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Comparative Proteomic Analysis during the Involvement of Nitric Oxide in Hydrogen Gas-Improved Postharvest Freshness in Cut Lilies

机译:一氧化氮参与氢气改善切花百合收获后新鲜度过程中的比较蛋白质组学分析

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摘要

Our previous studies suggested that both hydrogen gas (H2) and nitric oxide (NO) could enhance the postharvest freshness of cut flowers. However, the crosstalk of H2 and NO during that process is unknown. Here, cut lilies (Lilium “Manissa”) were used to investigate the relationship between H2 and NO and to identify differentially accumulated proteins during postharvest freshness. The results revealed that 1% hydrogen-rich water (HRW) and 150 μM sodium nitroprusside (SNP) significantly extended the vase life and quality, while NO inhibitors suppressed the positive effects of HRW. Proteomics analysis found 50 differentially accumulated proteins in lilies leaves which were classified into seven functional categories. Among them, ATP synthase CF1 alpha subunit (chloroplast) (AtpA) was up-regulated by HRW and down-regulated by NO inhibitor. The expression level of LlatpA gene was consistent with the result of proteomics analysis. The positive effect of HRW and SNP on ATP synthase activity was inhibited by NO inhibitor. Meanwhile, the physiological-level analysis of chlorophyll fluorescence and photosynthetic parameters also agreed with the expression of AtpA regulated by HRW and SNP. Altogether, our results suggested that NO might be involved in H2-improved freshness of cut lilies, and AtpA protein may play important roles during that process.
机译:我们以前的研究表明,氢气(H2)和一氧化氮(NO)均可增强切花的采后新鲜度。但是,在此过程中H2和NO的串扰是未知的。在这里,使用切花百合(Lilium“ Manissa”)研究H2和NO之间的关系,并在采后新鲜期间鉴定差异积累的蛋白质。结果表明,1%的富氢水(HRW)和150μM硝普钠(SNP)显着延长了花瓶的寿命和质量,而NO抑制剂抑制了HRW的积极作用。蛋白质组学分析在百合叶中发现了50种差异积累的蛋白质,这些蛋白质被分为七个功能类别。其中,ATP合酶CF1α亚基(叶绿体)(AtpA)被HRW上调,而被NO抑制剂下调。 LlatpA基因的表达水平与蛋白质组学分析结果一致。 NO抑制剂抑制了HRW和SNP对ATP合酶活性的积极影响。同时,叶绿素荧光和光合参数的生理水平分析也与HRW和SNP调节的AtpA的表达一致。总之,我们的结果表明NO可能与切花百合的H2改善的新鲜度有关,并且AtpA蛋白可能在该过程中发挥重要作用。

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