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首页> 外文期刊>Progress in Artificial Intelligence >Expression Profile of PIN-Formed Auxin Efflux Carrier Genes during IBA-Induced In Vitro Adventitious Rooting in Olea europaea L.
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Expression Profile of PIN-Formed Auxin Efflux Carrier Genes during IBA-Induced In Vitro Adventitious Rooting in Olea europaea L.

机译:在Olea铕L中的IBA诱导的IBA诱导过程中引脚形成的扎带蛋白流出载体基因的表达谱。

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Exogenous auxins supplementation plays a central role in the formation of adventitious roots (AR) for several plant species. However, the molecular mechanisms underlying the process of adventitious rooting are still not completely understood and many plants with economic value, including several olive cultivars, exhibit a recalcitrant behavior towards cutting propagation, which limits its availability in plant nurseries. PIN-formed proteins are auxin efflux transporters that have been widely characterized in several plant species due to their involvement in many developmental processes including root formation. The present study profiled the expression of the OePIN1a-c, OePIN2b, OePIN3a-c, OePIN5a-c, OePIN6, and OePIN8 gene members during indole-3-butyric acid (IBA)-induced in vitro adventitious rooting using the olive cultivar 'Galega vulgar'. Gene expression analysis by quantitative real time PCR (RT-qPCR) showed drastic downregulation of most transcripts, just a few hours after explant inoculation, in both nontreated and IBA-treated microcuttings, albeit gene downregulation was less pronounced in IBA-treated stems. In contrast, OePIN2b showed a distinct expression pattern being upregulated in both conditions, and OePIN5b was highly upregulated in IBA-induced stems. All transcripts, except OePIN8, showed different expression profiles between nontreated and IBA-treated explants throughout the rooting experiment. Additionally, high levels of reactive oxygen species (ROS) were observed soon after explant preparation, decreasing a few hours after inoculation. Altogether, the results suggest that wounding-related ROS production, associated with explant preparation for rooting, may have an impact on auxin transport and distribution via changes in OePIN gene expression. Moreover, the application of exogenous auxin may modulate auxin homeostasis through regulation of those genes, leading to auxin redistribution throughout the stem-base tissue, which may ultimately play an important role in AR formation.
机译:外源性毒素补充在几种植物物种的不定根(AR)的形成中起着核心作用。然而,偶然生根过程的分子机制仍然没有完全理解,并且许多具有经济价值的植物,包括几种橄榄品种,表现出用于切割繁殖的顽固行为,这限制了其在植物苗圃中的可用性。引脚形成的蛋白质是一种营养生效转运蛋白,其在几种植物物种中被广泛表征,这是由于它们的参与在包括根部形成的许多发育过程中。本研究在吲哚-3-丁酸(IBA)期间,在吲哚-3-丁酸(IBA)期间,在吲哚-3-丁酸(IBA)期间,在吲哚-3-丁基酸(IBA)期间,oEpin1a-c,Oepin2b,Oepin3a-c,Oepin5a-c,Oepin6和oepin8基因成员的表达诱导使用橄榄色品种的galega庸俗'。通过定量实时PCR(RT-QPCR)的基因表达分析显示出大多数转录物的急剧下调,仅仅几小时在外部接种后,在非生成和IBA处理的微孵化中,在IBA处理的茎中虽然基因下调较少发音。相反,OEPIN2B显示出在两个条件下上调的明显表达模式,并且OEPIN5B在IBA诱导的茎中高度上调。除了OEPIN8之外的所有转录物在整个生根实验中显示出非生成和IBA治疗的外植体之间的不同表达谱。另外,在解放甲醇制备之后,不久将近含量高水平的反应性氧物质(ROS),接种后几个小时减少。总而言之,结果表明,与生根的勘探制剂有关的伤害相关的ROS生产可能对蟾蜍素转运和通过OEPIN基因表达的变化产生影响。此外,外源性毒素的应用可以通过调节这些基因调节蟾蜍蛋白稳态,导致在整个茎基组织中的生长素再分布,这可能最终在AR形成中发挥重要作用。

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