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生长素受体 TIR1 同源物(PagFBL1)通过与杨树 Aux/IAA28 的相互作用调节不定根形成。

The auxin receptor TIR1 homolog (PagFBL 1) regulates adventitious rooting through interactions with Aux/IAA28 in Populus.

机构信息

State Key Laboratory of Tree Genetics and Breeding, Research Institute of Forestry, Chinese Academy of Forestry, Beijing, China.

Guangxi Academy of Forestry, Nanning, Guangxi, China.

出版信息

Plant Biotechnol J. 2019 Feb;17(2):338-349. doi: 10.1111/pbi.12980. Epub 2018 Jul 24.

Abstract

Adventitious roots occur naturally in many species and can also be induced from explants of some tree species including Populus, providing an important means of clonal propagation. Auxin has been identified as playing a crucial role in adventitious root formation, but the associated molecular regulatory mechanisms need to be elucidated. In this study, we examined the role of PagFBL1, the hybrid poplar (Populus alba × P. glandulosa clone 84K) homolog of Arabidopsis auxin receptor TIR1, in adventitious root formation in poplar. Similar to the distribution pattern of auxin during initiation of adventitious roots, PagFBL1 expression was concentrated in the cambium and secondary phloem in stems during adventitious root induction and initiation phases, but decreased in emerging adventitious root primordia. Overexpressing PagFBL1 stimulated adventitious root formation and increased root biomass, while knock-down of PagFBL1 transcript levels delayed adventitious root formation and decreased root biomass. Transcriptome analyses of PagFBL1 overexpressing lines indicated that an extensive remodelling of gene expression was stimulated by auxin signalling pathway during early adventitious root formation. In addition, PagIAA28 was identified as downstream targets of PagFBL1. We propose that the PagFBL1-PagIAA28 module promotes adventitious rooting and could be targeted to improve Populus propagation by cuttings.

摘要

不定根在许多物种中自然发生,也可以从某些树种的外植体中诱导产生,包括杨树,为无性繁殖提供了重要手段。生长素已被确定在不定根形成中起关键作用,但相关的分子调控机制仍需阐明。在这项研究中,我们研究了拟南芥生长素受体 TIR1 的杨树(Populus alba×P. glandulosa 克隆 84K)同源物 PagFBL1 在杨树不定根形成中的作用。与生长素在不定根起始时的分布模式相似,PagFBL1 表达在不定根诱导和起始阶段的茎中形成层和次生韧皮部集中,但在出现的不定根原基中减少。过表达 PagFBL1 刺激不定根形成并增加根生物量,而 PagFBL1 转录本水平的敲低延迟不定根形成并减少根生物量。PagFBL1 过表达系的转录组分析表明,在早期不定根形成过程中,生长素信号通路刺激了广泛的基因表达重编程。此外,还鉴定出 PagIAA28 是 PagFBL1 的下游靶标。我们提出 PagFBL1-PagIAA28 模块促进不定根形成,可通过扦插来提高杨树的繁殖效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64da/11386730/4e9a979d1e03/PBI-17-338-g004.jpg

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