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Physiological Responses of Annual Bluegrass and Creeping Bentgrass to Contrasted Levels of O and CO at Low Temperatures

机译:低温下一年生禾草和蠕形B草对相反水平的O和CO的生理响应

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Ice encasement and impermeable winter protective covers can induce anaerobic conditions on golf greens. We assessed plant survival and biochemical changes of annual bluegrass (Poa annua L.) and creeping bentgrass [Agrostis stoloniferous L. var. palustris (Huds.)] exposed to combinations of O2 and CO2 concentrations at low temperatures (1?°C or a?’2?°C). Results indicate that lack of O2 (anoxia) rather than high CO2 is the source of plant damage. However, combination of low O2 and high CO2 induced more severe damage than low O2 alone. Annual bluegrass was found to be more sensitive to anoxia than creeping bentgrass, and subfreezing temperature delayed anoxia-induced damage. Sucrose was depleted more rapidly under low O2 than under normal conditions. Fructan reserves were similarly mobilized in all treatments except for a more pronounced decline in annual bluegrass maintained under high CO2 at 1?°C. A marked accumulation of asparagine at 1?°C under normal atmospheric conditions did not occur under anoxia. Reversely, concentrations of alanine and tyrosine increased under low O2 Proline accumulation in plants incubated at a?’2?°C was higher under low than under high CO2 treatments. We observed a relationship between the presence of volatile fatty acids and plant damage under low O2 Our study illustrates the complex interaction between O2 and CO2 that have both synergistic and independent effect on plant damage under anoxia at low temperatures.
机译:冰袋和不透水的冬季保护套会在高尔夫球果岭上引起厌氧条件。我们评估了一年生早熟禾(Poa annua L.)和creep草(Agrostis stoloniferous L. var。)的植物存活率和生化变化。 palustris(Huds。)]在低温(1?C或a?’2?°C)下暴露于O2和CO2浓度的组合。结果表明,缺乏氧气(缺氧)而不是高二氧化碳是造成植物损害的根源。但是,低氧和高二氧化碳的组合比单独的低氧引起的破坏更严重。发现一年生禾本科草比蠕动的草丛对缺氧更敏感,并且亚冰点温度延迟了缺氧引起的损害。低氧比正常条件下蔗糖消耗更快。除在1?C的高CO2下维持的一年生紫草的下降更为明显外,所有处理均以类似方式动用了果胶储备。在缺氧条件下,在正常大气条件下,在1℃时天冬酰胺的明显积累没有发生。相反,在低氧条件下,丙氨酸和酪氨酸的浓度增加,而在低a2’2°C下培养的植物中脯氨酸的积累比高二氧化碳处理下的脯氨酸高。我们观察到在低氧下挥发性脂肪酸的存在与植物损害之间的关系。我们的研究表明,氧和二氧化碳之间的复杂相互作用既对低温缺氧条件下的植物损害具有协同作用又具有独立影响。

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