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生长素和碳水化合物稳态相关基因的协同转录是远红光处理的蓝桉母株来源的微插条不定根形成改善的基础。

Concerted transcription of auxin and carbohydrate homeostasis-related genes underlies improved adventitious rooting of microcuttings derived from far-red treated Eucalyptus globulus Labill mother plants.

作者信息

Ruedell Carolina Michels, de Almeida Márcia Rodrigues, Fett-Neto Arthur Germano

机构信息

Department of Botany, Federal University of Rio Grande do Sul, P.O. Box 15005, 91501-970 Porto Alegre, RS, Brazil.

Center for Biotechnology, Federal University of Rio Grande do Sul, P.O. Box 15005, 91501-970 Porto Alegre, RS, Brazil.

出版信息

Plant Physiol Biochem. 2015 Dec;97:11-9. doi: 10.1016/j.plaphy.2015.09.005. Epub 2015 Sep 10.

Abstract

Economically important plant species, such as Eucalyptus globulus, are often rooting recalcitrant. We have previously shown that far-red light enrichment applied to E. globulus donor-plants improved microcutting rooting competence and increased rooting zone/shoot carbohydrate ratio. To better understand this developmental response, the relative expression profiles of genes involved in auxin signaling (ARF6, ARF8, AGO1), biosynthesis (YUC3) and transport (AUX1, PIN1, PIN2); sucrose cleavage (SUS1, CWINV1), transport (SUC5), hexose phosphorylation (HXK1, FLN1) and starch biosynthesis (SS3) were quantified during adventitious rooting of E. globulus microcuttings derived from donor plants exposed to far-red or white light. Expression of auxin transport-related genes increased in the first days of root induction. Far-red enrichment of donor plants induced ARF6, ARF8 and AGO1 in microcuttings. The first two gene products could activate GH3 and other rooting related genes, whereas AGO1 deregulation of the repressor ARF17 may relief rooting inhibition. Increased sink strength at the basal stem with sucrose unloading in root tissue mediated by SUC and subsequent hydrolysis by SUS1 were also supported by gene expression profile. Fructose phosphorylation and starch biosynthesis could also contribute to proper carbon allocation at the site of rooting, as evidenced by increased expression of related genes. These data are in good agreement with increased contents of hexoses and starch at the cutting base severed from far-red exposed donor plants. To sum up, pathways integrating auxin and carbohydrate metabolism were activated in microcuttings derived from donor plants exposed to far red light enrichment, thereby improving rooting response in E. globulus.

摘要

经济上重要的植物物种,如蓝桉,往往生根困难。我们之前已经表明,对蓝桉供体植物进行远红光富集可提高微插条的生根能力,并增加生根区/地上部碳水化合物比率。为了更好地理解这种发育反应,在源自暴露于远红光或白光的供体植物的蓝桉微插条不定根形成过程中,对参与生长素信号传导(ARF6、ARF8、AGO1)、生物合成(YUC3)和运输(AUX1、PIN1、PIN2);蔗糖裂解(SUS1、CWINV1)、运输(SUC5)、己糖磷酸化(HXK1、FLN1)和淀粉生物合成(SS3)的基因的相对表达谱进行了定量分析。生长素运输相关基因的表达在根诱导的最初几天增加。供体植物的远红光富集诱导了微插条中的ARF6、ARF8和AGO1。前两种基因产物可以激活GH3和其他生根相关基因,而AGO1对阻遏物ARF17的去调控可能减轻生根抑制。SUC介导的根组织中蔗糖卸载以及随后SUS1水解导致基部茎的库强度增加也得到了基因表达谱的支持。果糖磷酸化和淀粉生物合成也可能有助于生根部位的碳分配适当,相关基因表达增加证明了这一点。这些数据与从暴露于远红光的供体植物上切下的插条基部己糖和淀粉含量增加非常一致。总之,在源自暴露于远红光富集的供体植物的微插条中,整合生长素和碳水化合物代谢的途径被激活,从而改善了蓝桉的生根反应。

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