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首页> 外文期刊>Postharvest Biology and Technology >Inhibition of tomato fruit ripening by 1-MCP, wortmannin and hexanal is associated with a decrease in transcript levels of phospholipase D and other ripening related genes
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Inhibition of tomato fruit ripening by 1-MCP, wortmannin and hexanal is associated with a decrease in transcript levels of phospholipase D and other ripening related genes

机译:抑制番茄果实成熟1-MCP,Wortmannin和己醛与磷脂酶D和其他成熟相关基因的转录水平降低有关

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摘要

Membrane deterioration is an inherent aspect of the advancement in senescence and loss in fruit quality during storage. Postharvest technologies used for extending shelf life and quality are targeted to reduce membrane damage through downregulating or blocking ethylene action. In this study, mature green tomato fruit were treated with inhibitors of ethylene receptor (ETR), phosphatidylinositol 3-kinase (PI3K) and phospholipase D (PLD), all recognized to be targets of regulation of fruit ripening. The inhibitors used included 1-methylcyclopropene (1-MCP, an ethylene receptor blocker), wortmannin (an inhibitor of PI3K), and hexanal (a PLD inhibitor). Fruit were treated at optimal levels of the inhibitors and were stored at 21 degrees C for 10 days. Color development was strongly delayed in wortmannin treated tomatoes just as in 1-MCP treated fruit; while, changes in respiration, firmness and ethylene evolution were very similar to that of control fruit. Hexanal delayed the initiation of these changes; while 1-MCP and wortmannin blocked the ripening process. Changes in expression levels of key genes involved in ethylene signalling, phosphoinositide metabolism, and lycopene synthesis that occurred in response to inhibitors, suggested potential roles for PI3K and PLD in ethylene signalling. Furthermore, fruit treated with all the three inhibitors showed a marked reduction in PLD transcript levels; suggesting that, regulation of PLD gene expression is a common critical regulatory point that regulates ripening. Lowered PLD levels may reduce membrane lipid catabolism and the generation of phosphatidic acid (PA), an intermediate in ethylene signalling regulation through downstream components.
机译:膜劣化是在储存期间衰老和果实质量损失的衰变的固有方面。用于延长保质期和质量的波萨斯匹配技术旨在通过下调或阻断乙烯作用来降低膜损伤。在这项研究中,用乙烯受体(ETR),磷脂酰肌醇3-激酶(PI3K)和磷脂酶D(PLD)的抑制剂处理成熟的绿色番茄果实,所有人都认为是果实成熟的调节靶标。使用的抑制剂包括1-甲基环丙烯(1-MCP,乙烯受体阻滞剂),Wortmannin(PI3K的抑制剂)和己醛(PLD抑制剂)。在最佳水平的抑制剂水平下进行果实,并在21℃下储存10天。在1-MCP处理的果实中,Wortmannin治疗的西红柿强烈延迟了颜色发展;虽然,呼吸的变化,坚定和乙烯进化与对照果实的变化非常相似。己醛延迟了这些变化的启动;虽然1-MCP和Wortmannin阻止了成熟过程。乙烯信号传导中涉及的关键基因的表达水平的变化,磷酸膦膦解代谢和番茄红素合成发生响应抑制剂,提出了PI3K和PLD在乙烯信号中的潜在作用。此外,用所有三种抑制剂治疗的果实显示PLD转录物水平的显着降低;暗示,PLD基因表达的调节是调节成熟的常见临界调节点。降低的PLD水平可以减少膜脂质分解代谢和磷脂酸(PA)的产生,通过下游组分中间体中中间体中中间体。

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