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烟草发育性衰老和早衰之间的转录组差异

Transcriptome divergence between developmental senescence and premature senescence in Nicotiana tabacum L.

机构信息

College of Tobacco Science, Henan Agricultural University, Zhengzhou, 450002, People's Republic of China.

出版信息

Sci Rep. 2020 Nov 25;10(1):20556. doi: 10.1038/s41598-020-77395-2.

Abstract

Senescence is a degenerative process triggered by intricate and coordinated regulatory networks, and the mechanisms of age-dependent senescence and stress-induced premature senescence still remain largely elusive. Thus we selected leaf samples of developmental senescence (DS) and premature senescence (PS) to reveal the regulatory divergence. Senescent leaves were confirmed by yellowing symptom and physiological measurement. A total of 1171 and 309 genes (DEGs) were significantly expressed respectively in the whole process of DS and PS. Up-regulated DEGs in PS were mostly related to ion transport, while the down-regulated DEGs were mainly associated with oxidoreductase activity and sesquiterpenoid and triterpenoid biosynthesis. In DS, photosynthesis, precursor metabolites and energy, protein processing in endoplasmic reticulum, flavonoid biosynthesis were notable. Moreover, we found the vital pathways shared by DS and PS, of which the DEGs were analyzed further via protein-protein interaction (PPI) network analysis to explore the alteration responding to two types of senescence. In addition, plant hormone transduction pathway was mapped by related DEGs, suggesting that ABA and ethylene signaling played pivotal roles in formulating the distinction of DS and PS. Finally, we conducted a model containing oxidative stress and ABA signaling as two hub points, which highlighted the major difference and predicted the possible mechanism under DS and PS. This work gained new insight into molecular divergence of developmental senescence and premature senescence and would provide reference on potential mechanism initiating and motivating senescence for further study.

摘要

衰老是由复杂协调的调控网络触发的退行性过程,年龄相关的衰老和应激诱导的早衰的机制仍然很大程度上难以捉摸。因此,我们选择发育性衰老 (DS) 和早衰 (PS) 的叶片样本来揭示调控的分歧。通过叶片变黄的症状和生理测量来确认衰老叶片。在 DS 和 PS 的整个过程中,分别有 1171 个和 309 个基因 (DEGs) 显著表达。PS 中上调的 DEGs 主要与离子转运有关,而下调的 DEGs 主要与氧化还原酶活性、倍半萜和三萜生物合成有关。在 DS 中,光合作用、前体代谢物和能量、内质网蛋白质加工、类黄酮生物合成是显著的。此外,我们发现了 DS 和 PS 共有的重要途径,其中 DEGs 通过蛋白质-蛋白质相互作用 (PPI) 网络分析进行了进一步分析,以探讨对两种类型衰老的反应变化。此外,通过相关 DEGs 映射植物激素转导途径,表明 ABA 和乙烯信号在制定 DS 和 PS 的区别中起着关键作用。最后,我们构建了一个包含氧化应激和 ABA 信号的模型,作为两个枢纽点,突出了 DS 和 PS 下的主要差异,并预测了可能的机制。这项工作深入了解了发育性衰老和早衰的分子分歧,并为进一步研究衰老的启动和促进机制提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/458d/7688636/4cfa3b12130a/41598_2020_77395_Fig1_HTML.jpg

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