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Transcriptomic Analysis for Different Sex Types of Ricinus communis L. during Development from Apical Buds to Inflorescences by Digital Gene Expression Profiling

Identifieur interne : 000015 ( Main/Exploration ); précédent : 000014; suivant : 000016

Transcriptomic Analysis for Different Sex Types of Ricinus communis L. during Development from Apical Buds to Inflorescences by Digital Gene Expression Profiling

Auteurs : Meilian Tan [République populaire de Chine] ; Jianfeng Xue [République populaire de Chine] ; Lei Wang [République populaire de Chine] ; Jiaxiang Huang [République populaire de Chine] ; Chunling Fu [République populaire de Chine] ; Xingchu Yan [République populaire de Chine]

Source :

RBID : PMC:4751274

Abstract

The castor plant (Ricinus communis L.) is a versatile industrial oilseed crop with a diversity of sex patterns, its hybrid breeding for improving yield and high purity is still hampered by genetic instability of female and poor knowledge of sex expression mechanisms. To obtain some hints involved in sex expression and provide the basis for further insight into the molecular mechanisms of castor plant sex determination, we performed DGE analysis to investigate differences between the transcriptomes of apices and racemes derived from female (JXBM0705P) and monoecious (JXBM0705M) lines. A total of 18 DGE libraries were constructed from the apices and racemes of a wild monoecious line and its isogenic female derivative at three stages of apex development, in triplicate. Approximately 5.7 million clean tags per library were generated and mapped to the reference castor genome. Transcriptomic analysis showed that identical dynamic changes of gene expression were indicated in monoecious and female apical bud during its development from vegetation to reproduction, with more genes expressed at the raceme formation and infant raceme stages compare to the early leaf bud stage. More than 3000 of differentially expressed genes (DEGs) were detected in Ricinus apices at three developmental stages between two different sex types. A number of DEGs involved in hormone response and biosynthesis, such as auxin response and transport, transcription factors, signal transduction, histone demethylation/methylation, programmed cell death, and pollination, putatively associated with sex expression and reproduction were discovered, and the selected DEGs showed consistent expression between qRT-PCR validation and the DGE patterns. Most of those DEGs were suppressed at the early leaf stage in buds of the mutant, but then activated at the following transition stage (5-7-leaf stage) of buds in the mutant, and ultimately, the number of up-regulated DEGs was equal to that of down-regulation in the small raceme of the mutant. In this study, a large number of DEGs and some suggestions involved in sex expression and reproduction were discovered using DGE analysis, which provides large information and valuable hints for next insights into the molecular mechanism of sex determination. It is useful for other further studies in Ricinus.


Url:
DOI: 10.3389/fpls.2015.01208
PubMed: 26904031
PubMed Central: 4751274


Affiliations:


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Le document en format XML

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<p>The castor plant (
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L.) is a versatile industrial oilseed crop with a diversity of sex patterns, its hybrid breeding for improving yield and high purity is still hampered by genetic instability of female and poor knowledge of sex expression mechanisms. To obtain some hints involved in sex expression and provide the basis for further insight into the molecular mechanisms of castor plant sex determination, we performed DGE analysis to investigate differences between the transcriptomes of apices and racemes derived from female (JXBM0705P) and monoecious (JXBM0705M) lines. A total of 18 DGE libraries were constructed from the apices and racemes of a wild monoecious line and its isogenic female derivative at three stages of apex development, in triplicate. Approximately 5.7 million clean tags per library were generated and mapped to the reference castor genome. Transcriptomic analysis showed that identical dynamic changes of gene expression were indicated in monoecious and female apical bud during its development from vegetation to reproduction, with more genes expressed at the raceme formation and infant raceme stages compare to the early leaf bud stage. More than 3000 of differentially expressed genes (DEGs) were detected in
<italic>Ricinus</italic>
apices at three developmental stages between two different sex types. A number of DEGs involved in hormone response and biosynthesis, such as auxin response and transport, transcription factors, signal transduction, histone demethylation/methylation, programmed cell death, and pollination, putatively associated with sex expression and reproduction were discovered, and the selected DEGs showed consistent expression between qRT-PCR validation and the DGE patterns. Most of those DEGs were suppressed at the early leaf stage in buds of the mutant, but then activated at the following transition stage (5-7-leaf stage) of buds in the mutant, and ultimately, the number of up-regulated DEGs was equal to that of down-regulation in the small raceme of the mutant. In this study, a large number of DEGs and some suggestions involved in sex expression and reproduction were discovered using DGE analysis, which provides large information and valuable hints for next insights into the molecular mechanism of sex determination. It is useful for other further studies in
<italic>Ricinus</italic>
.</p>
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</analytic>
</biblStruct>
<biblStruct>
<analytic>
<author>
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</author>
<author>
<name sortKey="Quinn, J A" uniqKey="Quinn J">J. A. Quinn</name>
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</analytic>
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<biblStruct>
<analytic>
<author>
<name sortKey="Yu, J" uniqKey="Yu J">J. Yu</name>
</author>
<author>
<name sortKey="Hu, S" uniqKey="Hu S">S. Hu</name>
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<author>
<name sortKey="Huang, W" uniqKey="Huang W">W. Huang</name>
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<analytic>
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</listBibl>
</div1>
</back>
</TEI>
<affiliations>
<list>
<country>
<li>République populaire de Chine</li>
</country>
</list>
<tree>
<country name="République populaire de Chine">
<noRegion>
<name sortKey="Tan, Meilian" sort="Tan, Meilian" uniqKey="Tan M" first="Meilian" last="Tan">Meilian Tan</name>
</noRegion>
<name sortKey="Fu, Chunling" sort="Fu, Chunling" uniqKey="Fu C" first="Chunling" last="Fu">Chunling Fu</name>
<name sortKey="Huang, Jiaxiang" sort="Huang, Jiaxiang" uniqKey="Huang J" first="Jiaxiang" last="Huang">Jiaxiang Huang</name>
<name sortKey="Wang, Lei" sort="Wang, Lei" uniqKey="Wang L" first="Lei" last="Wang">Lei Wang</name>
<name sortKey="Xue, Jianfeng" sort="Xue, Jianfeng" uniqKey="Xue J" first="Jianfeng" last="Xue">Jianfeng Xue</name>
<name sortKey="Yan, Xingchu" sort="Yan, Xingchu" uniqKey="Yan X" first="Xingchu" last="Yan">Xingchu Yan</name>
</country>
</tree>
</affiliations>
</record>

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