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1-MCP Application before Continuous Ethylene Storage Suppresses Sugar Accumulation in the UK-Grown Potato Cultivar 'Marfona'

机译:连续乙烯储存前的1-MCP应用抑制英国生育马铃薯品种“Marfona”中的糖积聚

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It has previously been shown that ethylene application at 10 μl L~(-1) can successfully inhibit sprouting and therefore promote the longer storage of potatoes, but in combination with low temperatures can cause the increase in sugar content. The blocking of ethylene perception by 1-methylcyclopropene (1-MCP) may be expected to have a deleterious effect on potato storage in terms of sprouting; however sugar tuber accumulation might be reduced. In this study, the effect of both 1-MCP and ethylene on biochemical composition, respiration rate and sprouting in the UK-grown potato cultivar 'Marfona' was investigated. Potatoes were harvested and slowly cured from 15 to 6°C over two weeks. Tubers were then exposed to ± 1μl L~(-1) 1-MCP for 24 h. After the 1-MCP treatment the tubers were placed in trays and stored in the presence or absence of continuous ethylene (10 μl L~(-1)) at 6°C at Sutton Bridge Crop Storage Research Unit (SBCSR) (Lines., UK) for 30 weeks. Ethylene-treated tubers that did not receive the 1-MCP treatment contained higher levels of total sugars than air-treated potatoes. In contrast, there were no significant differences in sugars between ethylene and air-treated tubers that had received a prior 1-MCP treatment. Additionally, the ethylene-treated tubers that did not receive 1-MCP had significantly higher sucrose, glucose and fructose content than those that received 1-MCP. Respiration rate of tubers was significantly higher in both ethylene and air-treated tubers that received 1-MCP. Surprisingly, there were no significant differences between treatments regarding total number of sprouts measured after thirty weeks storage. The results suggest that a 24 h 1 μl L~(-1) 1-MCP exposure before storage did not affect the total sprout number of tubers, but that the action of ethylene was significantly suppressed in terms of sugar accumulation of tubers.
机译:先前已经表明,10μLL〜(-1)的乙烯应用可以成功地抑制发芽,因此促进了较长的土豆储存,但与低温结合会导致糖含量的增加。通过1-甲基环丙烯(1-MCP)的乙烯感知抑制可能预期对发芽而对马铃薯储存具有有害影响;然而,糖块覆盖率可能会降低。在这项研究中,研究了1-MCP和乙烯对英国生长的马铃薯品种“Marfona”中生物化学成分,呼吸率和发芽的影响。收获土豆并在两周内缓慢固化15至6°C。然后将块茎暴露于±1μl1-(-1)1-MCP 24小时。在1-MCP处理之后,将块茎置于托盘中并在Sutton Bridge Crop储存研究单元(SBCSR)的6℃下储存在6℃的存在或不存在连续乙烯(10μlL〜(-1))中(10μl1))(SBCSR)(线条。英国)30周。没有接受1-MCP处理的乙烯处理的块茎含有比空气处理的土豆更高水平的总糖。相比之下,乙烯与接受先前1-MCP处理的乙烯和空气处理块茎之间的糖无显着差异。另外,未接收1-MCP的乙烯处理的块茎比接受1-MCP的蔗糖,葡萄糖和果糖含量显着更高。乙烯和接收1-MCP的乙烯和空气处理的块茎的呼吸速率显着高。令人惊讶的是,关于在30周储存三十周后测量的芽排序总数之间没有显着差异。结果表明,在储存之前,24小时1μlL〜(-1)1-MCP暴露不会影响块茎的总发芽数量,但在块茎的糖积聚方面,乙烯的作用显着抑制。

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