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Genome-wide identification and characterization of phased small interfering RNA genes in response to Botrytis cinerea infection in Solanum lycopersicum

机译:全基因组鉴定和表征的阶段性小干扰RNA基因响应番茄灰霉病中的灰葡萄孢的感染。

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摘要

Phased small interfering RNAs (phasiRNAs) are encoded by a novel class of genes known as phasiRNA producing (PHAS) genes. These genes play important regulatory roles by targeting protein coding transcripts in plant species. In this study, 91 regions were identified as potential PHAS loci in tomato, with additional evidence that seven of them can be triggered by five miRNAs. Among the identified loci, 51 were located in genic regions, and the remaining 40 were located in intergenic regions. The transient overexpression of PHAS15 and PHAS26 demonstrated that phasiRNAs predicted by PhaseTank were indeed generated from their respective PHAS loci. Using sRNA-seq data from B. cinerea-infected tomato leaves, we identified 50 B. cinerea-responsive phasiRNAs with increased abundance and five with decreased abundance. Moreover, 164 targets of these differentially expressed phasiRNAs were predicted, and 94 of them were confirmed experimentally using degradome data. Gene ontology analysis of the targets revealed an enrichment of genes with functions related to defense responses and signaling regulation. These results suggest that a large number of endogenous siRNAs, such as phasiRNAs, have not yet been identified in tomato and underscore the urgent need to systematically identify and functionally analyze siRNAs in tomato.
机译:分阶段的小干扰RNA(phasiRNA)由一类新型的称为phasiRNA产生(PHAS)基因的基因编码。这些基因通过靶向植物物种中的蛋白质编码转录本发挥重要的调节作用。在这项研究中,鉴定出91个区域为番茄中潜在的PHAS基因座,另外的证据表明,其中5个miRNA可以触发其中7个区域。在已鉴定的基因座中,有51个位于基因区,其余40个位于基因间区。 PHAS15和PHAS26的瞬时过表达证明,PhaseTank预测的phasiRNA确实是由它们各自的PHAS基因座产生的。使用来自B. cinerea感染的番茄叶片的sRNA-seq数据,我们确定了50个B. cinerea响应的phasiRNA,其丰度增加,而五个则降低。此外,预测了这些差异表达的phasiRNA的164个靶标,并使用降解组数据实验确定了其中的94个。对目标的基因本体分析表明,具有与防御反应和信号调节相关的功能的基因丰富。这些结果表明,尚未在番茄中鉴定出大量内源性siRNA,例如phasiRNA,并强调了系统鉴定和功能分析番茄中siRNA的迫切需求。

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