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首页> 外文期刊>BMC Plant Biology >Genome-wide identification of alternate bearing-associated microRNAs (miRNAs) in olive (Olea europaea L.)
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Genome-wide identification of alternate bearing-associated microRNAs (miRNAs) in olive (Olea europaea L.)

机译:全基因组范围内鉴定橄榄中其他轴承相关的microRNA(miRNA)(Olea europaea L.)

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Background Alternate bearing is a widespread phenomenon among crop plants, defined as the tendency of certain fruit trees to produce a high-yield crop one year ("on-year"), followed by a low-yield or even no crop the following year ( "off-year"). Several factors may affect the balance between such developmental phase-transition processes. Among them are the microRNA (miRNA), being gene-expression regulators that have been found to be involved as key determinants in several physiological processes. Results Six olive (Olea europaea L. cv. Ayvalik variety) small RNA libraries were constructed from fruits (ripe and unripe) and leaves (”on year” and ”off year” leaves in July and in November, respectively) and sequenced by high-throughput Illumina sequencing. The RNA was retrotranscribed and sequenced using the high-throughput Illumina platform. Bioinformatics analyses of 93,526,915 reads identified 135 conserved miRNA, belonging to 22 miRNA families in the olive. In addition, 38 putative novel miRNAs were discovered in the datasets. Expression of olive tree miRNAs varied greatly among the six libraries, indicating the contribution of diverse miRNA in balancing between reproductive and vegetative phases. Predicted targets of miRNA were categorized into 108 process ontology groups with significance abundance. Among those, potential alternate bearing-associated processes were found, such as development, hormone-mediated signaling and organ morphogenesis. The KEGG analyses revealed that the miRNA-targeted genes are involved in seven main pathways, belonging to carbohydrate metabolism and hormone signal-transduction pathways. Conclusion A comprehensive study on olive miRNA related to alternate bearing was performed. Regulation of miRNA under different developmental phases and tissues indicated that control of nutrition and hormone, together with flowering processes had a noteworthy impact on the olive tree alternate bearing. Our results also provide significant data on the miRNA-fruit development interaction and advance perspectives in the miRNA profile of the olive tree.
机译:背景技术轮作是农作物中普遍存在的现象,定义为某些果树在一年(“按年”)上高产的趋势,第二年又是低产甚至不收成的趋势( “非年度”)。几个因素可能会影响这种发展相变过程之间的平衡。其中包括microRNA(miRNA),它是基因表达调节剂,已被发现是几个生理过程的关键决定因素。结果从果实(成熟和未成熟)和叶片(分别在7月和11月分别为“一年生”和“异年”叶片)构建了六个橄榄(Olea europaea L. cv。Ayvalik变种)小RNA文库,并按高分通量Illumina测序。使用高通量Illumina平台逆转录RNA并测序。对93,526,915个读数进行的生物信息学分析确定了135个保守的miRNA,属于橄榄中的22个miRNA家族。此外,在数据集中发现了38个推定的新型miRNA。在六个文库中,橄榄树miRNA的表达差异很大,这表明多样化的miRNA在生殖和营养期之间的平衡中所起的作用。 miRNA的预测目标被分为108个过程本体组,具有显着的丰富性。在这些之中,发现了潜在的与轴承相关的替代过程,例如发育,激素介导的信号传导和器官形态发生。 KEGG分析显示,针对miRNA的基因涉及七个主要途径,分别属于碳水化合物代谢和激素信号转导途径。结论进行了与轮换性状相关的橄榄miRNA的综合研究。 miRNA在不同发育阶段和组织下的调控表明,营养和激素的控制以及开花过程对橄榄树的交替结实具有显着影响。我们的研究结果还提供了有关miRNA与果实发育相互作用的重要数据,并提供了橄榄树miRNA概况的最新观点。

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