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The EIL transcription factor family in soybean: Genome‐wide identification expression profiling and genetic diversity analysis

机译:大豆EIL转录因子家族:全基因组鉴定表达谱分析和遗传多样性分析

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摘要

The ETHYLENE INSENSITIVE3‐LIKE (EIL) transcription factor family plays a critical role in the ethylene signaling pathway, which regulates a broad spectrum of plant growth and developmental processes, as well as defenses to myriad stresses. Although genome‐wide analysis of this family has been carried out for several plant species, no comprehensive analysis of the EIL gene family in soybean has been reported so far. Furthermore, there are few studies on the functions of EIL genes in soybean. In this study, we identified 12 soybean (Gm) EIL genes, which we divided into three groups based on their phylogenetic relationships. We then detected their duplication status and found that most of the GmEIL genes have duplicated copies derived from two whole‐genome duplication events. These duplicated genes underwent strong negative selection during evolution. We further analyzed the transcript profiles of GmEIL genes using the transcriptome data and found that their spatio‐temporal and stress expression patterns varied considerably. For example, GmEIL1–GmEIL5 were found to be strongly expressed in almost every sample, while GmEIL8–GmEIL12 exhibited low expression, or were not expressed at all. Additionally, these genes showed different responses to dehydration, salinity and phosphate starvation. Finally, we surveyed genetic variations of these genes in 302 resequenced wild soybeans, landraces and improved soybean cultivars. Our data showed that most GmEIL genes are well conserved, and are not modified in domesticated or improved cultivars. Together, these findings provide a potentially valuable resource for characterizing the GmEIL gene family and lay the basis for further elucidation of their molecular mechanisms.
机译:乙烯非感性LIKE(EIL)转录因子家族在乙烯信号传导途径中起着至关重要的作用,该信号传导途径调节着植物的广泛生长和发育过程以及对多种胁迫的防御作用。尽管已经针对几种植物对该基因家族进行了全基因组分析,但迄今为止,尚未报道对大豆EIL基因家族的全面分析。此外,关于大豆中的EIL基因的功能的研究很少。在这项研究中,我们鉴定了12个大豆(Gm)EIL基因,根据它们的系统发生关系将其分为三类。然后,我们检测了它们的重复状态,发现大多数GmEIL基因都具有源自两个全基因组重复事件的重复拷贝。这些重复的基因在进化过程中经历了强烈的负选择。我们使用转录组数据进一步分析了GmEIL基因的转录谱,发现它们的时空和应激表达模式差异很大。例如,发现GmEIL1–GmEIL5在几乎每个样品中都强烈表达,而GmEIL8–GmEIL12显示低表达或根本不表达。此外,这些基因对脱水,盐度和磷酸盐饥饿表现出不同的反应。最后,我们调查了302个重新排序的野生大豆,地方品种和改良大豆品种中这些基因的遗传变异。我们的数据显示,大多数GmEIL基因保存良好,在驯化或改良的品种中未修饰。总之,这些发现为表征GmEIL基因家族提供了潜在的宝贵资源,并为进一步阐明其分子机制奠定了基础。

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