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鉴定和分析与小麦籽粒发育相关的长链非编码 RNA 和环状 RNA。

Identification and Analysis of lncRNA and circRNA Related to Wheat Grain Development.

机构信息

College of Agronomy, Anhui Agricultural University, Hefei 230036, China.

Biology Department, Saint Mary's University, Halifax, NS B3H 3C3, Canada.

出版信息

Int J Mol Sci. 2024 May 17;25(10):5484. doi: 10.3390/ijms25105484.

Abstract

The role of lncRNA and circRNA in wheat grain development is still unclear. The objectives of this study were to characterize the lncRNA and circRNA in the wheat grain development and to construct the interaction network among lncRNA, circRNA, and their target miRNA to propose a lncRNA-circRNA-miRNA module related to wheat grain development. Full transcriptome sequencing on two wheat varieties (Annong 0942 and Anke 2005) with significant differences in 1000-grain weight at 10 d (days after pollination), 20 d, and 30 d of grain development were conducted. We detected 650, 736, and 609 differentially expressed lncRNA genes, and 769, 1054, and 1062 differentially expressed circRNA genes in the grains of 10 days, 20 days and 30 days after pollination between Annong 0942 and Anke 2005, respectively. An analysis of the lncRNA-miRNA and circRNA-miRNA targeting networks reveals that circRNAs exhibit a more complex and extensive interaction network in the development of cereal grains and the formation of grain shape. Central to these interactions are tae-miR1177, tae-miR1128, and tae-miR1130b-3p. In contrast, lncRNA genes only form a singular network centered around tae-miR1133 and tae-miR5175-5p when comparing between varieties. Further analysis is conducted on the underlying genes of all target miRNAs, we identified TaNF-YB1 targeted by tae-miR1122a and TaTGW-7B targeted by miR1130a as two pivotal regulatory genes in the development of wheat grains. The quantitative real-time PCR (qRT-PCR) and dual-luciferase reporter assays confirmed the target regulatory relationships between miR1130a-TaTGW-7B and miR1122a-TaNF-YB1. We propose a network of circRNA and miRNA-mediated gene regulation in the development of wheat grains.

摘要

lncRNA 和 circRNA 在小麦籽粒发育中的作用尚不清楚。本研究旨在鉴定小麦籽粒发育过程中的 lncRNA 和 circRNA,并构建 lncRNA、circRNA 及其靶 miRNA 之间的相互作用网络,提出与小麦籽粒发育相关的 lncRNA-circRNA-miRNA 模块。对两个千粒重差异较大的小麦品种(安农 0942 和安科 2005)在授粉后 10d、20d 和 30d 的籽粒进行全转录组测序。我们在授粉后 10d、20d 和 30d 的籽粒中分别检测到安农 0942 和安科 2005 之间差异表达的 lncRNA 基因 650、736 和 609 个,差异表达的 circRNA 基因 769、1054 和 1062 个。lncRNA-miRNA 和 circRNA-miRNA 靶向网络分析表明,circRNA 在谷物发育和粒形形成中表现出更为复杂和广泛的相互作用网络。这些相互作用的核心是 tae-miR1177、tae-miR1128 和 tae-miR1130b-3p。相比之下,在品种间比较时,lncRNA 基因仅围绕 tae-miR1133 和 tae-miR5175-5p 形成单一网络。对所有靶 miRNA 的潜在基因进行进一步分析,我们鉴定出 tae-miR1122a 靶向的 TaNF-YB1 和 miR1130a 靶向的 TaTGW-7B 作为小麦籽粒发育的两个关键调节基因。定量实时 PCR(qRT-PCR)和双荧光素酶报告基因检测证实了 miR1130a-TaTGW-7B 和 miR1122a-TaNF-YB1 之间的靶标调节关系。我们提出了一个小麦籽粒发育过程中circRNA 和 miRNA 介导的基因调控网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3d0/11122269/ca791e912217/ijms-25-05484-g001.jpg

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