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首页> 外文期刊>Postharvest Biology and Technology >Effects of postharvest ethanol vapor treatment on activities and gene expression of chlorophyll catabolic enzymes in broccoli florets
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Effects of postharvest ethanol vapor treatment on activities and gene expression of chlorophyll catabolic enzymes in broccoli florets

机译:采后乙醇蒸气处理对西兰花小花叶绿素分解代谢酶活性和基因表达的影响

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摘要

Postharvest yellowing of broccoli (Brassica oleracea L. Italica Group) is an important indicator of quality deterioration and occurs with chlorophyll (Chl) degradation. Postharvest ethanol vapor treatment could delay the yellowing of broccoli florets, through the suppression of Chl degradation. As the first step in identifying the mechanism of this delay, the effects of postharvest ethanol vapor treatment on activities and gene expression of the Chl catabolic enzymes in broccoli were determined. Broccoli branchlets were placed in a perforated polyethylene bag with or without (control) an ethanol pad and stored at 20pC in darkness. The Chl contents of the control broccoli florets decreased remarkably after three days in storage, whereas the contents of the ethanol-treated broccoli showed no significant changes except at day one. Changes in chlorophyllase activity in the ethanol-treated broccoli were similar to those of the control until three days in storage, but then the activity tended to decease. Mg-dechelatase and Chl-degrading peroxidase activities, which increased greatly with senescence in the controls, remained unchanged in the ethanol-treated broccoli. BoCLH1 expression showed changes almost similar to those of chlorophyllase activity. BoPAO expression in the control broccoli increased greatly at day one in storage and was maintained at a high level until three days. In contrast, this expression in ethanol-treated broccoli was suppressed until two days. BoRCCR expression in the control broccoli increased until two days in storage, while the expression in the ethanol-treated broccoli showed no change during storage. These results show that postharvest ethanol vapor treatment suppressed the activities and gene expression of Chl catabolic enzymes, resulting in delayed yellowing of broccoli florets.
机译:花椰菜(甘蓝型油菜组)收获后泛黄是质量下降的重要指标,并且随着叶绿素(Chl)降解而发生。收获后的乙醇蒸气处理可通过抑制Chl降解来延迟西兰花小花的泛黄。作为确定这种延迟机制的第一步,确定了收获后乙醇蒸气处理对西兰花中Chl分解代谢酶的活性和基因表达的影响。将花椰菜小枝放在有或没有(对照)乙醇垫的多孔聚乙烯袋中,并在黑暗中于20pC下储存。贮藏三天后,对照西兰花小花的Chl含量显着下降,而用乙醇处理的西兰花的含量除第一天外没有显着变化。乙醇处理的花椰菜中的叶绿素酶活性变化与对照相似,直至储存三天,但随后趋于下降。在对照组中,随着衰老而大大增加的Mg-脱螯合酶和Chl降解过氧化物酶活性在乙醇处理的西兰花中保持不变。 BoCLH1表达显示出与叶绿素酶活性几乎相似的变化。在储存的第一天,对照西兰花中的BoPAO表达大大增加,并保持高水平直至三天。相反,乙醇处理的西兰花中的这种表达被抑制到两天。直到保存两天,对照西兰花中的BoRCCR表达均增加,而在乙醇处理的西兰花中,BoRCCR的表达在存储过程中未显示变化。这些结果表明,收获后的乙醇蒸气处理抑制了Chl分解代谢酶的活性和基因表达,从而导致西兰花小花延迟黄化。

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