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miRNA-靶对调控杨树不定根形成:miR167a 及其靶标Auxin response factor 8 的功能作用。

MiRNA-target pairs regulate adventitious rooting in Populus: a functional role for miR167a and its target Auxin response factor 8.

机构信息

Co-Innovation Center for Sustainable Forestry in Southern China, Nanjing Forestry University, Nanjing 210037, China.

College of Forestry, Nanjing Forestry University, Nanjing 210037, China.

出版信息

Tree Physiol. 2019 Dec 16;39(11):1922-1936. doi: 10.1093/treephys/tpz085.

Abstract

The ability of a plant to form roots from its non-root tissues is ecologically advantageous during rapid adaptation to a changing environment. Although this biological phenomenon has been widely utilized for cuttings in many economically important agronomic and tree species, its genetic and developmental mechanisms have been poorly understood. In this study, we conducted an association analysis of small RNAs, the degradome and the transcriptome of adventitious rooting in poplar softwood cuttings, which revealed that 373 miRNA-target pairs were detected. Of these, 72 significantly differentially expressed targets were screened as likely to modulate adventitious root (AR) development, in conjunction with plant hormone signal transduction. Poplar miR167a and its targets PeARF6s and PeARF8s were subjected to functional verification of their ability to mediate plant growth and hormone signal transduction. Overexpression of miR167a inhibited target transcripts and improved lateral root (LR) development in poplar, while overexpressing PeARF8.1mut increased AR numbers and slightly inhibited LR development. Taken together, these results suggest that miR167a-PeARF8.1 modules play crucial roles in regulating AR and LR development in poplar and improve the adaptation of poplar to more complex environments.

摘要

植物从非根组织形成根的能力在快速适应不断变化的环境方面具有生态优势。尽管这种生物现象已被广泛应用于许多重要的经济农业和树木物种的插条,但它的遗传和发育机制仍知之甚少。在这项研究中,我们对杨树软木插条不定根形成的小 RNA、降解组和转录组进行了关联分析,结果显示检测到 373 个 miRNA-靶对。其中,72 个显著差异表达的靶标被筛选出来,可能参与调节不定根(AR)的发育,与植物激素信号转导有关。杨树 miR167a 及其靶标 PeARF6s 和 PeARF8s 被用于功能验证其介导植物生长和激素信号转导的能力。miR167a 的过表达抑制了靶标转录本的表达,并改善了杨树的侧根(LR)发育,而过表达 PeARF8.1mut 则增加了 AR 的数量,并略微抑制了 LR 的发育。总之,这些结果表明 miR167a-PeARF8.1 模块在调节杨树的 AR 和 LR 发育方面起着至关重要的作用,并提高了杨树对更复杂环境的适应能力。

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