首页> 外文期刊>Postharvest Biology and Technology >Exogenous phytosulfokine alpha application delays senescence and promotes antioxidant nutrient accumulation in strawberry fruit during cold storage by triggering endogenous phytosulfokine alpha signaling
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Exogenous phytosulfokine alpha application delays senescence and promotes antioxidant nutrient accumulation in strawberry fruit during cold storage by triggering endogenous phytosulfokine alpha signaling

机译:外源植硫酸盐α应用延迟衰老,通过触发内源性植物霉素α信号传导在冷藏过程中促进草莓果实中的抗氧化营养积累

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摘要

In this study, the mechanism by which the exogenous application of 150 nM signaling bioactive peptide phytosulfokine alpha (PSK alpha) delays senescence and improves antioxidant nutrient accumulation in strawberry fruit during storage at 4 degrees C for 18 d was investigated. Results showed that the higher endogenous accumulation of PSK alpha in strawberry fruit treated with 150 nM PSK alpha may result from the higher expression of PSK3 and PSK6 genes. Besides, the higher endogenous accumulation of Ca(2 )in strawberry fruit treated with 150 nM PSK alpha may be ascribed to the higher cytosolic accumulation of cGMP, resulting from the triggering of endogenous PSK alpha signaling pathway, represented by higher expression of PSKR1 gene. Besides, the higher endogenous melatonin accumulation resulting from higher expression of TDC, T5H, SNAT, and ASMT genes in strawberry fruit treated with 150 nM PSK alpha may be ascribed to the higher endogenous accumulation of Ca2+. Moreover, the higher ABTS and DPPH scavenging capacity in strawberry fruit treated with 150 nM PSK alpha may be ascribed to the higher accumulation of phenols, flavonoids, and anthocyanins, resulting from higher gene expression and activities of PAL and CHS. Based on our findings, the exogenous application of PSK alpha could be employed as a beneficial procedure for delaying senescence and improving antioxidant nutrient accumulation in strawberry fruit during cold storage, by triggering endogenous PSK alpha signaling, promoting endogenous melatonin accumulation, and activating the phenylpropanoid pathway.
机译:在本研究中,研究了外源施用150nm信号生物活性肽植物磺基激酶α(PSKα)延缓草莓果实在4℃贮藏18d期间的衰老并改善抗氧化营养物质积累的机制。结果表明,经150nm PSKα处理的草莓果实中PSKα的较高内源积累可能与PSK3和PSK6基因的高表达有关。此外,经150nm PSKα处理的草莓果实中Ca(2)的较高内源积累可能归因于cGMP的较高胞浆积累,这是由内源PSKα信号通路触发所致,表现为PSKR1基因的较高表达。此外,在150nm PSKα处理的草莓果实中,TDC、T5H、SNAT和ASMT基因的高表达导致内源褪黑素的高积累可能与Ca2+的高内源积累有关。此外,经150nm PSKα处理的草莓果实具有较高的ABTS和DPPH清除能力,这可能是由于较高的PAL和CHS基因表达和活性导致酚类、类黄酮和花青素的积累。根据我们的研究结果,外源性应用PSK-α可以通过触发内源性PSK-α信号传导、促进内源性褪黑素积累和激活苯丙烷途径,作为延缓草莓果实衰老和改善抗氧化营养物质积累的有益程序。

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