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微小RNA476a-RFL模块通过线粒体依赖途径调控杨树不定根的形成。

The microRNA476a-RFL module regulates adventitious root formation through a mitochondria-dependent pathway in Populus.

作者信息

Xu Changzheng, Tao Yuanxun, Fu Xiaokang, Guo Li, Xing Haitao, Li Chaofeng, Yang Ziwei, Su Huili, Wang Xianqiang, Hu Jian, Fan Di, Chiang Vincent L, Luo Keming

机构信息

Chongqing Key Laboratory of Plant Resource Conservation and Germplasm Innovation, School of Life Sciences, Southwest University, Chongqing, 400715, China.

Key Laboratory of Eco-environments of Three Gorges Reservoir Region, Ministry of Education, School of Life Sciences, Southwest University, Chongqing, 400715, China.

出版信息

New Phytol. 2021 Jun;230(5):2011-2028. doi: 10.1111/nph.17252. Epub 2021 Mar 24.

Abstract

For woody plants, clonal propagation efficiency is largely determined by adventitious root (AR) formation at the bases of stem cuttings. However, our understanding of the molecular mechanisms contributing to AR morphogenesis in trees remains limited, despite the importance of vegetative propagation, currently the most common practice for tree breeding and commercialization. Here, we identified Populus-specific miR476a as a regulator of wound-induced adventitious rooting that acts by orchestrating mitochondrial homeostasis. MiR476a exhibited inducible expression during AR formation and directly targeted several Restorer of Fertility like (RFL) genes encoding mitochondrion-localized pentatricopeptide repeat proteins. Genetic modification of miR476a-RFL expression revealed that miR476a/RFL-mediated dynamic regulation of mitochondrial homeostasis influences AR formation in poplar. Mitochondrial perturbation via exogenous application of a chemical inhibitor indicated that miR476a/RFL-directed AR formation depends on mitochondrial regulation that acts via auxin signaling. Our results thus establish a microRNA-directed mitochondrion-auxin signaling cascade required for AR development, providing insights into the role of mitochondrial regulation in the developmental plasticity of plants.

摘要

对于木本植物而言,克隆繁殖效率在很大程度上取决于茎插条基部不定根(AR)的形成。然而,尽管营养繁殖很重要,它目前是树木育种和商业化最常用的方法,但我们对树木中促进不定根形态发生的分子机制的了解仍然有限。在这里,我们鉴定出杨树特异性miR476a是伤口诱导不定根形成的调节因子,它通过协调线粒体稳态发挥作用。MiR476a在不定根形成过程中表现出可诱导表达,并直接靶向几个编码线粒体定位的五肽重复蛋白的育性恢复类似(RFL)基因。对miR476a - RFL表达的基因改造表明,miR476a/RFL介导的线粒体稳态动态调节影响杨树不定根的形成。通过外源施用化学抑制剂对线粒体进行扰动表明,miR476a/RFL指导的不定根形成依赖于通过生长素信号传导起作用的线粒体调节。因此,我们的结果建立了不定根发育所需的microRNA指导的线粒体 - 生长素信号级联反应,为线粒体调节在植物发育可塑性中的作用提供了见解。

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