NMD 通路功能缺陷对水稻表型和转录组的影响

Q3 Medicine
遗传 Pub Date : 2024-07-01 DOI:10.16288/j.yczz.24-063
Yue-Yang Wu, Xiao-Yan Zhou, Yu-Feng Wu, Ju Huang
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引用次数: 0

摘要

无义介导的 mRNA 衰变(NMD)是一种重要的 RNA 质量控制途径。它有助于降解有害的错误 mRNA,从而保持稳定健康的内环境。在这项研究中,我们利用 CRISPR/Cas9 和 amiRNA 技术生成了水稻 NMD 通路中相关基因的基因敲除或基因敲低突变体。通过转录组测序和观察表型变化,该研究探讨了 NMD 通路缺陷对水稻基因表达和替代剪接的影响。结果表明,即使是部分缺陷,也会在不同程度上引起植株高度和花粉活力等表型变化,显示了 NMD 因子的必要性。基因表达分析表明,大多数差异表达基因在突变体中上调,其中 ko-upf1-like 和 kd-upf1 缺陷的影响比 kd-upf2 和 kd-upf3 更为显著。具体来说,NMD 途径缺陷导致水稻防御反应相关基因的表达水平升高,次生代谢相关基因的表达水平降低,在 60 天衰老突变体中观察到的受影响基因范围更广。转录本分析表明,不同的 NMD 相关基因缺陷改变了数百个替代剪接事件,其中大部分富集在涉及替代剪接调控途径的基因中。这些事件中约有一半是不同突变体共有的,大量受影响的转录本显示出 NMD 的目标特征。NMD 可影响转录本的丰度及其剪接亚型,从而调控防御反应和早期衰老相关途径,这对水稻的生长和繁殖起着至关重要的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of functional defects in the NMD pathway on rice phenotype and transcriptome.

Nonsense-mediated mRNA decay (NMD) is an important RNA quality control pathway. It aids in degrading harmful erroneous mRNA, thereby preserving a stable and healthy internal environment. In this study, we employed CRISPR/Cas9 and amiRNA technology to generate knock out or knock down mutants of realted genes in the rice NMD pathway. Through transcriptome sequencing and observing phenotype changes, the study explored the impact of NMD pathway defects on rice gene expression and alternative splicing. The results suggest that even partial defects will induce phenotypic changes such as plant height and pollen vitality to different degrees, showing necessity of NMD factors. Gene expression analysis reveals that most differentially expressed genes are upregulated in the mutants, with ko-upf1-like and kd-upf1 defects having a more significant impact than kd-upf2 and kd-upf3. Specifically, NMD pathway defects result in increased expression levels of rice defense response-related genes and decreased expression levels of secondary metabolism-related genes, with a wider range of affected genes observed in 60-day-old senescence mutants. Transcript analysis indicates that different NMD related genes defects alter hundreds of alternative splicing events, mostly enriched in genes involving alternative splicing regulatory pathways. Approximately half of these events are shared among different mutants, and a substantial number of affected transcripts show NMD target features. NMD could affect both the transcript abundance and their splicing subtypes to regulate the defense response and early-senescence associated pathways, which plays a vital role in rice growth and reproduction.

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来源期刊
遗传
遗传 Medicine-Medicine (all)
CiteScore
2.50
自引率
0.00%
发文量
6699
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