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揭示甜樱桃果实对采后 UV-C 辐射响应的代谢特征。

Metabolic features underlying the response of sweet cherry fruit to postharvest UV-C irradiation.

机构信息

Laboratory of Pomology, School of Agriculture, Aristotle University of Thessaloniki, Thessaloniki, Greece.

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

出版信息

Plant Physiol Biochem. 2019 Nov;144:49-57. doi: 10.1016/j.plaphy.2019.09.030. Epub 2019 Sep 19.

Abstract

The impact of ultraviolet-C (UV-C) irradiation on sweet cherry fruit was studied. Following harvest, fruits (cv. Sweetheart) were exposed to different doses of UV-C (0, 1.2, 3.0 or 6.0 kJ m) and then cold stored (0 °C) for 10 days. Treatments with UV-C delayed most ripening features and reduced pitting symptoms, particularly following prolonged UV-C application. Also, application of the highest UV-C dose inhibited pectin degradation and delayed skin resistance to penetration. An activation of antioxidants capacity and bioactive compounds, such as flavonoids and phenolics was observed. Illumination with UV-C diminished respiration and altered metabolite profile in whole fruit and skin samples. Several amino acids (eg., threonine and aspartate), sugars, (eg., glucose and fructose) and alcohols (e.g., inositol and mannitol) were modulated by long-term UV-C treatment in whole cherry fruit. Various metabolites, including malate, galacturonate, oxoproline and glutamine were also modulated by UV-C skin tissue. These data enhance our understanding of UV-C function in fruit biology.

摘要

研究了紫外线-C(UV-C)照射对甜樱桃果实的影响。收获后,将果实(品种“甜心”)暴露于不同剂量的 UV-C(0、1.2、3.0 或 6.0kJ/m2)下,然后在 0°C 下冷藏 10 天。UV-C 处理延迟了大多数成熟特征,并减少了凹陷症状,特别是在长时间应用 UV-C 后。此外,最高剂量的 UV-C 应用抑制了果胶降解并延迟了果皮对穿透的阻力。抗氧化剂能力和生物活性化合物(如类黄酮和酚类化合物)的激活也得到了观察。UV-C 照射减少了整个果实和果皮样本中的呼吸作用并改变了代谢物谱。几种氨基酸(例如苏氨酸和天冬氨酸)、糖(例如葡萄糖和果糖)和醇(例如肌醇和甘露醇)在整个樱桃果实中经长期 UV-C 处理后被调节。其他代谢物,包括苹果酸、半乳糖醛酸、草酰丙氨酸和谷氨酰胺也被 UV-C 皮肤组织调节。这些数据增强了我们对 UV-C 在果实生物学中功能的理解。

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