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Effect of Freezing on Photosystem II and Assessment of Freezing Tolerance of Tea Cultivar

机译:冷冻对光系统II的影响及茶树品种的耐冻性评估

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摘要

Freezing tolerant tea cultivars are urgently needed. The tea cultivars with highly freezing tolerance showed resistance to freezing stress induced photoinhibition. Freezing sensitivity index (H) of 47 tea clonal cultivars was investigated after severe freezing winter in 2016. To develop instrumental methods for freezing tolerance selection, the maximum photochemical efficiency of photosystem II (PSII) (Fv/Fm) and leaf color indicator on the Hunter color scale were determined on control group (non-frozen) and frozen group (being frozen at −15 °C for 2 h and then stood at 20 °C for 5 h) of the cultivars. When the two indicators were expressed as the ratios (R and R ) of frozen group to control group, linear regression of the freezing sensitivity index (H) upon the R and R produced significant relationship respectively, i.e., H = 60.31 − 50.09 R ( < 0.01) and H = 30.03 − 10.82 R ( < 0.01). Expression of gene encoding D1 protein and gene encoding D2 protein in PSII showed that the frezzing tolerant tea cultivars maintained a high expression level of after freezing stress, which is considered to be beneficial to synthesis of D1 protein and sustaining PSII activity. These findings can provide instrumental tools for assessing freezing tolerance of tea cultivars in tea breeding program.
机译:急需耐寒的茶品种。具有高度耐冻性的茶品种表现出对冷冻胁迫诱导的光抑制的抗性。在2016年严冬严冬后,对47个茶树无性系的冷冻敏感性指数(H)进行了研究。在对照组(非冷冻)和冷冻组(在-15℃下冷冻2小时,然后在20℃下放置5小时)的品种上确定亨特色标。当将两个指标表示为冷冻组与对照组的比率(R和R)时,冷冻敏感性指数(H)在R和R上的线性回归分别产生显着关系,即H = 60.31-50.09 R( <0.01)和H = 30.03-10.82 R(<0.01)。编码D1蛋白的基因和编码D2蛋白的基因在PSII中的表达表明,耐寒性的茶品种在冰冻胁迫后保持了较高的表达水平,这被认为有利于D1蛋白的合成和维持PSII活性。这些发现可以为评估茶育种程序中茶品种的耐冻性提供工具。

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