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Effects of (S)-Carvone and Gibberellin on Sugar Accumulation in Potatoes during Low Temperature Storage

机译:(S)-香芹酮和赤霉素对马铃薯低温贮藏过程中糖分累积的影响

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摘要

Potato tubers (Solanum tuberosum L.) are usually stored at low temperature, which can suppress sprouting and control the occurrence of diseases. However, low temperatures lead potatoes to easily suffer from cold-induced sweetening (CIS), which has a negative effect on food processing. The aim of this research was to investigate potential treatments on controlling CIS in potatoes during postharvest storage. “Atlantic” potatoes were treated with gibberellin and (S)-carvone, respectively, and stored at 4 °C for 90 days. The results showed that gibberellin can significantly accelerate sprouting and sugar accumulation by regulating expressions of ADP-glucose pyrophosphorylase (AGPase), granule-bound starch synthase (GBSS), β-amylase (BAM1/2), UDP-glucose pyrophosphorylase (UGPase) and invertase inhibitor (INH1/2) genes. The opposite effects were found in the (S)-carvone treatment group, where CIS was inhibited by modulation of the expressions of GBSS and INH1/2 genes. In summary, gibberellin treatment can promote sugar accumulation while (S)-carvone treatment has some effects on alleviating sugar accumulation. Thus, (S)-carvone can be considered as a potential inhibitor of some of the sugars which are vital in controlling CIS in potatoes. However, the chemical concentration, treatment time, and also the treatment method needs to be optimized before industrial application.
机译:马铃薯块茎(Solanum tuberosum L.)通常低温保存,可以抑制发芽并控制疾病的发生。然而,低温导致马铃薯容易遭受冷诱导的甜味(CIS),这对食品加工产生负面影响。这项研究的目的是调查在收获后贮藏期间控制马铃薯CIS的潜在方法。 “大西洋”土豆分别用赤霉素和(S)-香芹酮处理,并在4°C下保存90天。结果表明,赤霉素可以通过调节ADP-葡萄糖焦磷酸化酶(AGPase),颗粒结合淀粉合酶(GBSS),β-淀粉酶(BAM1 / 2),UDP-葡萄糖焦磷酸化酶(UGPase)和转化酶抑制剂(INH1 / 2)基因。在(S)-香芹酮治疗组中发现了相反的作用,其中通过调节GBSS和INH1 / 2基因的表达来抑制CIS。总之,赤霉素处理可以促进糖积累,而(S)-香芹酮处理可以减轻糖积累。因此,( S )-香芹酮可以被认为是某些糖的潜在抑制剂,这些糖对控制马铃薯的CIS至关重要。但是,在工业应用之前需要优化化学浓度,处理时间以及处理方法。

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