Gonçalves Berta, Silva Vânia, Bacelar Eunice, Guedes Francisco, Ribeiro Carlos, Silva Ana Paula, Pereira Sandra
Centre for the Research and Technology of Agro-Environmental and Biological Sciences (CITAB), Institute for Innovation, Capacity Building and Sustainability of Agri-Food Production, (Inov4Agro), University of Trás-os-Montes e Alto Douro (UTAD), Quinta de Prados, 5000-801 Vila Real, Portugal.
Cermouros-Cerejas de São Martinho de Mouros, Lda., Quinta da Ribeira, Bulhos, 4660-210 Resende, Portugal.
Foods. 2023 Jan 26;12(3):543. doi: 10.3390/foods12030543.
Orchard net cover improves plant physiology, yield and fruit quality, pest and disease control, and anticipates fruit ripening. Moreover, this crop technology has been used to reduce natural cherry cracking (NCC). This is a serious physiological disorder that cracks the epidermis, the hypodermis, and the storage parenchyma layers of the fruit due to rainfall events near the harvest and it is related to low fruit osmotic potential and/or high fruit water permeability. This work aims to study the effect of orchard net cover on sweet cherry trees, cv. Early Bigi, in two harvesting years (2019 and 2021). The NCC, the induced cracking index (CI), and the cracking type incidence were determined. In addition, epicuticular and intra-cuticular wax content, biometric and physicochemical parameters were also evaluated. Net cover reduced the natural cracking index by 40%. High fruit weight values were observed in covered trees comparing to the control ones, with increases of 45% and 13%, in 2019 and 2021, respectively. A positive correlation was observed between CI and total soluble solids and a negative correlation between CI and wax content. Therefore, with forecasts of worsening heavy precipitation events near harvest, protecting cherry trees with nets will increase resistance to fruit cracking.
果园防虫网覆盖可改善植株生理状况、提高产量和果实品质、控制病虫害,并能提前果实成熟。此外,这项作物技术已被用于减少天然樱桃裂果(NCC)。这是一种严重的生理病害,在收获期附近因降雨导致果实的表皮、皮下组织和贮藏薄壁组织层出现开裂,它与果实低渗透势和/或高透水性有关。本研究旨在探讨果园防虫网覆盖对甜樱桃品种Early Bigi在两个收获年份(2019年和2021年)的影响。测定了天然樱桃裂果情况、诱导裂果指数(CI)和裂果类型发生率。此外,还评估了表皮蜡质和角质层内蜡质含量、生物特征和理化参数。防虫网覆盖使天然裂果指数降低了40%。与对照树相比,覆盖树的果实重量较高,2019年和2021年分别增加了45%和13%。观察到裂果指数与总可溶性固形物呈正相关,与蜡质含量呈负相关。因此,鉴于预测收获期附近暴雨事件会加剧,用防虫网保护樱桃树将增强果实抗裂性。