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小麦细胞器和核基因组长非编码 RNA 携带保守的 microRNA 前体,这些前体可能共同构成昆虫响应中的复杂网络。

Wheat Long Noncoding RNAs from Organelle and Nuclear Genomes Carry Conserved microRNA Precursors Which May Together Comprise Intricate Networks in Insect Responses.

机构信息

Montana BioAgriculture, Inc., Missoula, MT 59802, USA.

USDA-ARS, Southern Insect Management Research Unit, Stoneville, MS 38776, USA.

出版信息

Int J Mol Sci. 2023 Jan 23;24(3):2226. doi: 10.3390/ijms24032226.

Abstract

Long noncoding RNAs (lncRNAs) are a diverse class of noncoding RNAs that are typically longer than 200 nucleotides but lack coding potentials. Advances in deep sequencing technologies enabled a better exploration of this type of noncoding transcripts. The poor sequence conservation, however, complicates the identification and annotation of lncRNAs at a large scale. Wheat is among the leading food staples worldwide whose production is threatened by both biotic and abiotic stressors. Here, we identified putative lncRNAs from durum wheat varieties that differ in stem solidness, a major source of defense against wheat stem sawfly, a devastating insect pest. We also analyzed and annotated lncRNAs from two bread wheat varieties, resistant and susceptible to another destructive pest, orange wheat blossom midge, with and without infestation. Several putative lncRNAs contained potential precursor sequences and/or target regions for microRNAs, another type of regulatory noncoding RNAs, which may indicate functional networks. Interestingly, in contrast to lncRNAs themselves, microRNAs with potential precursors within the lncRNA sequences appeared to be highly conserved at the sequence and family levels. We also observed a few putative lncRNAs that have perfect to near-perfect matches to organellar genomes, supporting the recent observations that organellar genomes may contribute to the noncoding transcript pool of the cell.

摘要

长链非编码 RNA(lncRNA)是一类多样化的非编码 RNA,通常长度超过 200 个核苷酸,但缺乏编码潜力。深度测序技术的进步使人们能够更好地探索这种类型的非编码转录本。然而,较差的序列保守性使得大规模识别和注释 lncRNA 变得复杂。小麦是世界领先的粮食作物之一,其生产受到生物和非生物胁迫的威胁。在这里,我们从茎硬度不同的杜伦小麦品种中鉴定出了推定的 lncRNA,茎硬度是对抗小麦茎蜂的主要防御来源,小麦茎蜂是一种破坏性的昆虫害虫。我们还分析和注释了两种面包小麦品种的 lncRNA,这两种品种对另一种破坏性害虫——橘褐实蝇,具有抗性和敏感性,同时还分析了有无虫害的情况。一些推定的 lncRNA 包含潜在的 miRNA 前体序列和/或靶区,miRNA 是另一种调节性非编码 RNA,这可能表明存在功能网络。有趣的是,与 lncRNA 本身相比,lncRNA 序列中具有潜在前体的 miRNA 在序列和家族水平上似乎高度保守。我们还观察到一些推定的 lncRNA 与细胞器基因组具有完全或近乎完全的匹配,这支持了最近的观察结果,即细胞器基因组可能有助于细胞的非编码转录本池。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c010/9917100/2ad214010919/ijms-24-02226-g001.jpg

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