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Identification of lncRNAs and their regulatory relationships with target genes and corresponding miRNAs in melon response to powdery mildew fungi

机译:粉末霉菌的蛋白酶反应中LNCRNA的鉴定及其与靶基因的调节关系及其对应的MIRNA

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摘要

Melon (Cucumis melo L.), an economically beneficial crop widely cultivated around the world, is vulnerable to powdery mildew (PM). However, the studies on molecular mechanism of melon response to PM fungi is still limited. Long non coding RNAs (IncRNAs) have emerged as new regulators in plants response to biotic stresses. We predicted and identified the intricate regulatory roles of IncRNAs in melon response to PM fungi. A total of 539 IncRNAs were identified from PM-resistant (MR-1) and susceptible melon (Top Mark), in which 254 were significantly altered after PM fungi infection. Multiple target genes of IncRNAs were found to be involved in the hydrolysis of chitin, callose deposition and cell wall thickening, plant-pathogen interaction and plant hormone signal transduction pathway. Additionally, a total of 42 IncRNAs possess the various functions with microRNAs (miRNAs), including IncRNAs that are targeted by miRNAs and function as miRNA precursors or miRNA sponges. These findings provide a comprehensive view of potentially functional IncRNAs, corresponding target genes and related IncRNA-miRNA pairs, which will greatly increase our knowledge of the mechanism underlying susceptibility and resistance to PM in melon.
机译:甜瓜(Cucumis Melo L.)是世界各地的经济上受益作物,很容易受到粉状霉菌(PM)。然而,对PM真菌的甜瓜反应的分子机制的研究仍然有限。长期非编码RNA(Incrnas)已成为植物中的新调节因子对生物应激的反应。我们预测并确定了Incrnas对PM真菌的复杂调节作用。从PM抗性(MR-1)和敏感的甜瓜(顶部标记)中鉴定了总共539个Incrnas,其中PM真菌感染后254显着改变。发现Incrnas的多种靶基因涉及丁蛋白的水解,胼舌和细胞壁增厚,植物 - 病原体相互作用和植物激素信号转导途径。另外,共有42个Incrnas具有含有MicroRNAS(miRNA)的各种功能,包括由miRNA靶向的Incrnas并用作miRNA前体或miRNA海绵。这些发现提供了潜在的功能性Incrnas,相应的靶基因和相关InclNA-miRNA对的综合观点,这将大大提高我们对甜瓜中PM潜在易感性和抗性的机制的了解。

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