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乙烯相关信号抑制八肽 NOP-1 对“金冠”苹果采后成熟和品质的影响。

Influence of the ethylene-related signal-inhibiting octapeptide NOP-1 on postharvest ripening and quality of 'Golden Delicious' apples.

机构信息

Institute of Crop Science and Resource Conservation - Horticultural Science, Univesity of Bonn, Bonn, Germany.

COMPO Expert GmbH, Münster, Germany.

出版信息

J Sci Food Agric. 2019 Jun;99(8):3903-3909. doi: 10.1002/jsfa.9613. Epub 2019 Feb 25.

Abstract

BACKGROUND

Processes extending the shelf life of climacteric fruit play an important role in terms of a sustainable global food supply. In a previous study, a synthetic octapeptide (NOP-1) was shown to inhibit the interaction between ethylene receptor (ETR) and ethylene insensitive-2 (EIN2), and in consequence delay tomato ripening. We investigated for the first time the effect of NOP-1 on inhibiting the ripening of apples ('Golden Delicious') during postharvest.

RESULTS

Using purified recombinant proteins from a bacterial expression system, we demonstrate here that EIN2 also interacts tightly (K  = 136 ± 29 nmol L ) with the corresponding apple ETR MdETR1. In line with previous binding studies on tomato ETRs, the ripening-delaying peptide NOP-1 clearly binds to the purified apple ETR. An NOP-1 solution (1000 µmol L ) was applied with a brush or microdispenser and compared with apples treated with 1-methylcyclopropene (1-MCP) (SmartFresh™, Agrofresh) applied as gaseous treatment or untreated control fruits. NOP-1 inhibited colour development and chlorophyll degradation during shelf life. These effects were more pronounced with the brush application (surface film) than with microdroplets application (mimicking a sprayable formulation). NOP-1 did not alter ethylene release or respiration rate, whereas 1-MCP expectedly strongly suppressed both. There were no differences in quality parameters evaluated.

CONCLUSION

Our study shows that NOP-1 binds to MdETR1 which results in delaying of ethylene-dependent ripening developments of skin colour and chlorophyll. Besides application methods, possible reasons for the weak effect of NOP-1 in comparison with previous tomato experiments could be different receptor affinity and penetration differences. © 2019 Society of Chemical Industry.

摘要

背景

延长跃变型果实货架期的方法对全球可持续粮食供应具有重要意义。在之前的研究中,合成八肽(NOP-1)被证明可以抑制乙烯受体(ETR)和乙烯不敏感 2(EIN2)之间的相互作用,从而延缓番茄成熟。我们首次研究了 NOP-1 在抑制采后苹果(‘金冠’)成熟过程中的作用。

结果

利用从细菌表达系统纯化的重组蛋白,我们在此证明 EIN2 也与相应的苹果 ETR MdETR1 紧密结合(K=136±29nmol L)。与之前对番茄 ETR 的结合研究一致,成熟延迟肽 NOP-1 明显与纯化的苹果 ETR 结合。用刷子或微分配器涂抹 NOP-1 溶液(1000µmol L),并与用 1-甲基环丙烯(1-MCP)(SmartFresh™,Agrofresh)处理的苹果(作为气态处理或未处理的对照果实)进行比较。NOP-1 抑制货架期内的颜色发育和叶绿素降解。与微滴应用(模拟喷雾制剂)相比,刷子应用(表面膜)的效果更为明显。NOP-1 不会改变乙烯释放或呼吸速率,而 1-MCP 预期会强烈抑制这两者。评估的质量参数没有差异。

结论

我们的研究表明,NOP-1 与 MdETR1 结合,导致依赖乙烯的果皮颜色和叶绿素成熟发展延迟。除了应用方法外,NOP-1 与之前的番茄实验相比效果较弱的可能原因还包括受体亲和力和渗透差异不同。 © 2019 化学工业协会。

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