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首页> 外文期刊>Frontiers in Plant Science >Association Studies in Populus tomentosa Reveal the Genetic Interactions of Pto-MIR156c and Its Targets in Wood Formation
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Association Studies in Populus tomentosa Reveal the Genetic Interactions of Pto-MIR156c and Its Targets in Wood Formation

机译:<斜视> populus tomentosa 揭示<斜体> pTo-miR156c 及其目标在木材形成中的遗传相互作用

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摘要

MicroRNAs (miRNAs) regulate gene expression in many biological processes, but the significance of the interaction between a miRNA and its targets in perennial trees remains largely unknown. Here, we employed transcript profiling and association studies in Populus tomentosa ( Pto ) to decipher the effect of genetic variation and interactions between Pto-miR156c and its potential targets ( Pto-SPL15, Pto-SPL20 , and Pto-SPL25 ) in 435 unrelated individuals from a natural population of P. tomentosa . Single-SNP (single-nucleotide polymorphism) based association studies with analysis of the underlying additive and dominant effects identified 69 significant associations ( P < 0.01), representing 51 common SNPs (minor allele frequency > 0.05) from Pto-MIR156c and its three potential targets, with six wood and growth traits, revealing their common roles in wood formation. Epistasis analysis uncovered 129 significant SNP-SNP associations with ten traits, indicating the potential genetic interactions of Pto-MIR156c and its three putative targets. Interestingly, expression analysis in stem (phloem, cambium, and xylem) revealed that Pto-miR156c expression showed strong negative correlations with Pto-SPL20 ( r = ?0.90, P < 0.01) and Pto-SPL25 ( r = ?0.65, P < 0.01), and a positive correlation with Pto-SPL15 ( r = 0.40, P < 0.01), which also indicated the putative interactions of Pto-miR156c and its potential targets and their common roles in wood formation. Thus, our study provided an alternative approach to decipher the interaction between miRNAs and their targets and to dissect the genetic architecture of complex traits in trees.
机译:Micrornas(miRNA)调节许多生物过程中的基因表达,但MiRNA与其在多年生树木中的靶之间的相互作用的意义仍然很大程度上是未知的。在此,我们使用杨树癌(POTO)的转录物分析和关联研究来破译435个无关个体中PTO-MIR156C及其潜在靶标(PTO-SPR15,PTO-SPL20和PTO-SPL20)之间的遗传变异和相互作用的影响来自P. Tomentosa的自然人口。基于单态SNP(单核苷酸多态性)的关联研究,分析了底层添加剂和显性效应,鉴定了69个显着的关联(P <0.01),代表了来自PTO-MIR156C及其三个潜力的51个常见的SNPS(次要等位基因频率> 0.05)及其三个潜力目标,患有六个木材和生长特征,揭示了他们在木材形成中的共同作用。 Epistasis分析发现129个具有十个性状的重要SNP-SNP关联,表明PTO-MIR156C及其三个推定目标的潜在遗传相互作用。有趣的是,茎(Phloem,Cambium和Xylem)中的表达分析表明,PTO-miR156C表达表达与PTO-SPL20(R = 0.90,P <0.01)和PTO-SPL25(R = 0.65,P <)显示出强的负相关性0.01),与PTO-SPL15(R = 0.40,P <0.01)的正相关,其还表明了PTO-MIR156C及其潜在目标的推定相互作用及其在木材形成中的常见作用。因此,我们的研究提供了替代方法来破译MIRNA和目标之间的相互作用,并将复杂性状的遗传建筑解剖。

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