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首页> 外文期刊>Plant and cell physiology >Transcriptome Analysis Points to BES1 as a Transducer of Strigolactone Effects on Drought Memory in Arabidopsis thaliana
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Transcriptome Analysis Points to BES1 as a Transducer of Strigolactone Effects on Drought Memory in Arabidopsis thaliana

机译:转录组分析表明BES1是独脚金内酯对拟南芥干旱记忆影响的转导

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Strigolactones (SLs) are carotenoid-derived phytohormones governing a wide range of physiological processes, including drought-associated stomatal closure. We have previously shown in tomato that SLs regulate the so-called after-effect of drought, whereby stomatal conductance is not completely restored for some time during recovery after a drought spell, irrespective of the water potential. To ease the elucidation of its molecular underpinnings, we investigated whether this SL effect is conserved in Arabidopsis thaliana by contrasting the physiological performances of the wild-type with SL-depleted (more axillary growth 4, max4) and insensitive (dwarf 14, d14) mutants in a drought and recovery protocol. Physiological analyses showed that SLs are important to achieve a complete after-effect inA. thaliana, while transcriptome results suggested that the SL-dependent modulation of drought responses extends to a large subset (about 4/5) of genes displaying memory transcription patterns. Among these, we show that the activation of over 30 genes related to abscisic acid metabolism and signaling strongly depends on SL signaling. Furthermore, by using promoter-enrichment tools, we identified putative cis- and trans-acting factors that may be important in the SL-dependent and SL-independent regulation of genes during drought and recovery. Finally, in order to test the accuracy of our bioinformatic prediction, we confirmed one of the most promising transcription factor candidates mediating SL signaling effects on transcriptional drought memory-BRI-EMS SUPPRESSOR1 (BES1). Our findings reveal that SLs are master regulators of Arabidopsis transcriptional memory upon drought and that this role is partially mediated by the BES1 transcription factor.
机译:独脚金内酯 (SL) 是类胡萝卜素衍生的植物激素,控制广泛的生理过程,包括与干旱相关的气孔闭合。我们之前在番茄中表明,SL调节了所谓的干旱后遗症,即在干旱后的恢复过程中,无论水势如何,气孔导度都不会完全恢复。为了便于阐明其分子基础,我们研究了这种SL效应在拟南芥中是否保守,方法是在干旱和恢复方案中对比野生型与SL耗尽(更多腋窝生长4,最大4)和不敏感(矮14,d14)突变体的生理表现。生理学分析表明,SLs对于实现A的完全后遗症很重要。而转录组结果表明,干旱响应的SL依赖性调节延伸到显示记忆转录模式的一大子集(约4/5)基因。其中,我们发现与脱落酸代谢和信号传导相关的 30 多个基因的激活强烈依赖于 SL 信号传导。此外,通过使用启动子富集工具,我们确定了假定的顺式和反式作用因子,这些因子可能在干旱和恢复期间基因的SL依赖性和SL非依赖性调控中很重要。最后,为了检验我们的生物信息学预测的准确性,我们确认了介导SL信号转导对转录干旱记忆-BRI-EMS SUPPRESSOR1(BES1)影响的最有希望的转录因子候选因子之一。我们的研究结果表明,SLs是干旱时拟南芥转录记忆的主要调节因子,并且这种作用部分由BES1转录因子介导。

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