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Genes of the most conserved WOX clade in plants affect root and flower development in Arabidopsis

Identifieur interne : 000132 ( France/Analysis ); précédent : 000131; suivant : 000133

Genes of the most conserved WOX clade in plants affect root and flower development in Arabidopsis

Auteurs : Yves Deveaux [France] ; Claire Toffano-Nioche [France] ; Gaelle Claisse [France] ; Vincent Thareau [France] ; Halima Morin [France] ; Patrick Laufs [France] ; Hervé Moreau [France] ; Martin Kreis [France] ; Alain Lecharny [France]

Source :

RBID : PMC:2584047

Abstract

Background

The Wuschel related homeobox (WOX) family proteins are key regulators implicated in the determination of cell fate in plants by preventing cell differentiation. A recent WOX phylogeny, based on WOX homeodomains, showed that all of the Physcomitrella patens and Selaginella moellendorffii WOX proteins clustered into a single orthologous group. We hypothesized that members of this group might preferentially share a significant part of their function in phylogenetically distant organisms. Hence, we first validated the limits of the WOX13 orthologous group (WOX13 OG) using the occurrence of other clade specific signatures and conserved intron insertion sites. Secondly, a functional analysis using expression data and mutants was undertaken.

Results

The WOX13 OG contained the most conserved plant WOX proteins including the only WOX detected in the highly proliferating basal unicellular and photosynthetic organism Ostreococcus tauri. A large expansion of the WOX family was observed after the separation of mosses from other land plants and before monocots and dicots have arisen. In Arabidopsis thaliana, AtWOX13 was dynamically expressed during primary and lateral root initiation and development, in gynoecium and during embryo development. AtWOX13 appeared to affect the floral transition. An intriguing clade, represented by the functional AtWOX14 gene inside the WOX13 OG, was only found in the Brassicaceae. Compared to AtWOX13, the gene expression profile of AtWOX14 was restricted to the early stages of lateral root formation and specific to developing anthers. A mutational insertion upstream of the AtWOX14 homeodomain sequence led to abnormal root development, a delay in the floral transition and premature anther differentiation.

Conclusion

Our data provide evidence in favor of the WOX13 OG as the clade containing the most conserved WOX genes and established a functional link to organ initiation and development in Arabidopsis, most likely by preventing premature differentiation. The future use of Ostreococcus tauri and Physcomitrella patens as biological models should allow us to obtain a better insight into the functional importance of WOX13 OG genes.


Url:
DOI: 10.1186/1471-2148-8-291
PubMed: 18950478
PubMed Central: 2584047


Affiliations:


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PMC:2584047

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<sec>
<title>Background</title>
<p>The Wuschel related homeobox (WOX) family proteins are key regulators implicated in the determination of cell fate in plants by preventing cell differentiation. A recent WOX phylogeny, based on WOX homeodomains, showed that all of the
<italic>Physcomitrella patens </italic>
and
<italic>Selaginella moellendorffii </italic>
WOX proteins clustered into a single orthologous group. We hypothesized that members of this group might preferentially share a significant part of their function in phylogenetically distant organisms. Hence, we first validated the limits of the WOX13 orthologous group (WOX13 OG) using the occurrence of other clade specific signatures and conserved intron insertion sites. Secondly, a functional analysis using expression data and mutants was undertaken.</p>
</sec>
<sec>
<title>Results</title>
<p>The WOX13 OG contained the most conserved plant WOX proteins including the only WOX detected in the highly proliferating basal unicellular and photosynthetic organism
<italic>Ostreococcus tauri</italic>
. A large expansion of the WOX family was observed after the separation of mosses from other land plants and before monocots and dicots have arisen. In
<italic>Arabidopsis thaliana</italic>
,
<italic>AtWOX13 </italic>
was dynamically expressed during primary and lateral root initiation and development, in gynoecium and during embryo development.
<italic>AtWOX13 </italic>
appeared to affect the floral transition. An intriguing clade, represented by the functional
<italic>AtWOX14 </italic>
gene inside the WOX13 OG, was only found in the Brassicaceae. Compared to
<italic>AtWOX13</italic>
, the gene expression profile of
<italic>AtWOX14 </italic>
was restricted to the early stages of lateral root formation and specific to developing anthers. A mutational insertion upstream of the
<italic>AtWOX14 </italic>
homeodomain sequence led to abnormal root development, a delay in the floral transition and premature anther differentiation.</p>
</sec>
<sec>
<title>Conclusion</title>
<p>Our data provide evidence in favor of the WOX13 OG as the clade containing the most conserved WOX genes and established a functional link to organ initiation and development in Arabidopsis, most likely by preventing premature differentiation. The future use of
<italic>Ostreococcus tauri </italic>
and
<italic>Physcomitrella patens </italic>
as biological models should allow us to obtain a better insight into the functional importance of WOX13 OG genes.</p>
</sec>
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</div1>
</back>
</TEI>
<affiliations>
<list>
<country>
<li>France</li>
</country>
<region>
<li>Languedoc-Roussillon</li>
<li>Occitanie (région administrative)</li>
<li>Île-de-France</li>
</region>
<settlement>
<li>Banyuls sur Mer</li>
<li>Orsay</li>
<li>Versailles</li>
</settlement>
</list>
<tree>
<country name="France">
<region name="Île-de-France">
<name sortKey="Deveaux, Yves" sort="Deveaux, Yves" uniqKey="Deveaux Y" first="Yves" last="Deveaux">Yves Deveaux</name>
</region>
<name sortKey="Claisse, Gaelle" sort="Claisse, Gaelle" uniqKey="Claisse G" first="Gaelle" last="Claisse">Gaelle Claisse</name>
<name sortKey="Kreis, Martin" sort="Kreis, Martin" uniqKey="Kreis M" first="Martin" last="Kreis">Martin Kreis</name>
<name sortKey="Laufs, Patrick" sort="Laufs, Patrick" uniqKey="Laufs P" first="Patrick" last="Laufs">Patrick Laufs</name>
<name sortKey="Lecharny, Alain" sort="Lecharny, Alain" uniqKey="Lecharny A" first="Alain" last="Lecharny">Alain Lecharny</name>
<name sortKey="Moreau, Herve" sort="Moreau, Herve" uniqKey="Moreau H" first="Hervé" last="Moreau">Hervé Moreau</name>
<name sortKey="Morin, Halima" sort="Morin, Halima" uniqKey="Morin H" first="Halima" last="Morin">Halima Morin</name>
<name sortKey="Thareau, Vincent" sort="Thareau, Vincent" uniqKey="Thareau V" first="Vincent" last="Thareau">Vincent Thareau</name>
<name sortKey="Toffano Nioche, Claire" sort="Toffano Nioche, Claire" uniqKey="Toffano Nioche C" first="Claire" last="Toffano-Nioche">Claire Toffano-Nioche</name>
</country>
</tree>
</affiliations>
</record>

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