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Disruption Mutations of ADA2b and GCN5 Transcriptional Adaptor Genes Dramatically Affect Arabidopsis Growth Development and Gene Expression

机译:ADA2b和GCN5转录衔接子基因的破坏突变戏剧性地影响拟南芥的生长发育和基因表达。

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摘要

We previously identified Arabidopsis genes homologous with the yeast ADA2 and GCN5 genes that encode components of the ADA and SAGA histone acetyltransferase complexes. In this report, we explore the biological roles of the Arabidopsis ADA2b and GCN5 genes. T-DNA insertion mutations in ADA2b and GCN5 were found to have pleiotropic effects on plant growth and development, including dwarf size, aberrant root development, and short petals and stamens in flowers. Approximately 5% of the 8200 genes assayed by DNA microarray analysis showed changes of expression in the mutants, three-fourths of which were upregulated and only half of which were altered similarly in the two mutant strains. In cold acclimation experiments, C-repeat binding factors (CBFs) were induced in the mutants as in wild-type plants, but subsequent transcription of cold-regulated (COR) genes was reduced in both mutants. Remarkably, nonacclimated ada2b-1 (but not gcn5-1) mutant plants were more freezing tolerant than nonacclimated wild-type plants, suggesting that ADA2b may directly or indirectly repress a freezing tolerance mechanism that does not require the expression of CBF or COR genes. We conclude that the Arabidopsis ADA2b and GCN5 proteins have both similar and distinct functions in plant growth, development, and gene expression and may be components of both a common coactivator complex and separate complexes with distinct biological activities.
机译:我们以前鉴定了与酵母ADA2和GCN5基因同源的拟南芥基因,该基因编码ADA和SAGA组蛋白乙酰基转移酶复合物的成分。在本报告中,我们探讨了拟南芥ADA2b和GCN5基因的生物学作用。发现ADA2b和GCN5中的T-DNA插入突变对植物的生长和发育具有多效性,包括矮化大小,异常的根系发育以及花朵的短花瓣和雄蕊。通过DNA芯片分析分析的8200个基因中,大约有5%表现出了突变体的表达变化,其中有四分之三被上调,而只有一半在两个突变体中发生了类似的变化。在冷驯化实验中,与野生型植物一样,在突变体中诱导了C-重复结合因子(CBF),但是在两个突变体中,冷调节(COR)基因的后续转录均降低。值得注意的是,未适应的ada2b-1(但不是gcn5-1)突变植物比未适应的野生型植物更耐冰冻,这表明ADA2b可以直接或间接抑制不需要CBF或COR基因表达的耐冰冻机制。我们得出的结论是,拟南芥ADA2b和GCN5蛋白在植物生长,发育和基因表达中具有相似且截然不同的功能,并且可能是共同的共激活因子复合物和具有不同生物学活性的单独复合物的组成部分。

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