Centre for Soybean Research of the State Key Laboratory of Agrobiotechnology and School of Life Sciences, The Chinese University of Hong Kong, Hong Kong, China.
Department of Biotechnology, Chonnam National University, Yeosu 59626, Korea.
Genes (Basel). 2022 Jan 26;13(2):228. doi: 10.3390/genes13020228.
Natural antisense transcripts (NATs) have been generally reported as negative regulators of their sense counterparts. Multidrug and toxic compound extrusion (MATE) proteins mediate the transport of various substrates. Although s have been identified genome-wide in various plant species, their transcript regulators remain unclear. Here, using the publicly available strand-specific RNA-seq datasets of (wild soybean) which have the data from various tissues including developing pods, developing seeds, embryos, cotyledons and hypocotyls, roots, apical buds, stems, and flowers, we identified 35 antisense transcripts of s from 28 gene loci after transcriptome assembly. Spearman correlation coefficients suggested the positive expression correlations of eight antisense and sense transcript pairs. By aligning the identified transcripts with the reference genome of (cultivated soybean), the antisense and sense transcript pairs were identified. Using soybean C08 (), in developing pods and seeds, the positive correlations between antisense and sense transcript pairs were shown by RT-qPCR. These findings suggest that soybean antisense transcripts are not necessarily negative transcription regulators of their sense counterparts. This study enhances the existing knowledge on the transcription regulation of MATE transporters by uncovering the previously unknown antisense transcripts and their potential synergetic effects on sense transcripts.
天然反义转录本 (NATs) 通常被认为是其有义对应物的负调控因子。多药和毒性化合物外排 (MATE) 蛋白介导各种底物的转运。尽管在各种植物物种中已经全基因组鉴定了 s,但它们的转录调控因子仍不清楚。在这里,我们使用了 (野生大豆) 的公开可用的链特异性 RNA-seq 数据集,这些数据集来自包括发育豆荚、发育种子、胚胎、子叶和下胚轴、根、顶芽、茎和花在内的各种组织,在转录组组装后,我们从 28 个基因座中鉴定出了 35 个 s 的反义转录本。Spearman 相关系数表明,八个 反义与有义转录本对具有正表达相关性。通过将鉴定出的转录本与 (栽培大豆) 的参考基因组进行比对,鉴定出了 反义与有义转录本对。在发育的豆荚和种子中,使用大豆 C08 (), 通过 RT-qPCR 显示了 反义与有义转录本对之间的正相关。这些发现表明,大豆反义转录本不一定是其有义对应物的负转录调控因子。本研究通过揭示以前未知的 反义转录本及其对有义转录本的潜在协同作用,增强了对 MATE 转运蛋白转录调控的现有认识。