首页> 外文期刊>Annals of Botany >The effects of cold acclimation on photosynthetic apparatus and the expression of COR14b in four genotypes of barley (Hordeum vulgare) contrasting in their tolerance to freezing and high-light treatment in cold conditions
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The effects of cold acclimation on photosynthetic apparatus and the expression of COR14b in four genotypes of barley (Hordeum vulgare) contrasting in their tolerance to freezing and high-light treatment in cold conditions

机译:低温驯化对四种基因型大麦(Hordeum vulgare)光合作用的影响以及COR14b的表达与寒冷条件下的耐冷性和强光处理形成对比

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Background and Aims Cold acclimation modifies the balance of the energy absorbed and metabolized in the dark processes of photosynthesis, which may affect the expression of cold-regulated (COR) genes. At the same time, a gradual acclimation to the relatively high light conditions is observed, thereby minimizing the potential for photo-oxidative damage. As a result, the resistance to photoinhibition in the cold has often been identified as a trait closely related to freezing tolerance. Using four barley genotypes that differentially express both traits, the effect of cold acclimation on freezing tolerance and high-light tolerance was studied together with the expression of COR14b, one of the best-characterized barley COR genes. Methods Plants were cold acclimated for 2 weeks at 2 degrees C. Freezing tolerance was studied by means of electrolyte leakage. Changes in photosynthetic apparatus and high-light tolerance were monitored by means of chlorophyll fluorescence. Accumulation of COR14b and some proteins important in photosynthetic acclimation to cold were studied with western analysis. COR14b transcript accumulation during cold acclimation was assessed with real-time PCR. Key Results Cold acclimation increased both freezing tolerance and high-light tolerance, especially when plants were treated with high light after non-lethal freezing. In all plants, cold acclimation triggered the increase in photosynthetic capacity during high-light treatment. In two plants that were characterized by higher high-light tolerance but lower freezing tolerance, higher accumulation of COR14b transcript and protein was observed after 7 d and 14 d of cold acclimation, while a higher transient induction of COR14b expression was observed in freezing-tolerant plants during the first day of cold acclimation. High-light tolerant plants were also characterized with a higher level of PsbS accumulation and more efficient dissipation of excess light energy. Conclusions Accumulation of COR14b in barley seems to be important for resistance to combined freezing and high-light tolerance, but not for freezing tolerance per se.
机译:背景和目的冷适应改变了光合作用黑暗过程中吸收和代谢的能量平衡,这可能会影响冷调节(COR)基因的表达。同时,观察到逐渐适应了较高的光照条件,从而将光氧化损伤的可能性降至最低。结果,对寒冷中的光抑制的抗性通常被认为是与耐寒性密切相关的性状。利用四种差异表达两种性状的大麦基因型,研究了冷驯化对耐寒性和高耐光性的影响,以及最典型的大麦COR基因之一COR14b的表达。方法将植物在2℃下冷驯化2周。通过电解质渗漏研究冷冻耐受性。通过叶绿素荧光监测光合作用和高耐光性的变化。利用western分析研究了COR14b和一些蛋白质在光合作用适应过程中的积累。通过实时PCR评估冷驯化过程中COR14b转录物的积累。关键结果冷驯化提高了冷冻耐受性和高耐光性,特别是在非致​​命冷冻后对植物进行高光处理时。在所有植物中,冷驯化引起高光处理期间光合作用能力的提高。在以高耐光性但较低的耐寒性为特征的两株植物中,冷驯化7 d和14 d后观察到较高的COR14b转录本和蛋白质积累,而在耐冻性中观察到更高的瞬时诱导COR14b表达植物在冷适应的第一天。高耐光性植物的特征还在于更高水平的PsbS积累和更有效地耗散多余的光能。结论大麦中COR14b的积累似乎对联合抗冻性和高耐光性很重要,但对抗冻性本身并不重要。

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