首页> 外文期刊>BMC Plant Biology >Uncovering anthocyanin biosynthesis related microRNAs and their target genes by small RNA and degradome sequencing in tuberous roots of sweetpotato
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Uncovering anthocyanin biosynthesis related microRNAs and their target genes by small RNA and degradome sequencing in tuberous roots of sweetpotato

机译:通过小型RNA和甜菜藻枯萎病的小RNA和降解测序揭开花青素生物合成相关的MicroRNA及其靶基因

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Compared with white-fleshed sweetpotato (WFSP), purple-fleshed sweetpotato (PFSP) is a desirable resource for functional food development because of the abundant anthocyanin accumulation in its tuberous roots. Some studies have shown that the expression regulation mediated by miRNA plays an important role in anthocyanin biosynthesis in plants. However, few miRNAs and their corresponding functions related to anthocyanin biosynthesis in tuberous roots of sweetpotato have been known. In this study, small RNA (sRNA) and degradome libraries from the tuberous roots of WFSP (Xushu-18) and PFSP (Xuzishu-3) were constructed, respectively. Totally, 191 known and 33 novel miRNAs were identified by sRNA sequencing, and 180 target genes cleaved by 115 known ib-miRNAs and 5 novel ib-miRNAs were identified by degradome sequencing. Of these, 121 miRNAs were differently expressed between Xushu-18 and Xuzishu-3. Integrated analysis of sRNA, degradome sequencing, GO, KEGG and qRT-PCR revealed that 26 differentially expressed miRNAs and 36 corresponding targets were potentially involved in the anthocyanin biosynthesis. Of which, an inverse correlation between the expression of ib-miR156 and its target ibSPL in WFSP and PFSP was revealed by both qRT-PCR and sRNA sequencing. Subsequently, ib-miR156 was over-expressed in Arabidopsis. Interestingly, the ib-miR156 over-expressing plants showed suppressed abundance of SPL and a purplish phenotype. Concomitantly, upregulated expression of four anthocyanin pathway genes was detected in transgenic Arabidopsis plants. Finally, a putative ib-miRNA-target model involved in anthocyanin biosynthesis in sweetpotato was proposed. The results represented a comprehensive expression profiling of miRNAs related to anthocyanin accumulation in sweetpotato and provided important clues for understanding the regulatory network of anthocyanin biosynthesis mediated by miRNA in tuberous crops.
机译:与白皮甘薯(WFSP)相比,紫色肉质甘薯(PFSP)是功能性食品发展的理想资源,因为其茎秆根部中的丰富的花青素积累。一些研究表明,MiRNA介导的表达调节在植物中的花青素生物合成中起着重要作用。然而,已知很少有miRNA及其与甘薯结节噻唑类生物合成相关的相应功能。在该研究中,分别构建了来自WFSP(XUSHU-18)和PFSP(Xuzishu-3)的小区根部的小RNA(SRNA)和降低组文库。通过SRNA测序鉴定了191个已知的和33个新的miRNA,通过降低测量测序鉴定了180个已知的IB-miRNA和5个新型IB-miRNA的180个靶基因。其中,121个miRNA在Xushu-18和Xuzishu-3之间表达了不同的表达。 SRNA的综合分析,降低测量,GO,KEGG和QRT-PCR显示,26个差异表达的miRNA和36个相应的靶标可能参与花青素生物合成。其中,通过QRT-PCR和SRNA测序揭示了WFSP和PFSP中的IB-MiR156的表达及其靶IBSPL之间的反比相关性。随后,IB-MIR156以拟南芥过于表达。有趣的是,IB-MiR156过度表达植物显示出抑制的SPL和紫色表型。同时,在转基因拟南芥植物中检测到四种花青素途径基因的上调表达。最后,提出了甜菜蛋白中涉及花青素生物合成的推定的IB-miRNA-靶模型。结果代表了与甘薯的花青素积累有关的miRNA综合表达分析,并提供了理解由小学作物中miRNA介导的花青素生物合成的调控网络的重要线索。

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