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甜樱桃果实开裂:后续测试方法与品种代谢筛选

Sweet cherry fruit cracking: follow-up testing methods and cultivar-metabolic screening.

作者信息

Michailidis Michail, Karagiannis Evangelos, Tanou Georgia, Sarrou Eirini, Karamanoli Katerina, Lazaridou Athina, Martens Stefan, Molassiotis Athanassios

机构信息

1Laboratory of Pomology, School of Agriculture, Aristotle University of Thessaloniki, 570 01, Thessaloniki-Thermi, Greece.

Institute of Soil and Water Resources, ELGO-DEMETER, Thessaloniki, 57001 Greece.

出版信息

Plant Methods. 2020 Apr 10;16:51. doi: 10.1186/s13007-020-00593-6. eCollection 2020.

Abstract

BACKGROUND

Rain-induced fruit cracking is a major physiological problem in most sweet cherry cultivars. For an in vivo cracking assay, the 'Christensen method' (cracking evaluation following fruit immersion in water) is commonly used; however, this test does not adequately simulate environmental conditions. Herein, we have designed and evaluated a cracking protocol, named 'Waterfall method', in which fruits are continuously wetted under controlled conditions.

RESULTS

The application of this method alone, or in combination with 'Christensen method, was shown to be a reliable approach to characterize sweet cherry cracking behavior. Seventeen cherry cultivars were tested for their cracking behavior using both protocols, and primary as well as secondary metabolites identification was performed in skin tissue using a combined GC-MS and UPLC-MS/MS platform. Significant variations of some of the detected metabolites were discovered and important cracking index-metabolite correlations were identified.

CONCLUSIONS

We have established an alternative/complementary method of cherry cracking characterization alongside to Christiansen assay.

摘要

背景

雨水导致的果实开裂是大多数甜樱桃品种面临的一个主要生理问题。对于活体开裂测定,通常采用“克里斯蒂安森方法”(将果实浸入水中后进行开裂评估);然而,该测试不能充分模拟环境条件。在此,我们设计并评估了一种名为“瀑布法”的开裂方案,即在受控条件下使果实持续湿润。

结果

单独应用该方法或与“克里斯蒂安森方法”结合使用,被证明是表征甜樱桃开裂行为的可靠方法。使用这两种方案对17个樱桃品种的开裂行为进行了测试,并使用气相色谱 - 质谱联用和超高效液相色谱 - 串联质谱联用平台对果皮组织中的初级和次级代谢产物进行了鉴定。发现了一些检测到的代谢产物的显著差异,并确定了重要的开裂指数与代谢产物的相关性。

结论

我们建立了一种与克里斯蒂安森测定法并行的樱桃开裂表征的替代/补充方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0861/7149889/0250642c8812/13007_2020_593_Fig1_HTML.jpg

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