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首页> 外文期刊>Acta Physiologiae Plantarum >Bottom-cold stress was less harmful than cold-air stress on tomato seedling production treated with boric acid
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Bottom-cold stress was less harmful than cold-air stress on tomato seedling production treated with boric acid

机译:在用硼酸处理的番茄幼苗生产上的冷空气应力,底部冷应激较小

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Boron is beneficial element can help plants face chilling stress. This research was arranged using factorial experiment based on randomized complete block design on Lycopersicon esculentum var. Infinity in Isfahan University of Technology due to having a new idea about bottom-cold and cold-air stress tomato seedling with boron application. There were two treatments having different boron (B1) concentrations (B1) 50.5 mM, and (B2) 75.82 mM. Three temperature treatment used as following: (1) the cold treatment used with vegetation chambers with low temperature (10 degrees C) (cold air), (2) the low nutrient solution (10 degrees C) temperature but the aerial part exposed to optimum temperature (bottom-cold) and (3) the last part, was the control plant (opt) keep in optimum root and shoot temperature (22 degrees C). Some physiological and biochemical characteristics were measured. The results were shown that boron uptake decreased in cold or stress as well as the water status of the plant which is suffering from cold-air stress greater than bottom-cold. Boron application, especially in higher concentration, improved some deleterious effect of cold stress, especially in the bottom-cold. The reason may refer to keeping photosynthesis traits in better level with B application. Cold-air stress, increased stress indices such as antioxidant and proline as well as glucose level and saturated/unsaturated fatty acid greater than bottom-cold stress. It was concluded that tomato was more resistant to bottom-cold stress than cold-air stress. Boron application increased the boron of leaves more effectively in the bottom-cold consequently increase plant tolerance to a chilling condition at the bottom-cold too.
机译:硼是有益的元素可以帮助植物面部寒冷的压力。基于Lycopersicon Esculentum VAR的随机完整块设计,使用因子实验来安排该研究。 ISFAHAN技术大学无限远,由于硼应用了对底冷和冷空气压力番茄幼苗的新想法。有两种具有不同硼(B1)浓度(B1)50.5mM的处理,(B2)75.82mm。三种温度处理如下:(1)冷处理与低温(10℃)(冷空气)(冷空气),(2)低营养溶液(10℃)温度,但空中部分暴露于最佳状态温度(底部冷)和(3)最后一部分,是控制植物(选择)保持在最佳的根和芽温度(22℃)。测量了一些生理和生化特征。结果表明,硼摄取在寒冷或胁迫下降低以及植物的水位,患有大于底冷的冷空气应力。硼应用,尤其是浓度较高,改善了一些有害的冷应力影响,特别是在底冷。原因可能是指与B应用更好地保持光合特性。冷空气应力,增加应力指数,如抗氧化剂和脯氨酸以及葡萄糖水平和饱和/不饱和脂肪酸大于底部冷应激。得出结论,番茄比冷空气应力更耐受下冷应激。硼应用更有效地在底冷地增加了叶片的硼,因此将植物耐受性增加到底部冷的冷却状态。

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