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Expression profiles of four BES1/BZR1 homologous genes encoding bHLH transcription factors in Arabidopsis.


ABSTRACT: Arabidopsis bHLH-type transcription factors-BRASSINOSTEROID INSENSITIVE 1-EMS-SUPPRESSOR 1 (BES1) and BRASSINAZOLE RESISTANT 1 (BZR1)-play key roles in brassinosteroid (BR) signaling. By contrast, the functions of the other four BES1/BZR1 homologs (BEH1-4) remain unknown. Here, we describe the detailed expression profiles of the BES1/BZR1 family genes. Their expressions were distinct regarding growth-stage dependence and organ specificity but exhibited some overlaps as well. Furthermore, their mRNA levels mostly remained unchanged responding to seven non-BR phytohormones. However, BEH1 and BEH2 were downregulated by brassinolide, suggesting a close association with the BR function. Additionally, BEH4 was ubiquitously expressed throughout the life of the plant but displayed some expression preference. For instance, BEH4 expression was limited to guard cells and the adjacent pavement cells in the leaf epidermis and was induced during growth progression in very young seedlings, suggesting that BEH4 is specifically regulated in certain contexts, although it is almost constitutively controlled.

SUBMITTER: Otani Y 

PROVIDER: S-EPMC7251199 | biostudies-literature | 2020 May

REPOSITORIES: biostudies-literature

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Expression profiles of four <i>BES1</i>/<i>BZR1</i> homologous genes encoding bHLH transcription factors in <i>Arabidopsis</i>.

Otani Yui Y   Tomonaga Yusuke Y   Tokushige Kenya K   Kamimura Miyu M   Sasaki Azusa A   Nakamura Yasushi Y   Nakamura Takako T   Matsuo Tomoaki T   Okamoto Shigehisa S  

Journal of pesticide science 20200501 2


<i>Arabidopsis</i> bHLH-type transcription factors-BRASSINOSTEROID INSENSITIVE 1-EMS-SUPPRESSOR 1 (BES1) and BRASSINAZOLE RESISTANT 1 (BZR1)-play key roles in brassinosteroid (BR) signaling. By contrast, the functions of the other four BES1/BZR1 homologs (BEH1-4) remain unknown. Here, we describe the detailed expression profiles of the <i>BES1</i>/<i>BZR1</i> family genes. Their expressions were distinct regarding growth-stage dependence and organ specificity but exhibited some overlaps as well.  ...[more]

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