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拟南芥acl5突变体的矮化表型被一个bHLH基因上游开放阅读框中的突变所抑制。

The dwarf phenotype of the Arabidopsis acl5 mutant is suppressed by a mutation in an upstream ORF of a bHLH gene.

作者信息

Imai Akihiro, Hanzawa Yoshie, Komura Mio, Yamamoto Kotaro T, Komeda Yoshibumi, Takahashi Taku

机构信息

Division of Bioscience, Graduate School of Natural Science and Technology, Okayama University, Okayama 700-8530, Japan.

出版信息

Development. 2006 Sep;133(18):3575-85. doi: 10.1242/dev.02535.

Abstract

Loss-of-function mutants of the Arabidopsis thaliana ACAULIS 5 (ACL5) gene, which encodes spermine synthase, exhibit a severe dwarf phenotype. To elucidate the ACL5-mediated regulatory pathways of stem internode elongation, we isolated four suppressor of acaulis (sac) mutants that reverse the acl5 dwarf phenotype. Because these mutants do not rescue the dwarfism of known phytohormone-related mutants, the SAC genes appear to act specifically on the ACL5 pathways. We identify the gene responsible for the dominant sac51-d mutant, which almost completely suppresses the acl5 phenotype. sac51-d disrupts a short upstream open reading frame (uORF) of SAC51, which encodes a bHLH-type transcription factor. Our results indicate that premature termination of the uORF in sac51-d results in an increase in its own transcript level, probably as a result of an increased translation of the main ORF. We suggest a model in which ACL5 plays a role in the translational activation of SAC51, which may lead to the expression of a subset of genes required for stem elongation.

摘要

拟南芥ACAULIS 5(ACL5)基因的功能缺失突变体表现出严重的矮化表型,该基因编码精胺合酶。为了阐明ACL5介导的茎节间伸长调控途径,我们分离出了四个逆转acl5矮化表型的无茎(sac)突变体。由于这些突变体不能挽救已知植物激素相关突变体的矮化现象,SAC基因似乎特异性作用于ACL5途径。我们鉴定出了导致显性sac51-d突变体的基因,该突变体几乎完全抑制了acl5表型。sac51-d破坏了SAC51的一个短上游开放阅读框(uORF),SAC51编码一个bHLH型转录因子。我们的结果表明,sac51-d中uORF的提前终止导致其自身转录水平增加,这可能是由于主要开放阅读框翻译增加所致。我们提出了一个模型,其中ACL5在SAC51的翻译激活中起作用,这可能导致茎伸长所需的一组基因的表达。

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