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首页> 外文期刊>Plant molecular biology reporter >Gene Family Analysis of the Arabidopsis NF-YA Transcription Factors Reveals Opposing Abscisic Acid Responses During Seed Germination
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Gene Family Analysis of the Arabidopsis NF-YA Transcription Factors Reveals Opposing Abscisic Acid Responses During Seed Germination

机译:拟南芥NF-YA转录因子的基因家族分析揭示了种子萌发过程中反对的脱落酸反应

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摘要

In the plant kingdom, each of the NUCLEAR FACTOR-Y (NF-Y) transcription factor families, NF-YA, NF-YB, and NF-YC, has undergone a great expansion compared to the animal kingdom. For example, Arabidopsis thaliana has 10 members of each gene family compared to only one in humans. Progress towards understanding the significance of this expansion is limited due to a lack of studies looking at the complete gene family during plant development. In the current study, transgenic overexpression lines were created for all 10 Arabidopsis NF-YA genes and examined for general development and alterations in abscisic acid (ABA)-mediated seed germination. NF-YA overexpression typically led to severe growth retardation and developmental defects, which extended from embryogenesis through to adult plants. Although overexpression of all NF-YA family members consistently led to growth retardation, some transgenic lines were hypersensitive to ABA during germination while others were hyposensitive. The opposing germination phenotypes were associated with the phylogenetic relationships between the NF-YA members. In addition, ABA marker genes were misregulated and ABA induction of gene expression was reduced in the overexpressors. Collectively, this study demonstrates that although NF-Ys have retained high degrees of similarity, they have evolved unique and sometimes opposing roles during plant development
机译:在植物界,与动物界相比,每个核因子-Y(NF-Y)转录因子家族,NF-YA,NF-YB和NF-YC都经历了很大的扩展。例如,拟南芥每个基因家族有10个成员,而人类只有一个。由于缺乏在植物发育过程中寻找完整基因家族的研究,因此了解这种扩增的重要性的进展有限。在当前的研究中,为所有10个拟南芥NF-YA基因创建了转基因过表达品系,并检查了脱落酸(ABA)介导的种子发芽的一般发育和变化。 NF-YA过度表达通常导致严重的生长迟缓和发育缺陷,其从胚胎发生一直延伸到成年植物。尽管所有NF-YA家族成员的过度表达始终导致生长迟缓,但一些转基因品系在萌发过程中对ABA高度敏感,而另一些则低敏。相对的发芽表型与NF-YA成员之间的系统发育关系有关。另外,在过表达者中ABA标记基因被错误调节并且ABA诱导的基因表达减少。总的来说,这项研究表明,尽管NF-Ys保留了高度相似性,但它们在植物发育过程中演变出独特的,有时是相反的作用

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