首页> 外文期刊>Frontiers in Plant Science >Genome-wide digital transcript analysis of putative fruitlet abscission related genes regulated by ethephon in litchi
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Genome-wide digital transcript analysis of putative fruitlet abscission related genes regulated by ethephon in litchi

机译:荔枝乙烯利调控的假定小果实脱落相关基因的全基因组数字转录分析

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The high level of physiological fruitlet abscission in litchi ( Litchi chinensis Sonn.) causes severe yield loss. Cell separation occurs at the fruit abscission zone (FAZ) and can be triggered by ethylene. However, a deep knowledge of the molecular events occurring in the FAZ is still unknown. Here, genome-wide digital transcript abundance (DTA) analysis of putative fruit abscission related genes regulated by ethephon in litchi were studied. More than 81 million high quality reads from seven ethephon treated and untreated control libraries were obtained by high-throughput sequencing. Through DTA profile analysis in combination with Gene Ontology and KEGG pathway enrichment analyses, a total of 2730 statistically significant candidate genes were involved in the ethephon-promoted litchi fruitlet abscission. Of these, there were 1867 early-responsive genes whose expressions were up- or down-regulated from 0 to 1 d after treatment. The most affected genes included those related to ethylene biosynthesis and signaling, auxin transport and signaling, transcription factors (TFs), protein ubiquitination, ROS response, calcium signal transduction, and cell wall modification. These genes could be clustered into four groups and 13 subgroups according to their similar expression patterns. qRT-PCR displayed the expression pattern of 41 selected candidate genes, which proved the accuracy of our DTA data. Ethephon treatment significantly increased fruit abscission and ethylene production of fruitlet. The possible molecular events to control the ethephon-promoted litchi fruitlet abscission were prompted out. The increased ethylene evolution in fruitlet would suppress the synthesis and polar transport of auxin and trigger abscission signaling. To the best of our knowledge, it is the first time to monitor the gene expression profile occurring in the FAZ-enriched pedicel during litchi fruit abscission induced by ethephon on the genome-wide level. This study will contribute to a better understanding for the molecular regulatory mechanism of fruit abscission in litchi.
机译:荔枝(Litchi chinensis Sonn。)的生理性小穗脱落现象高水平导致严重的产量损失。细胞分离发生在果实脱落区(FAZ),并可能被乙烯触发。但是,对于在FAZ中发生的分子事件的深入了解仍然未知。在这里,研究了荔枝中乙烯利调节的与果实脱落相关基因的全基因组数字转录丰度(DTA)分析。通过高通量测序,从七个乙烯利处理过的和未处理过的对照文库中获得了超过8,100万条高质量读物。通过DTA谱分析,基因本体论和KEGG途径富集分析,总共有2730个具有统计学意义的候选基因参与了乙烯利促进的荔枝小实果脱落。其中,有1867个早期反应基因在治疗后0到1 d内表达上调或下调。受影响最严重的基因包括与乙烯生物合成和信号传导,生长素运输和信号传导,转录因子(TFs),蛋白质泛素化,ROS反应,钙信号传导和细胞壁修饰有关的基因。根据它们的相似表达模式,这些基因可以分为四个组和13个亚组。 qRT-PCR显示了41个选定候选基因的表达模式,证明了我们DTA数据的准确性。乙烯利处理显着增加了果实的脱落和果实的乙烯产量。提示了可能的分子事件来控制乙烯利促进的荔枝小果脱落。小果实中乙烯进化的增加会抑制生长素的合成和极性运输,并引发脱落信号。据我们所知,这是第一次在全基因组水平上监测乙烯利引起的荔枝果实脱落期间富含FAZ的花梗中的基因表达谱。这项研究将有助于更好地了解荔枝果实脱落的分子调控机制。

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