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首页> 外文期刊>Physiology and Molecular Biology of Plants >Transcriptomic and metabolomic profiling reveals the protective role of anthocyanins in alleviating low phosphate stress in maize
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Transcriptomic and metabolomic profiling reveals the protective role of anthocyanins in alleviating low phosphate stress in maize

机译:转录组和代谢物分析揭示了花青素在缓解玉米中磷酸盐胁迫下的保护作用

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Anthocyanin accumulation is a characteristic response to phosphate (Pi) deficiency in plants. In the present study, we investigated the role of maize anthocyanins (MA) in alleviating low Pi (LP) stress in maize (Zea mays L). To this end, maize plants were exposed to LP conditions and treated with or without (control) MA. Interestingly, MA-treated maize plants showed relieved growth inhibition, reproductive development retardation, and yield loss compared to control plants under LP stress. Moreover, the level of oxidative destruction was significantly alleviated in MA-treated plants compared to the untreated control under conditions of LP stress. Acid phosphatase (APase) activity was significantly higher in MA-treated plants than in control plants, resulting in enhanced Pi mobilization and recycling. The results of the transcriptome analysis suggested that genes involved in photosynthesis, photosystem light harvesting, Pi transport, and recycling were differentially expressed between MA-treated plants and control plants. Moreover, metabolome analysis indicated higher sugar and organic acid levels and lower phosphorylated metabolite contents in MA-treated plants than in control plants, which was consistent with the results of the comparative transcriptome analysis. Taken together, our findings indicate that MA plays critical roles in alleviating LP stress in maize plants, probably by improving photosynthetic performance and increasing Pi mobilization and recycling.
机译:花青素积累是植物对磷(Pi)缺乏的一种特征性反应。在本研究中,我们研究了玉米花青素(MA)在缓解玉米(Zea mays L.)低磷胁迫中的作用。为此,将玉米植株暴露于LP条件下,并用或不用(对照)MA处理。有趣的是,与LP胁迫下的对照相比,MA处理的玉米植株表现出减轻的生长抑制、生殖发育迟缓和产量损失。此外,在LP胁迫条件下,与未经处理的对照相比,MA处理的植物的氧化破坏水平显著降低。MA处理植株的酸性磷酸酶(APase)活性显著高于对照植株,导致Pi动员和循环增强。转录组分析的结果表明,在MA处理的植物和对照植物之间,参与光合作用、光系统采光、Pi运输和再循环的基因存在差异表达。此外,代谢组分析表明,与对照植物相比,MA处理植物的糖和有机酸水平较高,磷酸化代谢产物含量较低,这与比较转录组分析的结果一致。综上所述,我们的研究结果表明,MA在缓解玉米植株的LP胁迫中起着关键作用,可能是通过改善光合性能和增加Pi动员和再循环。

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