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Growth Promotion-Related miRNAs in Oncidium Orchid Roots Colonized by the Endophytic Fungus Piriformospora indica

机译:内生真菌Piriformospora indica定植的文心兰兰花根中与生长促进相关的miRNA

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摘要

Piriformospora indica, an endophytic fungus of Sebacinales, colonizes the roots of a wide range of host plants and establishes various benefits for the plants. In this work, we describe miRNAs which are upregulated in Oncidium orchid roots after colonization by the fungus. Growth promotion and vigorous root development were observed in Oncidium hybrid orchid, while seedlings were colonized by P. indica. We performed a genome-wide expression profiling of small RNAs in Oncidium orchid roots either colonized or not-colonized by P. indica. After sequencing, 24,570,250 and 24744,141 clean reads were obtained from two libraries. 13,736 from 17,036,953 unique sequences showed homology to either 86 miRNA families described in 41 plant species, or to 46 potential novel miRNAs, or to 51 corresponding miRNA precursors. The predicted target genes of these miRNAs are mainly involved in auxin signal perception and transduction, transcription, development and plant defense. The expression analysis of miRNAs and target genes demonstrated the regulatory functions they may participate in. This study revealed that growth stimulation of the Oncidium orchid after colonization by P. indica includes an intricate network of miRNAs and their targets. The symbiotic function of P. indica on Oncidium orchid resembles previous findings on Chinese cabbage. This is the first study on growth regulation and development of Oncidium orchid by miRNAs induced by the symbiotic fungus P. indica.
机译:梨形孢子虫(Serifinales的一种内生真菌)在许多寄主植物的根部定植,并为植物带来各种好处。在这项工作中,我们描述了被真菌定殖后文心兰兰花根中上调的miRNA。在文心兰杂种兰花中观察到生长促进和旺盛的根部发育,而幼苗被印度假单胞菌定殖。我们进行了全基因组表达谱分析,该基因组是在印度ci(P。indica)定殖或未定殖的文心兰兰花根中的小RNA。测序后,从两个文库中获得了24,570,250和24744,141的干净读数。来自17,036,953个独特序列的13,736个与41种植物中描述的86个miRNA家族,46种潜在的新型miRNA或51种相应的miRNA前体具有同源性。这些miRNA的预测靶基因主要参与植物生长素信号的感知和转导,转录,发育和植物防御。 miRNA和靶基因的表达分析证明了它们可能参与的调节功能。这项研究表明,印度P虫定殖后,兰花兰的生长刺激包括miRNA及其靶的复杂网络。印度P对兰花兰的共生功能类似于先前在大白菜上的发现。这是关于由共生真菌印度假单胞菌诱导的miRNA对兰花兰生长和调控的首次研究。

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