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首页> 外文期刊>Molecular biology reports >Transcriptome analysis of miRNAs expression reveals novel insights into adventitious root formation in lotus (Nelumbo nucifera Gaertn.)
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Transcriptome analysis of miRNAs expression reveals novel insights into adventitious root formation in lotus (Nelumbo nucifera Gaertn.)

机译:MiRNA表达的转录组分析显示莲花(Nelumbo Nucifera Gaertn的不定根形成的新颖洞察力

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MicroRNA (miRNA)-regulated gene expression plays an important role in various plant metabolic processes. Although adventitious roots are critical to plant growth in lotus, the role of miRNA in AR formation remains unclear. Expression profiling of miRNAs was carried out during three different developmental stages of ARs in lotus: no induction of AR stage, initial stage of ARs, and maximum number of ARs. These data are referenced with the whole lotus genome as already identified through high-throughput tag-sequencing. 1.3x10(7) tags were achieved, of which 11,035,798, 11,436,062, and 12,542,392 clean tags were obtained from each stage, respectively. miRNA analysis revealed that miRNAs were less than 10% among all small RNAs. In total, 310 miRNAs (240 up-regulated and 70 down-regulated miRNAs) exhibited expression changes from the no induction stage to the initial stage. Moreover, expression of 140 miRNAs was increased and that of 123 miRNAs was decreased between the initial and maximum AR stages, mostly by similar to-4-4-fold. miRNAs involved in metabolic pathways differed between the initial stage/no induction stage and the maximum number stage/initial stage. Several miRNAs in the initial stage/no induction stage were related to plant hormone metabolism and pyruvate and MAPK pathways, while major miRNAs in the maximum number stage/initial stage were involved in carbohydrate metabolism. All differentially expressed miRNAs associated with AR formation from the initial stage to maximum stage were also analyzed. The expression of 16 miRNAs was determined using qRT-PCR. This work provides a general insight into miRNA regulation during AR formation in lotus.
机译:microRNA(miRNA) - 再高温基因表达在各种植物代谢过程中起重要作用。虽然不定根对莲花植物生长至关重要,但MiRNA在AR形成中的作用仍不清楚。 MiRNA的表达分析在莲花中的三种不同发育阶段进行:无诱导AR阶段,ARS的初始阶段和最大数量。通过高吞吐量标签排序已经识别的整个Lotus Genome引用这些数据。实现了1.3X10(7)标签,其中分别从每个阶段获得11,035,798,11,436,062和12,542,392个清洁标签。 miRNA分析显示,MIRNA在所有小RNA中的少于10%。总共,310 miRNA(240个上调和70个下调的miRNA)表现出从NO诱导阶段到初始阶段的表达变化。此外,增加了140 miRNA的表达,并且在初始和最大AR阶段之间减少了123 miRNA,主要是与-4-4倍相似。涉及代谢途径的miRNA在初始阶段/无诱导阶段和最大数量级/初始阶段之间不同。初始阶段/无诱导阶段的几种miRNA与植物激素代谢和丙酮酸和映射途径有关,而最大数量阶段/初始阶段的主要miRNA涉及碳水化合物代谢。还分析了与初始阶段与最大阶段相关的所有差异表达的miRNA。使用QRT-PCR测定16mIRNA的表达。这项工作在莲花中的AR形成期间提供了一般的洞察MiRNA规则。

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