Embryo-lethal phenotypes in early abp1 mutants are due to disruption of the neighboring BSM gene [version 1; referees: 3 approved]

The Auxin Binding Protein1 (ABP1) has been identified based on its ability to bind auxin with high affinity and studied for a long time as a prime candidate for the extracellular auxin receptor responsible for mediating in particular the fast non-transcriptional auxin responses. However, the contrad...

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Main Authors: Jaroslav Michalko, Marta Dravecká, Tobias Bollenbach, Jiří Friml
Format: Article
Language:English
Published: F1000 Research Ltd 2015-10-01
Series:F1000Research
Subjects:
Online Access:http://f1000research.com/articles/4-1104/v1
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spelling doaj-4ea056cba2034dda87647757afbf808a2020-11-25T01:24:08ZengF1000 Research LtdF1000Research2046-14022015-10-01410.12688/f1000research.7143.17695Embryo-lethal phenotypes in early abp1 mutants are due to disruption of the neighboring BSM gene [version 1; referees: 3 approved]Jaroslav Michalko0Marta Dravecká1Tobias Bollenbach2Jiří Friml3Institute of Plant Genetics and Biotechnology, Slovak Academy of Sciences, Nitra, 95007, SlovakiaInstitute of Science and Technology Austria (IST Austria), Klosterneuburg, 3400, AustriaInstitute of Science and Technology Austria (IST Austria), Klosterneuburg, 3400, AustriaInstitute of Science and Technology Austria (IST Austria), Klosterneuburg, 3400, AustriaThe Auxin Binding Protein1 (ABP1) has been identified based on its ability to bind auxin with high affinity and studied for a long time as a prime candidate for the extracellular auxin receptor responsible for mediating in particular the fast non-transcriptional auxin responses. However, the contradiction between the embryo-lethal phenotypes of the originally described Arabidopsis T-DNA insertional knock-out alleles (abp1-1 and abp1-1s) and the wild type-like phenotypes of other recently described loss-of-function alleles (abp1-c1 and abp1-TD1) questions the biological importance of ABP1 and relevance of the previous genetic studies. Here we show that there is no hidden copy of the ABP1 gene in the Arabidopsis genome but the embryo-lethal phenotypes of abp1-1 and abp1-1s alleles are very similar to the knock-out phenotypes of the neighboring gene, BELAYA SMERT (BSM). Furthermore, the allelic complementation test between bsm and abp1 alleles shows that the embryo-lethality in the abp1-1 and abp1-1s alleles is caused by the off-target disruption of the BSM locus by the T-DNA insertions. This clarifies the controversy of different phenotypes among published abp1 knock-out alleles and asks for reflections on the developmental role of ABP1.http://f1000research.com/articles/4-1104/v1Plant Cell BiologyPlant Genetics & Gene ExpressionPlant Growth & Development
collection DOAJ
language English
format Article
sources DOAJ
author Jaroslav Michalko
Marta Dravecká
Tobias Bollenbach
Jiří Friml
spellingShingle Jaroslav Michalko
Marta Dravecká
Tobias Bollenbach
Jiří Friml
Embryo-lethal phenotypes in early abp1 mutants are due to disruption of the neighboring BSM gene [version 1; referees: 3 approved]
F1000Research
Plant Cell Biology
Plant Genetics & Gene Expression
Plant Growth & Development
author_facet Jaroslav Michalko
Marta Dravecká
Tobias Bollenbach
Jiří Friml
author_sort Jaroslav Michalko
title Embryo-lethal phenotypes in early abp1 mutants are due to disruption of the neighboring BSM gene [version 1; referees: 3 approved]
title_short Embryo-lethal phenotypes in early abp1 mutants are due to disruption of the neighboring BSM gene [version 1; referees: 3 approved]
title_full Embryo-lethal phenotypes in early abp1 mutants are due to disruption of the neighboring BSM gene [version 1; referees: 3 approved]
title_fullStr Embryo-lethal phenotypes in early abp1 mutants are due to disruption of the neighboring BSM gene [version 1; referees: 3 approved]
title_full_unstemmed Embryo-lethal phenotypes in early abp1 mutants are due to disruption of the neighboring BSM gene [version 1; referees: 3 approved]
title_sort embryo-lethal phenotypes in early abp1 mutants are due to disruption of the neighboring bsm gene [version 1; referees: 3 approved]
publisher F1000 Research Ltd
series F1000Research
issn 2046-1402
publishDate 2015-10-01
description The Auxin Binding Protein1 (ABP1) has been identified based on its ability to bind auxin with high affinity and studied for a long time as a prime candidate for the extracellular auxin receptor responsible for mediating in particular the fast non-transcriptional auxin responses. However, the contradiction between the embryo-lethal phenotypes of the originally described Arabidopsis T-DNA insertional knock-out alleles (abp1-1 and abp1-1s) and the wild type-like phenotypes of other recently described loss-of-function alleles (abp1-c1 and abp1-TD1) questions the biological importance of ABP1 and relevance of the previous genetic studies. Here we show that there is no hidden copy of the ABP1 gene in the Arabidopsis genome but the embryo-lethal phenotypes of abp1-1 and abp1-1s alleles are very similar to the knock-out phenotypes of the neighboring gene, BELAYA SMERT (BSM). Furthermore, the allelic complementation test between bsm and abp1 alleles shows that the embryo-lethality in the abp1-1 and abp1-1s alleles is caused by the off-target disruption of the BSM locus by the T-DNA insertions. This clarifies the controversy of different phenotypes among published abp1 knock-out alleles and asks for reflections on the developmental role of ABP1.
topic Plant Cell Biology
Plant Genetics & Gene Expression
Plant Growth & Development
url http://f1000research.com/articles/4-1104/v1
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