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Specific response of apple skin and pulp tissues to cold stress and 1-MCP treatment.

机译:苹果皮和果肉组织对冷胁迫和1-MCP处理的特异性反应。

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摘要

It is now widely accepted that 1-MCP reduces ethylene production and prevents scald disorder in apple skin tissue. However, despite this beneficial effect, very little is known about the effects of 1-MCP on this tissue. This study aimed to determine how this treatment affects ACC metabolism in both skin and pulp tissues in relation to cold storage. Changes in ACC metabolism were monitored in control and 1-MCP treated fruit stored in air and removed after 0, 15, 30, 90 and 150 days of storage. 1-MCP treatment caused an inhibition of ethylene production but also of ACC synthase (ACS) activity and ACC levels both in pulp and skin. Compared to the control, 1-MCP treatment also induced a significant reduction in ACC oxidase (ACO) activity, but the inhibition remained incomplete in both tissues. High levels of MACC were found in 1-MCP treated fruit, showing the presence of a malonyl transferase insensitive to 1-MCP treatment. Collectively, these results showed that apple skin and pulp exhibited similar climacteric behaviour. The results also showed that the different parameters involved in ACC metabolism were differentially inhibited by the 1-MCP treatment during cold storage. ACS was completely inhibited in both tissues, ACO only partially and the treatment was ineffective to prevent MACC accumulation..
机译:现已广泛接受的是1-MCP可以减少乙烯的产生并防止苹果皮肤组织中的烫伤。然而,尽管具有这种有益的作用,但是关于1-MCP对这种组织的作用知之甚少。这项研究旨在确定这种治疗如何影响与冷藏相关的皮肤和牙髓组织中的ACC代谢。对照和1-MCP处理的水果在空气中保存后,在0、15、30、90和150天保存后,监测ACC代谢的变化。 1-MCP处理不仅抑制果肉和皮肤中的乙烯生成,而且还抑制ACC合酶(ACS)活性和ACC水平。与对照组相比,1-MCP处理还诱导ACC氧化酶(ACO)活性显着降低,但在两个组织中抑制作用仍不完全。在经过1-MCP处理的水果中发现了高水平的MACC,表明存在对1-MCP处理不敏感的丙二酰转移酶。总的来说,这些结果表明苹果皮和果肉表现出相似的更年期行为。结果还表明,在冷藏期间,1-MCP处理可不同地抑制参与ACC代谢的不同参数。 ACS在两个组织中均被完全抑制,ACO仅被部分抑制,并且该治疗无法有效防止MACC积累。

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