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研究烟草中与尼古丁途径相关的长链非编码RNA

Investigating nicotine pathway-related long non-coding RNAs in tobacco.

作者信息

Xie Xiaodong, Jin Jingjing, Wang Chen, Lu Peng, Li Zefeng, Tao Jiemeng, Cao Peijian, Xu Yalong

机构信息

China Tobacco Gene Research Center, Zhengzhou Tobacco Research Institute of CNTC, Zhengzhou, China.

出版信息

Front Genet. 2023 Jan 19;13:1102183. doi: 10.3389/fgene.2022.1102183. eCollection 2022.

Abstract

Long non-coding RNAs (lncRNAs) are transcripts longer than 200 bp with low or no protein-coding ability, which play essential roles in various biological processes in plants. Tobacco is an ideal model plant for studying nicotine biosynthesis and metabolism, and there is little research on lncRNAs in this field. Therefore, how to take advantage of the mature tobacco system to profoundly investigate the lncRNAs involved in the nicotine pathway is intriguing. By exploiting 549 public RNA-Seq datasets of tobacco, 30,212 lncRNA candidates were identified, including 24,084 large intervening non-coding RNAs (lincRNAs), 5,778 natural antisense transcripts (NATs) and 350 intronic non-coding RNAs (incRNAs). Compared with protein-coding genes, lncRNAs have distinct properties in terms of exon number, sequence length, A/U content, and tissue-specific expression pattern. lincRNAs showed an asymmetric evolutionary pattern, with a higher proportion (68.71%) expressed from the (S) subgenome. We predicted the potential cis/trans-regulatory effects on protein-coding genes. One hundred four lncRNAs were detected as precursors of 30 known microRNA (miRNA) family members, and 110 lncRNAs were expected to be the potential endogenous target mimics for 39 miRNAs. By combining the results of weighted gene co-expression network analysis with the differentially expressed gene analysis of topping RNA-seq data, we constructed a sub-network containing eight lncRNAs and 25 nicotine-related coding genes. We confirmed that the expression of seven lncRNAs could be affected by MeJA treatment and may be controlled by the transcription factor NtMYC2 using a quantitative PCR assay and gene editing. The results suggested that lncRNAs are involved in the nicotine pathway. Our findings further deepened the understanding of the features and functions of lncRNAs and provided new candidates for regulating nicotine biosynthesis in tobacco.

摘要

长链非编码RNA(lncRNAs)是长度超过200bp且蛋白质编码能力低或无的转录本,在植物的各种生物学过程中发挥着重要作用。烟草是研究尼古丁生物合成和代谢的理想模式植物,而该领域对lncRNAs的研究较少。因此,如何利用成熟的烟草系统深入研究参与尼古丁途径的lncRNAs是一个有趣的问题。通过利用549个烟草的公共RNA-Seq数据集,鉴定出30212个lncRNA候选物,包括24084个大的居间非编码RNA(lincRNAs)、5778个天然反义转录本(NATs)和350个内含子非编码RNA(incRNAs)。与蛋白质编码基因相比,lncRNAs在外显子数量、序列长度、A/U含量和组织特异性表达模式方面具有不同的特性。lincRNAs表现出不对称的进化模式,从(S)亚基因组表达的比例更高(68.71%)。我们预测了对蛋白质编码基因的潜在顺式/反式调控作用。检测到104个lncRNAs是30个已知微小RNA(miRNA)家族成员的前体,110个lncRNAs有望成为39个miRNA的潜在内源性靶标模拟物。通过将加权基因共表达网络分析结果与打顶RNA-seq数据的差异表达基因分析相结合,我们构建了一个包含8个lncRNAs和25个与尼古丁相关的编码基因的子网。我们通过定量PCR分析和基因编辑证实,7个lncRNAs的表达可受茉莉酸甲酯(MeJA)处理的影响,并且可能受转录因子NtMYC2的调控。结果表明lncRNAs参与了尼古丁途径。我们的发现进一步加深了对lncRNAs特征和功能的理解,并为调控烟草中尼古丁生物合成提供了新的候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2c1/9892058/80d068f8fba9/fgene-13-1102183-g001.jpg

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