN might be involved in multiple biological processes beyond cell morphology regulation. RESULTS: Using a reverse genetic approach, we provide in this paper the genetic, biochemical, and physiological evidence for ANGUSTIFOLIA’s role in other new biological functions such as abiotic and biotic stress response in higher plants. The T-DNA knockout an-t1 mutant exhibits not only all the phenotypes of previously described angustifolia null mutants, but also copes better than wild type under dehydration and pathogen attack. The stress tolerance is accompanied by a steady-state modulation of cellular H(2)O(2) content, malondialdehyde (MDA) derived from cellular lipid peroxidation, and over-expression of stress responsive genes. Our results indicate that ANGUSTIFOLIA functions beyond cell morphology control through direct or indirect functional protein interaction networks mediating other biological processes such as drought and pathogen attacks. CONCLUSIONS: Our results indicate that the ANGUSTIFOLIA gene participates in several biochemical pathways controlling cell morphogenesis, abiotic, and biotic stress responses in higher plants. Our results suggest that the in vivo function of plant ANGUSTIFOLIA has been overlooked and it needs to be further studied beyond microtubule-dependent cell morphogenesis.
format Online
Article
Text
id pubmed-3663690
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-36636902013-05-25 The cell morphogenesis ANGUSTIFOLIA (AN) gene, a plant homolog of CtBP/BARS, is involved in abiotic and biotic stress response in higher plants Gachomo, Emma W Jimenez-Lopez, Jose C Smith, Sarah R Cooksey, Anthony B Oghoghomeh, Oteri M Johnson, Nicholas Baba-Moussa, Lamine Kotchoni, Simeon O BMC Plant Biol Research Article BACKGROUND: ANGUSTIFOLIA (AN), one of the CtBP family proteins, plays a major role in microtubule-dependent cell morphogenesis. Microarray analysis of mammalian AN homologs suggests that AN might function as a transcriptional activator and regulator of a wide range of genes. Genetic characterization of AN mutants suggests that AN might be involved in multiple biological processes beyond cell morphology regulation. RESULTS: Using a reverse genetic approach, we provide in this paper the genetic, biochemical, and physiological evidence for ANGUSTIFOLIA’s role in other new biological functions such as abiotic and biotic stress response in higher plants. The T-DNA knockout an-t1 mutant exhibits not only all the phenotypes of previously described angustifolia null mutants, but also copes better than wild type under dehydration and pathogen attack. The stress tolerance is accompanied by a steady-state modulation of cellular H(2)O(2) content, malondialdehyde (MDA) derived from cellular lipid peroxidation, and over-expression of stress responsive genes. Our results indicate that ANGUSTIFOLIA functions beyond cell morphology control through direct or indirect functional protein interaction networks mediating other biological processes such as drought and pathogen attacks. CONCLUSIONS: Our results indicate that the ANGUSTIFOLIA gene participates in several biochemical pathways controlling cell morphogenesis, abiotic, and biotic stress responses in higher plants. Our results suggest that the in vivo function of plant ANGUSTIFOLIA has been overlooked and it needs to be further studied beyond microtubule-dependent cell morphogenesis. BioMed Central 2013-05-14 /pmc/articles/PMC3663690/ /pubmed/23672620 http://dx.doi.org/10.1186/1471-2229-13-79 Text en Copyright © 2013 Gachomo et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Gachomo, Emma W
Jimenez-Lopez, Jose C
Smith, Sarah R
Cooksey, Anthony B
Oghoghomeh, Oteri M
Johnson, Nicholas
Baba-Moussa, Lamine
Kotchoni, Simeon O
The cell morphogenesis ANGUSTIFOLIA (AN) gene, a plant homolog of CtBP/BARS, is involved in abiotic and biotic stress response in higher plants
title The cell morphogenesis ANGUSTIFOLIA (AN) gene, a plant homolog of CtBP/BARS, is involved in abiotic and biotic stress response in higher plants
title_full The cell morphogenesis ANGUSTIFOLIA (AN) gene, a plant homolog of CtBP/BARS, is involved in abiotic and biotic stress response in higher plants
title_fullStr The cell morphogenesis ANGUSTIFOLIA (AN) gene, a plant homolog of CtBP/BARS, is involved in abiotic and biotic stress response in higher plants
title_full_unstemmed The cell morphogenesis ANGUSTIFOLIA (AN) gene, a plant homolog of CtBP/BARS, is involved in abiotic and biotic stress response in higher plants
title_short The cell morphogenesis ANGUSTIFOLIA (AN) gene, a plant homolog of CtBP/BARS, is involved in abiotic and biotic stress response in higher plants
title_sort cell morphogenesis angustifolia (an) gene, a plant homolog of ctbp/bars, is involved in abiotic and biotic stress response in higher plants
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3663690/
https://www.ncbi.nlm.nih.gov/pubmed/23672620
http://dx.doi.org/10.1186/1471-2229-13-79
work_keys_str_mv AT gachomoemmaw thecellmorphogenesisangustifoliaangeneaplanthomologofctbpbarsisinvolvedinabioticandbioticstressresponseinhigherplants
AT jimenezlopezjosec thecellmorphogenesisangustifoliaangeneaplanthomologofctbpbarsisinvolvedinabioticandbioticstressresponseinhigherplants
AT smithsarahr thecellmorphogenesisangustifoliaangeneaplanthomologofctbpbarsisinvolvedinabioticandbioticstressresponseinhigherplants
AT cookseyanthonyb thecellmorphogenesisangustifoliaangeneaplanthomologofctbpbarsisinvolvedinabioticandbioticstressresponseinhigherplants
AT oghoghomehoterim thecellmorphogenesisangustifoliaangeneaplanthomologofctbpbarsisinvolvedinabioticandbioticstressresponseinhigherplants
AT johnsonnicholas thecellmorphogenesisangustifoliaangeneaplanthomologofctbpbarsisinvolvedinabioticandbioticstressresponseinhigherplants
AT babamoussalamine thecellmorphogenesisangustifoliaangeneaplanthomologofctbpbarsisinvolvedinabioticandbioticstressresponseinhigherplants
AT kotchonisimeono thecellmorphogenesisangustifoliaangeneaplanthomologofctbpbarsisinvolvedinabioticandbioticstressresponseinhigherplants
AT gachomoemmaw cellmorphogenesisangustifoliaangeneaplanthomologofctbpbarsisinvolvedinabioticandbioticstressresponseinhigherplants
AT jimenezlopezjosec cellmorphogenesisangustifoliaangeneaplanthomologofctbpbarsisinvolvedinabioticandbioticstressresponseinhigherplants
AT smithsarahr cellmorphogenesisangustifoliaangeneaplanthomologofctbpbarsisinvolvedinabioticandbioticstressresponseinhigherplants
AT cookseyanthonyb cellmorphogenesisangustifoliaangeneaplanthomologofctbpbarsisinvolvedinabioticandbioticstressresponseinhigherplants
AT oghoghomehoterim cellmorphogenesisangustifoliaangeneaplanthomologofctbpbarsisinvolvedinabioticandbioticstressresponseinhigherplants
AT johnsonnicholas cellmorphogenesisangustifoliaangeneaplanthomologofctbpbarsisinvolvedinabioticandbioticstressresponseinhigherplants
AT babamoussalamine cellmorphogenesisangustifoliaangeneaplanthomologofctbpbarsisinvolvedinabioticandbioticstressresponseinhigherplants
AT kotchonisimeono cellmorphogenesisangustifoliaangeneaplanthomologofctbpbarsisinvolvedinabioticandbioticstressresponseinhigherplants