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亚麻荠环状RNA全景:对基因调控和脂肪酸代谢的影响。

Camelina circRNA landscape: Implications for gene regulation and fatty acid metabolism.

作者信息

Utley Delecia, Edwards Brianne, Budnick Asa, Grotewold Erich, Sederoff Heike

机构信息

Department of Plant and Microbial Biology, North Carolina State University, Raleigh, North Carolina, USA.

Department of Biochemistry & Molecular Biology, Michigan State University, East Lansing, Michigan, USA.

出版信息

Plant Genome. 2025 Mar;18(1):e20537. doi: 10.1002/tpg2.20537. Epub 2024 Dec 10.

Abstract

Circular RNAs (circRNAs) are closed-loop RNAs forming a covalent bond between their 3' and 5' ends, the back splice junction (BSJ), rendering them resistant to exonucleases and thus more stable compared to linear RNAs. Identification of circRNAs and distinction from their cognate linear RNA is only possible by sequencing the BSJ that is unique to the circRNA. CircRNAs are involved in the regulation of their cognate RNAs by increasing transcription rates, RNA stability, and alternative splicing. We have identified circRNAs from C. sativa that are associated with the regulation of germination, light response, and lipid metabolism. We sequenced light-grown and etiolated seedlings after 5 or 7 days post-germination and identified a total of 3447 circRNAs from 2763 genes. Most circRNAs originate from a single homeolog of the three subgenomes from allohexaploid camelina and correlate with higher ratios of alternative splicing of their cognate genes. A network analysis shows the interactions of select miRNA:circRNA:mRNAs for regulation of transcript stabilities where circRNA can act as a competing endogenous RNA. Several key lipid metabolism genes can generate circRNA, and we confirmed the presence of KASII circRNA as a true circRNA. CircRNA in camelina can be a novel target for breeding and engineering efforts.

摘要

环状RNA(circRNAs)是在其3'和5'末端之间形成共价键的闭环RNA,即反向剪接连接(BSJ),这使得它们对外切核酸酶具有抗性,因此与线性RNA相比更稳定。只有通过对circRNA特有的BSJ进行测序,才能鉴定circRNA并将其与同源线性RNA区分开来。circRNA通过提高转录速率、RNA稳定性和可变剪接参与对其同源RNA的调控。我们已经从苜蓿中鉴定出与发芽、光响应和脂质代谢调控相关的circRNA。我们对发芽后5天或7天的光照生长和黄化幼苗进行了测序,共鉴定出来自2763个基因的3447个circRNA。大多数circRNA来自异源六倍体亚麻荠三个亚基因组中的一个同源基因,并且与其同源基因的可变剪接比例较高相关。网络分析显示了特定miRNA:circRNA:mRNA之间相互作用对转录本稳定性的调控,其中circRNA可以作为竞争性内源RNA发挥作用。几个关键的脂质代谢基因可以产生circRNA,我们证实了KASII circRNA作为真正的circRNA的存在。亚麻荠中的circRNA可能是育种和工程研究的新靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a461/11726430/488bc25c984c/TPG2-18-e20537-g008.jpg

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