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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Arabidopsis cytoplasmic N-acetyltransferase, as the ortholog of RimL in E. coli, controls flowering time via the autonomous pathway
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Arabidopsis cytoplasmic N-acetyltransferase, as the ortholog of RimL in E. coli, controls flowering time via the autonomous pathway

机译:拟南芥胞质N-乙酰基转移酶,作为大肠杆菌中RimL的直系同源物,通过自主途径控制开花时间

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摘要

Although some plant nuclear acetyltransferases mediate development, the function(s) of cytoplasmic ones remain unknown. We characterized a putative Arabidopsis N-acetyltransferase 1 gene (AtATF1) orthologous to the Escherichia coli RimL-type N-acetyltransferase gene. Protoplast transient assays and expression pattern analyses in the gene root tips revealed that AtATF1 was localized in the cytoplasm. To investigate the physiology of an ATF-defective mutant, we used RNAi to simultaneously silence three paralogous genes, AtATF1, AtATF2, and AtATF3. Interestingly, the mutant exhibited severely late flowering under long days and short days, although late flowering was slightly reversed by gibberellin or vernalization treatment. We observed increased transcript levels of FLOWERING LOCUS C (a central floral repressor) and its paralogs, MADS AFFECTING FLOWERING 4 and 5 in the mutant. In contrast, transcript levels of FLOWERING LOCUS T and SUPPRESSOR OF OVEREXPRESSION OF CONSTANS1 were decreased. Notably, the mutant also had downregulated transcription of FLOWERING LOCUS D, but not three LDL homologs, an autonomous pathway floral factor. We conclude that cytoplasmic AtATF may regulate the flowering time via the autonomous pathway.
机译:尽管一些植物核乙酰基转移酶介导了发育,但细胞质的功能仍然未知。我们表征了一个假定的拟南芥N-乙酰基转移酶1基因(AtATF1)与大肠杆菌RimL型N-乙酰基转移酶基因同源。基因根尖中的原生质体瞬时分析和表达模式分析表明,AtATF1位于细胞质中。为了研究ATF缺陷型突变体的生理,我们使用RNAi同时沉默了三个旁系基因AtATF1,AtATF2和AtATF3。有趣的是,该突变体在长日和短日下表现出严重的晚开花,尽管晚赤霉素或春化处理略微逆转了开花。我们观察到FLOWERING LOCUS C(中央花卉阻遏物)及其旁系同源物MADS影响FLOWERING 4和5在突变体中的转录水平增加。相比之下,花的位置T和CONSTANS1的过表达抑制子的转录水平降低了。值得注意的是,该突变体还下调了FLOWERING LOCUS D的转录,但没有下调三个LDL同源物(一种自主途径的花卉因子)。我们得出的结论是,细胞质AtATF可能通过自主途径调节开花时间。

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