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Cloning and characterization of miRNAs and their targets, including a novel miRNA-targeted NBS-LRR protein class gene in apple (Golden Delicious).

机译:miRNA及其靶标的克隆和表征,包括苹果中一个靶向miRNA的新型NBS-LRR蛋白类基因(Golden Delicious)。

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摘要

MicroRNA (miRNA) has emerged as an important regulator of gene expression in plants. 146 miRNAs were identified from apple (Malus domestica cv. Golden Delicious) by bioinformatic analysis and RNA library sequencing. From these, 135 were conserved and 11 were novel miRNAs. Target analysis predicted one of the novel miRNAs, Md-miRLn11 (Malus domestica microRNA Ln11), targeted an apple nucleotide-binding site (NBS)-leucine-rich repeat (LRR) class protein coding gene (Md-NBS). 5' RACE assay confirmed the ability of Md-miRLn11 to cleave Md-NBS at the 11-12-nt position. Analysis of the expression of Md-miRLn11 and Md-NBS during the optimum invasion period in 40 apple varieties showed that the expression of Md-NBS gene in resistant varieties is higher than in susceptible varieties, with an inverse pattern for Md-miRLn11. Seedlings from the resistant apple variety 'JiGuan' were used to carry out an Agrobacterium infiltration assay, and then inoculated with the apple leaf spot disease. The result showed a clear decline of disease resistance in JiGuan apples. In contrast, the susceptible variety 'FuJi' infiltrated with the Md-NBS gene showed a significant increase in disease resistance. Based on the above results, we propose that Md-miRLn11 regulates Md-NBS gene expression in particular under the condition of pathogen infection, and that the Md-miRLn11 targeting P-loop site may regulate many NBS-LRR protein class genes in woody plants.
机译:MicroRNA(miRNA)已成为植物中基因表达的重要调节剂。通过生物信息学分析和RNA文库测序,从苹果(Malus domestica cv。Golden Delicious)中鉴定出146种miRNA。从中,保守了135个,新颖的miRNA共有11个。靶标分析预测一种新型的miRNA Md-miRLn11(Malus domestica microRNA Ln11)靶向苹果核苷酸结合位点(NBS)-富含亮氨酸的重复序列(LRR)类蛋白质编码基因(Md-NBS)。 5'RACE分析证实了Md-miRLn11在11-12-nt位置裂解Md-NBS的能力。对40个苹果品种最佳侵染期Md-miRLn11和Md-NBS的表达进行分析,发现抗病品种中Md-NBS基因的表达高于易感品种,Md-miRLn11的表达呈反型。用抗性苹果品种“济冠”的幼苗进行农杆菌浸润试验,然后接种苹果叶斑病。结果表明,吉关苹果的抗病性明显下降。相反,用Md-NBS基因渗透的易感品种“ FuJi”显示出抗病性的显着提高。基于以上结果,我们建议Md-miRLn11尤其在病原体感染的条件下调节Md-NBS基因的表达,并且靶向P环位点的Md-miRLn11可能调节木本植物中的许多NBS-LRR蛋白类基因。

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