首页> 外文期刊>American journal of enology & viticulture >Cold Hardiness of Cold Climate Interspecific Hybrid Grapevines Grown in a Cold Climate Region
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Cold Hardiness of Cold Climate Interspecific Hybrid Grapevines Grown in a Cold Climate Region

机译:冷酷气候杂交葡萄园在寒冷的气候区生长的冷酷酷性

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Cold climate interspecific hybrid grapevines (CCIHG) selected for their superior midwinter cold hardiness have expanded grape production to cold climate regions. However, extreme weather events, such as polar vortexes and the high frequency of fall and spring freezes, often result in yield and vine losses. The main objective of this study was to evaluate changes in bud cold hardiness of five CCIHG cultivars grown in the upper Midwest to identify relative risk for freeze damage throughout the dormant period and to adapt a bud cold hardiness prediction model to CCIHG cultivars grown in cold climate regions. Bud cold hardiness was evaluated biweekly throughout the dormant period by measuring lethal temperatures for buds using differential thermal analysis (DTA). CCIHG cultivars in our study had an early acclimation response with increased levels of cold hardiness before the occurrence of freezing temperatures. Maximum levels of hardiness (-28 to -30°C) were observed both years in February; however, deeper levels of freezing stress resistance, probably attained by freeze dehydration, were not detected using DTA. CCIHG cultivars had a rapid deacclimation response that was accelerated with additional chilling accumulation during spring. The reparametrizing of a discrete-dynamic cold hardiness prediction model by expanding the range of ecodormant threshold temperatures for CCIHG resulted in predictions with an average root mean square error (RMSE) = 1.01. Although CCIHG cultivars have superior midwinter bud cold hardiness, fast deacclimation responses increase the risk of freeze damage during spring, thus this trait should be evaluated for future CCIHG cultivar release. The development of tools such as the discrete-dynamic cold hardiness prediction model for CCIHG cultivars will aid growers in decision-making to minimize damage and yield and vine losses.
机译:寒冷的气候间杂交葡萄园(CCIHG)为其优越的中间冬季寒冷的耐寒性扩大了葡萄生产葡萄气候区域。然而,极端天气事件,例如极地漩涡和秋季冻结的高频,通常会导致产量和葡萄损失。本研究的主要目的是评估在中西部生长的五种CCIHG品种的芽冷硬度变化,以确定在整个休眠期间冻结损伤的相对风险,并适应冷气中生长的CCIHG品种芽冷酷的耐寒预测模型地区。通过使用差分热分析(DTA)测量芽的致命温度,在整个休眠期间评估芽冷硬度。在我们的研究中,CCIHG品种具有早期适应性的响应,在冻结温度发生前增加了寒冷的耐寒性水平。两年二年级观察到最大的耐寒水平(-28至-30°C);然而,使用DTA未检测到冻结脱水可能获得的冰冷胁迫阻力水平更深。 CCIHG品种具有快速的脱节响应,在春季期间加速了额外的冷却积累。通过扩大CCIHG的逃生阈值温度范围来通过扩大CCIHG的逃生阈值温度的重新制定,导致平均根均方误差(RMSE)= 1.01的预测。虽然CCIHG品种具有优越的中间冬季芽冷耐性,但快速的脱苗响应增加了春季冻结损伤的风险,因此应该对未来的CCIHG品种释放进行评估该特征。 CCIHG品种的离散动态冷硬度预测模型等工具的开发将有助于种植者决策,以最大限度地减少损害和产量和葡萄损失。

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