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全转录组测序揭示了低温下白叶 1 号周期性白化过程相关的 ceRNA 调控网络。

Whole-Transcriptome Sequencing Reveals a ceRNA Regulatory Network Associated with the Process of Periodic Albinism under Low Temperature in Baiye No. 1 ().

机构信息

College of Life Sciences, Guizhou University, Guiyang 550025, China.

Guizhou Key Laboratory of Propagation and Cultivation on Medicinal Plants, Guizhou University, Guiyang 550025, China.

出版信息

Int J Mol Sci. 2023 Apr 12;24(8):7162. doi: 10.3390/ijms24087162.

Abstract

The young shoots of the tea plant Baiye No. 1 display an albino phenotype in the early spring under low environmental temperatures, and the leaves re-green like those of common tea cultivars during the warm season. Periodic albinism is precisely regulated by a complex gene network that leads to metabolic differences and enhances the nutritional value of tea leaves. Here, we identified messenger RNAs (mRNAs), long noncoding RNAs (lncRNAs), circular RNAs (circRNAs), and microRNAs (miRNAs) to construct competing endogenous RNA (ceRNA) regulatory networks. We performed whole-transcriptome sequencing of 12 samples from four periods (Bud, leaves not expanded; Alb, albino leaves; Med, re-greening leaves; and Gre, green leaves) and identified a total of 6325 differentially expressed mRNAs (DEmRNAs), 667 differentially expressed miRNAs (DEmiRNAs), 1702 differentially expressed lncRNAs (DElncRNAs), and 122 differentially expressed circRNAs (DEcircRNAs). Furthermore, we constructed ceRNA networks on the basis of co-differential expression analyses which comprised 112, 35, 38, and 15 DEmRNAs, DEmiRNAs, DElncRNAs, and DEcircRNAs, respectively. Based on the regulatory networks, we identified important genes and their interactions with lncRNAs, circRNAs, and miRNAs during periodic albinism, including the ceRNA regulatory network centered on miR5021x, the -miR159-lncRNA regulatory network, and the -miR319x-circRNA regulatory network. These regulatory networks might be involved in the response to cold stress, photosynthesis, chlorophyll synthesis, amino acid synthesis, and flavonoid accumulation. Our findings provide novel insights into ceRNA regulatory mechanisms involved in Baiye No. 1 during periodic albinism and will aid future studies of the molecular mechanisms underlying albinism mutants.

摘要

茶树新品系白烨 1 号在早春低温环境下幼芽表现白化表型,温暖季节叶片重新变绿,类似于普通茶树品种。周期性白化受复杂的基因网络调控,导致代谢差异,提高了茶叶的营养价值。在这里,我们鉴定了信使 RNA(mRNA)、长链非编码 RNA(lncRNA)、环状 RNA(circRNA)和 microRNA(miRNA),以构建竞争内源性 RNA(ceRNA)调控网络。我们对四个时期(芽、未展开的叶片;白化叶片;复绿叶片;绿色叶片)的 12 个样本进行了全转录组测序,共鉴定出 6325 个差异表达 mRNA(DEmRNA)、667 个差异表达 miRNA(DEmiRNA)、1702 个差异表达 lncRNA(DElncRNA)和 122 个差异表达 circRNA(DEcircRNA)。此外,我们基于共差异表达分析构建了 ceRNA 网络,其中包含 112、35、38 和 15 个 DEmRNA、DEmiRNA、DElncRNA 和 DEcircRNA。基于调控网络,我们鉴定了周期性白化过程中重要基因及其与 lncRNA、circRNA 和 miRNA 的相互作用,包括以 miR5021x 为中心的 ceRNA 调控网络、-miR159-lncRNA 调控网络和-miR319x-circRNA 调控网络。这些调控网络可能参与了冷胁迫响应、光合作用、叶绿素合成、氨基酸合成和类黄酮积累。我们的研究结果为白烨 1 号在周期性白化过程中涉及的 ceRNA 调控机制提供了新的见解,并将有助于对白化突变体分子机制的未来研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64bc/10138444/98ca39f69e13/ijms-24-07162-g001.jpg

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