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Distinctive physiological and molecular responses to cold stress among cold-tolerant and cold-sensitive Pinus halepensis seed sources

机译:对耐冷耐寒性和冷敏性松枝液晶来源的独特生理和分子应答

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Forest species ranges are confined by environmental limitations such as cold stress. The natural range shifts of pine forests due to climate change and proactive-assisted population migration may each be constrained by the ability of pine species to tolerate low temperatures, especially in northern latitudes or in high altitudes. The aim of this study is to characterize the response of cold-tolerant versus cold-sensitive Pinus halepensis (P. halepensis) seedlings at the physiological and the molecular level under controlled cold conditions to identify distinctive features which allow us to explain the phenotypic difference. With this objective gas-exchange and water potential was determined and the photosynthetic pigments, soluble sugars, glutathione and free amino acids content were measured in seedlings of different provenances under control and cold stress conditions. Glucose and fructose content can be highlighted as a potential distinctive trait for cold-tolerant P. halepensis seedlings. At the amino acid level, there was a significant increase and accumulation of glutathione, proline, glutamic acid, histidine, arginine and tryptophan along with a significant decrease of glycine. Our results established that the main difference between cold-tolerant and cold-sensitive seedlings of P. halepensis is the ability to accumulate the antioxidant glutathione and osmolytes such as glucose and fructose, proline and arginine.
机译:森林物种范围由冷凝压等环境限制限制。由于气候变化和积极辅助人口迁移引起的松树林的自然范围变化可能各自受到松树物种耐受低温的能力,特别是在北纬或高海拔地区。本研究的目的是在受控冷条件下的生理和分子水平下表征耐冷耐寒性对冷敏感性穗卤育(P. halepensis)幼苗的响应,以确定允许我们解释表型差异的独特特征。利用这种客观的气体交换和水势确定,在控制和冷应激条件下,在不同种植的幼苗中测量光合色素,可溶性糖,谷胱甘肽和游离氨基酸含量。可以突出葡萄糖和果糖含量作为冷耐寒性P. Halepensis幼苗的潜在特征性。在氨基酸水平上,谷胱甘肽,脯氨酸,谷氨酸,组氨酸,精氨酸和色氨酸的显着增加和积累以及甘氨酸的显着降低。我们的研究结果确定了P. Halepensis的耐冷耐寒和冷敏感幼苗的主要区别是积累抗氧化谷胱甘肽和渗透性,葡萄糖和果糖,脯氨酸和精氨酸的能力。

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