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Positional cloning and characterization reveal the molecular basis for soybean maturity locus E1 that regulates photoperiodic flowering

Identifieur interne : 001234 ( Main/Merge ); précédent : 001233; suivant : 001235

Positional cloning and characterization reveal the molecular basis for soybean maturity locus E1 that regulates photoperiodic flowering

Auteurs : Zhengjun Xia [République populaire de Chine, Japon] ; Satoshi Watanabe [Japon] ; Tetsuya Yamada [Japon] ; Yasutaka Tsubokura [Japon] ; Hiroko Nakashima [Japon] ; Hong Zhai [République populaire de Chine] ; Toyoaki Anai [Japon] ; Shusei Sato [Japon] ; Toshimasa Yamazaki [Japon] ; Shixiang Lü [République populaire de Chine] ; Hongyan Wu [République populaire de Chine] ; Satoshi Tabata [Japon] ; Kyuya Harada [Japon]

Source :

RBID : PMC:3420212

Abstract

The complex and coordinated regulation of flowering has high ecological and agricultural significance. The maturity locus E1 has a large impact on flowering time in soybean, but the molecular basis for the E1 locus is largely unknown. Through positional cloning, we delimited the E1 locus to a 17.4-kb region containing an intron-free gene (E1). The E1 protein contains a putative bipartite nuclear localization signal and a region distantly related to B3 domain. In the recessive allele, a nonsynonymous substitution occurred in the putative nuclear localization signal, leading to the loss of localization specificity of the E1 protein and earlier flowering. The early-flowering phenotype was consistently observed in three ethylmethanesulfonate-induced mutants and two natural mutations that harbored a premature stop codon or a deletion of the entire E1 gene. E1 expression was significantly suppressed under short-day conditions and showed a bimodal diurnal pattern under long-day conditions, suggesting its response to photoperiod and its dominant effect induced by long day length. When a functional E1 gene was transformed into the early-flowering cultivar Kariyutaka with low E1 expression, transgenic plants carrying exogenous E1 displayed late flowering. Furthermore, the transcript abundance of E1 was negatively correlated with that of GmFT2a and GmFT5a, homologues of FLOWERING LOCUS T that promote flowering. These findings demonstrated the key role of E1 in repressing flowering and delaying maturity in soybean. The molecular identification of the maturity locus E1 will contribute to our understanding of the molecular mechanisms by which a short-day plant regulates flowering time and maturity.


