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小 RNA 和降解组谱分析参与油菜籽种子发育和油脂合成。

Small RNA and degradome profiling involved in seed development and oil synthesis of Brassica napus.

机构信息

College of Life Science and Technology, Henan Institute of Science and Technology / Collaborative Innovation Center of Modern Biological Breeding, Henan Province, Xinxiang, China.

Applied Biotechnology Center, Wuhan Institute of Bioengineering, Wuhan, China.

出版信息

PLoS One. 2018 Oct 17;13(10):e0204998. doi: 10.1371/journal.pone.0204998. eCollection 2018.

Abstract

MicroRNAs (miRNAs) play a prominent role in post-transcriptional gene expression regulation and have been involved in various biological and metabolic processes to regulate gene expression. For Brassica napus, improving seed-weight and oil-content is the main breeding goal. In order to better understand the regulation mechanism of miRNAs during seed-weight formation and oil-content accumulation in B. napus, in this study, a high-throughput sequencing technology was used to profile miRNAs expression of Brassica napus immature seeds from one to six weeks after flowering. A total of 1,276 miRNAs, including 1,248 novel and 28 known miRNAs, were obtained from both the high-seed-weight with low-oil-content RNA pool (S03) and the low-seed-weight with high-oil-content RNA pool (S04). Analysis of their expression profiles disclosed that 300 novel and two known miRNAs were differentially expressed between S03 and S04. For degradome analysis, 57 genes with 64 degradation sites were predicted to be targeted for degradation by these miRNAs. Further bioinformatics analysis indicated that these differentially expressed miRNAs might participate in regulation of myriad cellular and molecular processes, during seed development and oil synthesis. Finally, 6 target genes with potential roles in regulation of seed development and 9 other targets in seed oil synthesis, were further confirmed as candidate genes from small RNA and degradome sequencing.

摘要

微小 RNA(miRNAs)在后转录基因表达调控中起着重要作用,参与了各种生物和代谢过程以调节基因表达。对于油菜,提高种子重量和油含量是主要的育种目标。为了更好地理解 miRNA 在油菜种子重量形成和油含量积累过程中的调控机制,本研究采用高通量测序技术对开花后 1 周到 6 周的油菜未成熟种子中的 miRNA 表达进行了分析。从高种子重量、低油含量 RNA 池(S03)和低种子重量、高油含量 RNA 池(S04)中分别获得了 1,276 个 miRNA,包括 1,248 个新 miRNA 和 28 个已知 miRNA。对其表达谱的分析表明,S03 和 S04 之间有 300 个新的和两个已知的 miRNA 表达存在差异。对于降解组分析,预测这些 miRNA 可能靶向 57 个基因的 64 个降解位点。进一步的生物信息学分析表明,这些差异表达的 miRNA 可能参与了种子发育和油脂合成过程中的许多细胞和分子过程的调控。最后,从小 RNA 和降解组测序中进一步确认了 6 个可能参与调控种子发育的靶基因和 9 个参与种子油脂合成的其他靶基因作为候选基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edab/6192625/5aac76cea0a3/pone.0204998.g001.jpg

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