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扦插不定根形成过程中的植物激素稳态、信号传导与功能

Plant Hormone Homeostasis, Signaling, and Function during Adventitious Root Formation in Cuttings.

作者信息

Druege Uwe, Franken Philipp, Hajirezaei Mohammad R

机构信息

Department Plant Propagation, Leibniz Institute of Vegetable and Ornamental Crops Erfurt, Germany.

Department of Molecular Plant Nutrition, Leibniz Institute of Plant Genetics and Crop Plant Research Gatersleben, Germany.

出版信息

Front Plant Sci. 2016 Mar 31;7:381. doi: 10.3389/fpls.2016.00381. eCollection 2016.

Abstract

Adventitious root (AR) formation in cuttings is a multiphase developmental process, resulting from wounding at the cutting site and isolation from the resource and signal network of the whole plant. Though, promotive effects of auxins are widely used for clonal plant propagation, the regulation and function of plant hormones and their intricate signaling networks during AR formation in cuttings are poorly understood. In this focused review, we discuss our recent publications on the involvement of polar auxin transport (PAT) and transcriptional regulation of auxin and ethylene action during AR formation in petunia cuttings in a broad context. Integrating new findings on cuttings of other plant species and general models on plant hormone networks, a model on the regulation and function of auxin, ethylene, and jasmonate in AR formation of cuttings is presented. PAT and cutting off from the basipetal auxin drain are considered as initial principles generating early accumulation of IAA in the rooting zone. This is expected to trigger a self-regulatory process of auxin canalization and maximization to responding target cells, there inducing the program of AR formation. Regulation of auxin homeostasis via auxin influx and efflux carriers, GH3 proteins and peroxidases, of flavonoid metabolism, and of auxin signaling via AUX/IAA proteins, TOPLESS, ARFs, and SAUR-like proteins are postulated as key processes determining the different phases of AR formation. NO and H2O2 mediate auxin signaling via the cGMP and MAPK cascades. Transcription factors of the GRAS-, AP2/ERF-, and WOX-families link auxin signaling to cell fate specification. Cyclin-mediated governing of the cell cycle, modifications of sugar metabolism and microtubule and cell wall remodeling are considered as important implementation processes of auxin function. Induced by the initial wounding and other abiotic stress factors, up-regulation of ethylene biosynthesis, and signaling via ERFs and early accumulation of jasmonic acid stimulate AR formation, while both pathways are linked to auxin. Future research on the function of candidate genes should consider their tissue-specific role and regulation by environmental factors. Furthermore, the whole cutting should be regarded as a system of physiological units with diverse functions specifically responding to the environment and determining the rooting response.

摘要

扦插不定根(AR)的形成是一个多阶段的发育过程,源于扦插部位的创伤以及与整株植物资源和信号网络的分离。尽管生长素的促进作用广泛应用于克隆植物繁殖,但在扦插不定根形成过程中,植物激素及其复杂信号网络的调控和功能仍知之甚少。在这篇综述中,我们在更广泛的背景下讨论了我们最近关于矮牵牛扦插不定根形成过程中极性生长素运输(PAT)以及生长素和乙烯作用的转录调控的研究成果。整合其他植物物种扦插的新发现以及植物激素网络的一般模型,我们提出了一个关于生长素、乙烯和茉莉酸在扦插不定根形成中的调控和功能的模型。PAT以及与向基性生长素流的切断被认为是导致生长素在生根区早期积累的初始机制。这有望引发生长素的自我调节过程,即生长素通道化和对响应靶细胞的最大化,从而诱导不定根形成程序。通过生长素流入和流出载体、GH3蛋白和过氧化物酶对生长素稳态的调节、类黄酮代谢的调节以及通过AUX/IAA蛋白、TOPLESS、ARF和SAUR样蛋白对生长素信号传导的调节被认为是决定不定根形成不同阶段的关键过程。一氧化氮(NO)和过氧化氢(H2O2)通过环鸟苷酸(cGMP)和丝裂原活化蛋白激酶(MAPK)级联介导生长素信号传导。GRAS家族、AP2/ERF家族和WOX家族的转录因子将生长素信号传导与细胞命运决定联系起来。细胞周期蛋白介导的细胞周期调控、糖代谢的修饰以及微管和细胞壁重塑被认为是生长素功能的重要实施过程。由初始创伤和其他非生物胁迫因素诱导,乙烯生物合成的上调以及通过乙烯反应因子(ERF)的信号传导和茉莉酸的早期积累刺激不定根形成,而这两条途径均与生长素相关。未来对候选基因功能的研究应考虑其组织特异性作用以及环境因素的调控。此外,整个插条应被视为一个具有多种功能的生理单位系统,这些功能专门响应环境并决定生根反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf30/4814496/756a55f41f82/fpls-07-00381-g0001.jpg

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