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低温驯化和夏季水分亏缺对橄榄树抗冻性的滞后效应。

Low-temperature acclimation and legacy effects of summer water deficits in olive freezing resistance.

机构信息

Instituto de Biociencias de la Patagonia (INBIOP), Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET) - Universidad Nacional de la Patagonia San Juan Bosco (UNPSJB), Comodoro Rivadavia, Argentina.

Grupo de Estudios Biofísicos y Eco-fisiológicos (GEBEF), Facultad de Ciencias Naturales y Ciencias de la Salud, UNPSJB, Comodoro Rivadavia, Argentina.

出版信息

Tree Physiol. 2021 Oct 4;41(10):1836-1847. doi: 10.1093/treephys/tpab040.

Abstract

Low temperatures and drought are the main environmental factors affecting plant growth and productivity across most of the terrestrial biomes. The objective of this study was to analyze the effects of water deficits before the onset of low temperatures in winter to enhance freezing resistance in olive trees. The study was carried out near the coast of Chubut, Argentina. Plants of five olive cultivars were grown outdoor in pots and exposed to different water deficit treatments. We assessed leaf water relations, ice nucleation temperature (INT), cell damage (LT50), plant growth and leaf nitrogen content during summer and winter in all cultivars and across water deficit treatments. Leaf INT and LT50 decreased significantly from summer to winter within each cultivar and between treatments. We observed a trade-off between resources allocation to freezing resistance and vegetative growth, such that an improvement in resistance to sub-zero temperatures was associated with lower growth in tree height. Water deficit applied during summer increased the amount of osmotically active solutes and decreased the leaf water potentials. This type of legacy effect persists during the winter after the water deficit even when treatment was removed by natural rainfalls.

摘要

低温和干旱是影响大多数陆地生物群落中植物生长和生产力的主要环境因素。本研究的目的是分析冬季低温前水分亏缺对增强橄榄树抗冻性的影响。该研究在阿根廷丘布特省沿海进行。将 5 个橄榄品种的植物在户外盆栽中种植,并进行不同的水分亏缺处理。我们在整个夏季和冬季评估了所有品种和水分亏缺处理的叶片水分关系、冰核形成温度 (INT)、细胞损伤 (LT50)、植物生长和叶片氮含量。在每个品种和处理之间,叶片 INT 和 LT50 从夏季到冬季显著下降。我们观察到,在抗冻性和营养生长之间存在资源分配的权衡,即对零下温度的抗性提高与树木高度的生长降低有关。夏季施加的水分亏缺会增加渗透活性溶质的数量,并降低叶片水势。即使在自然降雨消除了处理后,这种滞后效应仍会在冬季持续存在。

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