Url:
DOI: 10.1073/pnas.1117982109
PubMed: 22619331
PubMed Central: 3420212

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<title xml:lang="en" level="a" type="main">Positional cloning and characterization reveal the molecular basis for soybean maturity locus
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that regulates photoperiodic flowering</title>
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<name sortKey="Xia, Zhengjun" sort="Xia, Zhengjun" uniqKey="Xia Z" first="Zhengjun" last="Xia">Zhengjun Xia</name>
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<nlm:aff id="aff1">Northeast Institute of Geography and Agroecology,
<institution>Chinese Academy of Sciences</institution>
, Harbin 150081,
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;</nlm:aff>
<country xml:lang="fr">République populaire de Chine</country>
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<institution>National Institute of Agrobiological Sciences</institution>
, Tsukuba 305-8602,
<country>Japan</country>
;</nlm:aff>
<country xml:lang="fr">Japon</country>
<wicri:regionArea># see nlm:aff country strict</wicri:regionArea>
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<name sortKey="Watanabe, Satoshi" sort="Watanabe, Satoshi" uniqKey="Watanabe S" first="Satoshi" last="Watanabe">Satoshi Watanabe</name>
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<nlm:aff id="aff2">Soybean Applied Genomics Research Unit,
<institution>National Institute of Agrobiological Sciences</institution>
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;</nlm:aff>
<country xml:lang="fr">Japon</country>
<wicri:regionArea># see nlm:aff country strict</wicri:regionArea>
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<institution>Hokkaido University</institution>
, Sapporo 060-8589,
<country>Japan</country>
;</nlm:aff>
<country xml:lang="fr">Japon</country>
<wicri:regionArea># see nlm:aff country strict</wicri:regionArea>
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<name sortKey="Tsubokura, Yasutaka" sort="Tsubokura, Yasutaka" uniqKey="Tsubokura Y" first="Yasutaka" last="Tsubokura">Yasutaka Tsubokura</name>
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<nlm:aff id="aff2">Soybean Applied Genomics Research Unit,
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<country>Japan</country>
;</nlm:aff>
<country xml:lang="fr">Japon</country>
<wicri:regionArea># see nlm:aff country strict</wicri:regionArea>
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<name sortKey="Nakashima, Hiroko" sort="Nakashima, Hiroko" uniqKey="Nakashima H" first="Hiroko" last="Nakashima">Hiroko Nakashima</name>
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, Saga 840-8502,
<country>Japan</country>
;</nlm:aff>
<country xml:lang="fr">Japon</country>
<wicri:regionArea># see nlm:aff country strict</wicri:regionArea>
</affiliation>
</author>
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<name sortKey="Zhai, Hong" sort="Zhai, Hong" uniqKey="Zhai H" first="Hong" last="Zhai">Hong Zhai</name>
<affiliation wicri:level="1">
<nlm:aff id="aff1">Northeast Institute of Geography and Agroecology,
<institution>Chinese Academy of Sciences</institution>
, Harbin 150081,
<country>China</country>
;</nlm:aff>
<country xml:lang="fr">République populaire de Chine</country>
<wicri:regionArea># see nlm:aff country strict</wicri:regionArea>
</affiliation>
</author>
<author>
<name sortKey="Anai, Toyoaki" sort="Anai, Toyoaki" uniqKey="Anai T" first="Toyoaki" last="Anai">Toyoaki Anai</name>
<affiliation wicri:level="1">
<nlm:aff id="aff4">Faculty of Agriculture,
<institution>Saga University</institution>
, Saga 840-8502,
<country>Japan</country>
;</nlm:aff>
<country xml:lang="fr">Japon</country>
<wicri:regionArea># see nlm:aff country strict</wicri:regionArea>
</affiliation>
</author>
<author>
<name sortKey="Sato, Shusei" sort="Sato, Shusei" uniqKey="Sato S" first="Shusei" last="Sato">Shusei Sato</name>
<affiliation wicri:level="1">
<nlm:aff wicri:cut="; and" id="aff5">Department of Plant Genome Research,
<institution>Kazusa DNA Research Institute</institution>
, Kisarazu 292-0812,
<country>Japan</country>
</nlm:aff>
<country xml:lang="fr">Japon</country>
<wicri:regionArea># see nlm:aff country strict</wicri:regionArea>
</affiliation>
</author>
<author>
<name sortKey="Yamazaki, Toshimasa" sort="Yamazaki, Toshimasa" uniqKey="Yamazaki T" first="Toshimasa" last="Yamazaki">Toshimasa Yamazaki</name>
<affiliation wicri:level="1">
<nlm:aff id="aff6">Biomolecular Research Unit,
<institution>National Institute of Agrobiological Sciences</institution>
, Tsukuba 305-8602,
<country>Japan</country>
</nlm:aff>
<country xml:lang="fr">Japon</country>
<wicri:regionArea># see nlm:aff country strict</wicri:regionArea>
</affiliation>
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<name sortKey="Lu, Shixiang" sort="Lu, Shixiang" uniqKey="Lu S" first="Shixiang" last="Lü">Shixiang Lü</name>
<affiliation wicri:level="1">
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<institution>Chinese Academy of Sciences</institution>
, Harbin 150081,
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;</nlm:aff>
<country xml:lang="fr">République populaire de Chine</country>
<wicri:regionArea># see nlm:aff country strict</wicri:regionArea>
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<name sortKey="Wu, Hongyan" sort="Wu, Hongyan" uniqKey="Wu H" first="Hongyan" last="Wu">Hongyan Wu</name>
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<nlm:aff id="aff1">Northeast Institute of Geography and Agroecology,
<institution>Chinese Academy of Sciences</institution>
, Harbin 150081,
<country>China</country>
;</nlm:aff>
<country xml:lang="fr">République populaire de Chine</country>
<wicri:regionArea># see nlm:aff country strict</wicri:regionArea>
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<name sortKey="Tabata, Satoshi" sort="Tabata, Satoshi" uniqKey="Tabata S" first="Satoshi" last="Tabata">Satoshi Tabata</name>
<affiliation wicri:level="1">
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<country xml:lang="fr">Japon</country>
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, Tsukuba 305-8602,
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;</nlm:aff>
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<wicri:regionArea># see nlm:aff country strict</wicri:regionArea>
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<front>
<div type="abstract" xml:lang="en">
<p>The complex and coordinated regulation of flowering has high ecological and agricultural significance. The maturity locus
<italic>E1</italic>
has a large impact on flowering time in soybean, but the molecular basis for the
<italic>E1</italic>
locus is largely unknown. Through positional cloning, we delimited the
<italic>E1</italic>
locus to a 17.4-kb region containing an intron-free gene (
<italic>E1</italic>
). The E1 protein contains a putative bipartite nuclear localization signal and a region distantly related to B3 domain. In the recessive allele, a nonsynonymous substitution occurred in the putative nuclear localization signal, leading to the loss of localization specificity of the E1 protein and earlier flowering. The early-flowering phenotype was consistently observed in three ethylmethanesulfonate-induced mutants and two natural mutations that harbored a premature stop codon or a deletion of the entire
<italic>E1</italic>
gene.
<italic>E1</italic>
expression was significantly suppressed under short-day conditions and showed a bimodal diurnal pattern under long-day conditions, suggesting its response to photoperiod and its dominant effect induced by long day length. When a functional
<italic>E1</italic>
gene was transformed into the early-flowering cultivar Kariyutaka with low
<italic>E1</italic>
expression, transgenic plants carrying exogenous
<italic>E1</italic>
displayed late flowering. Furthermore, the transcript abundance of
<italic>E1</italic>
was negatively correlated with that of
<italic>GmFT2a</italic>
and
<italic>GmFT5a</italic>
, homologues of
<italic>FLOWERING LOCUS T</italic>
that promote flowering. These findings demonstrated the key role of
<italic>E1</italic>
in repressing flowering and delaying maturity in soybean. The molecular identification of the maturity locus
<italic>E1</italic>
will contribute to our understanding of the molecular mechanisms by which a short-day plant regulates flowering time and maturity.</p>
</div>
</front>
</TEI>
</record>

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