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Carbohydrate and Lipid Dynamics in Wheat Crown Tissue in Response to Mild Freeze-Thaw Treatments

机译:小麦冠组织中糖和脂质动力学对轻度冻融处理的响应

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Freezing tolerance resulting from cold hardening is critical to survival of fall-seeded winter wheat. Exposure of winter wheat plants to cycles of freeze-thaw at temperatures just below, and just above freezing results in incremental improvements of freezing tolerance. Changes in the concentrations of carbohydrates in the cellular fluids of wheat crowns, and of lipids extracted from wheat crown tissue, were quantified following exposure to 24 h freeze(s) at -3 degrees C, with or without a following thaw of 24 h at 3 degrees C. Concentrations of simple sugars, and sucrose and related carbohydrates, increased in the first 24 h of exposure to -3 degrees C, and continued to increase whether the plants were then exposed to a further 24 h at -3 degrees C or were exposed to 3 degrees C for 24 h. The concentration of fructans decreased during the first 24 h of exposure to -3 degrees C, and continued to decrease if the plants were exposed to 3 degrees C for 24 h, but increased if the plants were exposed to a continuous -3 degrees C for 48 h. The frequencies of occurrences of numerous lipid species changed with each 24 h temperature treatment, some consistent with the behavior of lipid signaling molecules. Carbohydrates and lipids in wheat crowns are actively restructured at subzero temperatures as the plants acquire greater freezing tolerance. Identifying plant lines especially able to effect this restructuring may enable the development of plant lines with improved freezing tolerance
机译:冷硬化导致的耐冻性对于播种秋冬小麦的生存至关重要。在略低于和略高于冰点的温度下,将冬小麦植物置于冻融循环下,会逐渐提高其耐冻性。暴露于-3摄氏度的24小时冷冻后,无论是否经过24小时的解冻,都对小麦冠细胞液中碳水化合物的浓度以及从小麦冠组织中提取的脂质的浓度变化进行了定量。 3摄氏度。暴露于-3摄氏度的前24小时内,单糖,蔗糖及相关碳水化合物的浓度增加,然后无论是否将植物暴露于-3摄氏度或24摄氏度的条件下再暴露24小时,其浓度均持续升高。暴露于3摄氏度24小时。在暴露于-3°C的最初24小时内,果聚糖的浓度降低,如果将植物暴露于3°C的环境24小时,则果聚糖的浓度持续降低,但是如果将植物暴露于-3的持续暴露的3h 48小时每次24小时的温度处理,大量脂质种类的出现频率都会发生变化,其中某些频率与脂质信号分子的行为一致。小麦冠中的碳水化合物和脂质在零度以下的温度下会积极地进行重组,因为植物获得了更高的抗冻性。确定特别能够实现这种重组的植物品系可以使植物品系具有更好的耐寒性

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