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在瓦伦西亚甜橙体胚发生过程中,十个保守 miRNA 及其靶基因的阶段和组织特异性调控。

Stage and tissue-specific modulation of ten conserved miRNAs and their targets during somatic embryogenesis of Valencia sweet orange.

机构信息

Key Laboratory of Horticultural Plant Biology (Ministry of Education), National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, 430070, China.

出版信息

Planta. 2011 Mar;233(3):495-505. doi: 10.1007/s00425-010-1312-9. Epub 2010 Nov 20.

Abstract

Somatic embryogenesis (SE) is a remarkable process of plant somatic cells developing into an embryo capable of forming a complete plant. MiRNAs play important roles in plant development by regulating expression of their target genes, but its function in SE has rarely been studied. Herein, ten conserved miRNAs with critical functions in plant development are detected by stem-loop qRT-PCR in the SE system of Valencia sweet orange. Sixteen unigenes from citrus are predicted to be targeted by six of the miRNAs. Cleavage sites on 15 of these target mRNAs are mapped by 5'RACE, of which ten are reported in this study. Transcript abundances of the 16 target unigenes are detected by qRT-PCR during SE process. Stage and tissue-specific expressions of miRNAs and their targets suggest their possible modulation on SE of citrus callus: miR156, 168 and 171 exert regulatory function during somatic embryo induction process; miR159, 164, 390 and 397 are related to globular-shaped embryo formation; miR166, 167 and 398 are required for cotyledon-shaped embryo morphogenesis; in addition, target genes of miR164, 166 and 397 are associated with SE disability of nonembryogenic callus. Exploration of miRNA-mediated modulation on SE is expected to provide new insights into plant cell totipotency, as well as how to maintain and enhance the embryogenic capacity of somatic cells.

摘要

体细胞胚胎发生(SE)是植物体细胞发育成能够形成完整植物的胚胎的非凡过程。miRNA 通过调节其靶基因的表达在植物发育中发挥重要作用,但很少研究其在 SE 中的功能。在此,通过茎环 qRT-PCR 在 Valencia 甜橙的 SE 系统中检测到十个在植物发育中具有关键功能的保守 miRNA。预测柑橘中的十六个 unigenes 是六个 miRNA 的靶标。通过 5'RACE 映射了这些靶标 mRNA 上的 15 个切割位点,其中 10 个在本研究中报道。通过 qRT-PCR 在 SE 过程中检测到 16 个靶标 unigenes 的转录丰度。miRNA 和它们的靶标的阶段和组织特异性表达表明它们可能对柑橘愈伤组织的 SE 进行调节:miR156、168 和 171 在体细胞胚胎诱导过程中发挥调节功能;miR159、164、390 和 397 与球形胚胎形成有关;miR166、167 和 398 是子叶形胚胎形态发生所必需的;此外,miR164、166 和 397 的靶基因与非胚胎发生愈伤组织的 SE 障碍有关。探索 miRNA 介导的 SE 调节有望为植物细胞全能性以及如何维持和增强体细胞的胚胎发生能力提供新的见解。

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