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Integrated Analysis of Small RNA, Transcriptome and Degradome Sequencing Provides New Insights into Floral Development and Abscission in Yellow Lupine (Lupinus luteus L.)

机译:小RNA的综合分析,转录组和可降低测序为黄褐色(Lupinus Luteus L.)的花卉发育和脱落提供了新的见解

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摘要

The floral development in an important legume crop yellow lupine (Lupinus luteus L., Taper cv.) is often affected by the abscission of flowers leading to significant economic losses. Small non-coding RNAs (sncRNAs), which have a proven effect on almost all developmental processes in other plants, might be of key players in a complex net of molecular interactions regulating flower development and abscission. This study represents the first comprehensive sncRNA identification and analysis of small RNA, transcriptome and degradome sequencing data in lupine flowers to elucidate their role in the regulation of lupine generative development. As shedding in lupine primarily concerns flowers formed at the upper part of the inflorescence, we analyzed samples from extreme parts of raceme separately and conducted an additional analysis of pedicels from abscising and non-abscising flowers where abscission zone forms. A total of 394 known and 28 novel miRNAs and 316 phased siRNAs were identified. In flowers at different stages of development 59 miRNAs displayed differential expression (DE) and 46 DE miRNAs were found while comparing the upper and lower flowers. Identified tasiR-ARFs were DE in developing flowers and were strongly expressed in flower pedicels. The DEmiR-targeted genes were preferentially enriched in the functional categories related to carbohydrate metabolism and plant hormone transduction pathways. This study not only contributes to the current understanding of how lupine flowers develop or undergo abscission but also holds potential for research aimed at crop improvement.
机译:重要的豆类作物黄曲羽磺丁(Lupinus Luteus L.,锥度Cv)的花卉发育往往受到脱落的影响,导致了显着的经济损失。小型非编码RNA(SNCRNA),其对几乎所有植物中的所有发育过程产生了成熟的影响,可能是分子相互作用的复杂净的关键参与者,调节花卉发育和脱落。该研究代表了羽扇豆花中小型RNA,转录组和降解数据的第一种综合SnCRNA鉴定和分析,以阐明其在羽扇豆生成发育的调节中的作用。由于羽扇豆的脱落主要涉及在花序的上部形成的花朵,我们分别分析了Raceme的极端部分的样品,并对花梗进行了额外的分析,从脱落区形式的露出和非脓肿花。鉴定了总共394个已知的和28个新的miRNA和316个相位的siRNA。在不同阶段的鲜花中,在比较上下花和下花时,发现差异表达(DE)和46 de miRNA。鉴定的Tasir-Arfs是在开发的花朵中的DE,并且在花花梗中强烈表达。优先富集在与碳水化合物代谢和植物激素转导途径有关的功能类别中的DemiR靶向基因。这项研究不仅有助于目前了解羽扇豆花如何发展或接受脱落,而且还具有针对作物改善的研究潜力。

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