Melnikova Nataliya V, Dmitriev Alexey A, Belenikin Maxim S, Speranskaya Anna S, Krinitsina Anastasia A, Rachinskaia Olga A, Lakunina Valentina A, Krasnov George S, Snezhkina Anastasiya V, Sadritdinova Asiya F, Uroshlev Leonid A, Koroban Nadezda V, Samatadze Tatiana E, Amosova Alexandra V, Zelenin Alexander V, Muravenko Olga V, Bolsheva Nadezhda L, Kudryavtseva Anna V
Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Vavilov Str. 32, 119991 Moscow, Russia.
Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Vavilov Str. 32, 119991 Moscow, Russia.
Biochimie. 2015 Feb;109:36-41. doi: 10.1016/j.biochi.2014.11.017. Epub 2014 Dec 4.
Effective fertilizer application is necessary to increase crop yields and reduce risk of plant overdosing. It is known that expression level of microRNAs (miRNAs) alters in plants under different nutrient concentrations in soil. The aim of our study was to identify and characterize miRNAs with expression alterations under excessive fertilizer in agriculturally important crop - flax (Linum usitatissimum L.). We have sequenced small RNAs in flax grown under normal and excessive fertilizer using Illumina GAIIx. Over 14 million raw reads was obtained for two small RNA libraries. 84 conserved miRNAs from 20 families were identified. Differential expression was revealed for several flax miRNAs under excessive fertilizer according to high-throughput sequencing data. For 6 miRNA families (miR395, miR169, miR408, miR399, miR398 and miR168) expression level alterations were evaluated on the extended sampling using qPCR. Statistically significant up-regulation was revealed for miR395 under excessive fertilizer. It is known that target genes of miR395 are involved in sulfate uptake and assimilation. However, according to our data alterations of the expression level of miR395 could be associated not only with excess sulfur application, but also with redundancy of other macro- and micronutrients. Furthermore expression level was evaluated for miRNAs and their predicted targets. The negative correlation between miR399 expression and expression of its predicted target ubiquitin-conjugating enzyme E2 gene was shown in flax for the first time. So we suggested miR399 involvement in phosphate regulation in L. usitatissimum. Revealed in our study expression alterations contribute to miRNA role in flax response to excessive fertilizer.
有效施肥对于提高作物产量和降低植物过量施肥风险至关重要。已知在土壤中不同养分浓度条件下,植物体内微小RNA(miRNA)的表达水平会发生改变。我们研究的目的是在具有重要农业价值的作物——亚麻(Linum usitatissimum L.)中,鉴定并表征在过量施肥条件下表达发生改变的miRNA。我们使用Illumina GAIIx对正常施肥和过量施肥条件下生长的亚麻中的小RNA进行了测序。两个小RNA文库获得了超过1400万个原始读数。鉴定出了来自20个家族的84个保守miRNA。根据高通量测序数据,揭示了几种亚麻miRNA在过量施肥条件下的差异表达。对于6个miRNA家族(miR395、miR169、miR408、miR399、miR398和miR168),使用qPCR在扩展样本上评估了表达水平变化。在过量施肥条件下,miR395显示出统计学上显著的上调。已知miR395的靶基因参与硫酸盐的吸收和同化。然而,根据我们的数据,miR395表达水平的改变不仅可能与过量施用硫有关,还可能与其他大量和微量营养素的冗余有关。此外,还评估了miRNA及其预测靶标的表达水平。首次在亚麻中显示了miR399表达与其预测靶标泛素结合酶E2基因表达之间的负相关。因此,我们认为miR399参与亚麻对磷的调节。我们研究中揭示的表达变化有助于了解miRNA在亚麻对过量施肥反应中的作用。