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安祖花不同花色品种的小 RNA 谱和降解组综合分析。

Integrated small RNA profiling and degradome analysis of Anthurium andraeanum cultivars with different-colored spathes.

机构信息

Institute of Flowers, Sanming Academy of Agricultural Sciences, Sanming, 365000, Fujian, China.

Institute of Dryland Crops, Sanming Academy of Agricultural Sciences, Sanming, 365000, Fujian, China.

出版信息

J Plant Res. 2022 Jul;135(4):609-626. doi: 10.1007/s10265-022-01394-9. Epub 2022 May 9.

Abstract

MicroRNAs (miRNAs) are known to play vital roles in coloration of leaves, flowers, and fruits in plants. However, their functions in spathe coloration are poorly known. Anthurium andraeanum is a popular ornamental plant with various spathe colors. In this study, small RNA and degradome libraries from three A. andraeanum cultivars with different-colored spathes were constructed and sequenced. Illumina sequencing resulted in 94 conserved miRNAs, and 34 novel miRNAs in total were then identified based on precursor sequences and hairpin structures. Differential expression analysis showed that 52, 51, and 49 miRNAs were differentially expressed in comparisons of orange- versus white-colored spathe, purple- versus white-colored spathe, and purple- versus orange-colored spathe, respectively. The expression patterns of miRNAs and their corresponding targets involved in spathe coloration were further analyzed, and displayed that miR156b and miR529 were highly abundant in the spathes with higher anthocyanin content. These two miRNAs co-targeted a gene encoding SPL17, which may function as a negative regulator in anthocyanin accumulation. In addition, miR408 was also abundantly expressed in purple- and orange-colored spathes, and its typical targets were also identified. This comprehensive integrated analysis provides insight into the miRNA-mediated genetic regulation in spathe coloration of A. andraeanum.

摘要

微 RNA(miRNA)在植物的叶片、花朵和果实的颜色形成中起着至关重要的作用。然而,它们在佛焰苞颜色形成中的功能知之甚少。安祖花是一种具有各种佛焰苞颜色的流行观赏植物。在这项研究中,从小叶颜色不同的三个安祖花品种构建和测序了小 RNA 和降解组文库。Illumina 测序产生了 94 个保守 miRNA,然后根据前体序列和发夹结构总共鉴定了 34 个新的 miRNA。差异表达分析表明,在橙色-白色佛焰苞、紫色-白色佛焰苞和紫色-橙色佛焰苞的比较中,分别有 52、51 和 49 个 miRNA 差异表达。进一步分析 miRNA 及其参与佛焰苞颜色形成的靶基因的表达模式,显示 miR156b 和 miR529 在花青素含量较高的佛焰苞中高度丰富。这两个 miRNA 共同靶向编码 SPL17 的基因,SPL17 可能作为花青素积累的负调控因子。此外,miR408 在紫色和橙色佛焰苞中也大量表达,并且鉴定了其典型靶基因。这项综合的整合分析为安祖花佛焰苞颜色形成中的 miRNA 介导的遗传调控提供了深入了解。

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