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首页> 外文期刊>Molecular biology reports >Proteomic changes in rice leaves grown under open field high temperature stress conditions
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Proteomic changes in rice leaves grown under open field high temperature stress conditions

机译:旷野高温胁迫条件下水稻叶片蛋白质组学变化

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The interactive effect of temperature with other climatic and soil factors has profound influences on the growth and development of rice. The responses of rice to high temperatures under field conditions are more important than those under the controlled conditions. To understand the genes associated with high temperature stress response in general and tolerance in particular, the expression of all those genes associated with adaptation and tolerance in rice requires proteomic analysis. High temperature stress-tolerant cv. N22 was subjected to 28/18 A degrees C (control) and 42/32 A degrees C (high temperature stress) at flowering stage. The plants were grown in the field under the free air temperature increment condition. The proteomic changes in rice leaves due to high temperature stress were discussed. The proteomes of leaves had about 3000 protein spots, reproducibly detected on 2-dimensional electrophoretic gels with 573 proteins differentially expressed between the control and the high temperature treatments. Putative physiological functions suggested five categories such as growth (15.4 %), heat shock proteins (7.7 %), regulatory proteins (26.9 %), redox homeostasis proteins (11.5 %) and energy and metabolism (38.5 %) related proteins. The results of the present study suggest that cv. N22, an agronomically recognized temperature tolerant rice cultivar copes with high temperature stress in a complex manner. Several functional proteins play important roles in its responses. The predicted climate change events necessitate more studies using this cultivar under different simulated ecological conditions to identify proteomic changes and the associated genes to be used as biomarkers and to gain a better understanding on the biochemical pathways involved in tolerance.
机译:温度与其他气候和土壤因素的相互作用对水​​稻的生长发育产生深远的影响。在田间条件下,水稻对高温的响应比在受控条件下的响应更为重要。为了大致了解与高温胁迫反应相关的基因,特别是对耐受性的理解,与水稻适应性和耐受性相关的所有那些基因的表达都需要蛋白质组学分析。耐高温应力的简历。在开花期,N22经受28/18 A摄氏度(对照)和42/32 A摄氏度(高温胁迫)。这些植物在自由空气温度升高的条件下在田间生长。讨论了高温胁迫下水稻叶片的蛋白质组学变化。叶子的蛋白质组约有3000个蛋白质斑点,可在二维电泳凝胶上重现,其中573个蛋白质在对照和高温处理之间差异表达。假定的生理功能提示了五类,例如生长(15.4%),热休克蛋白(7.7%),调节蛋白(26.9%),氧化还原稳态蛋白(11.5%)以及与能量和代谢有关的蛋白(38.5%)。本研究的结果表明简历。农业上公认的耐温水稻品种N22以复杂的方式应对高温胁迫。几种功能蛋白在其反应中起重要作用。预测的气候变化事件需要在不同的模拟生态条件下使用该品种进行更多的研究,以鉴定蛋白质组学变化和相关基因用作生物标记,并更好地理解与耐受性有关的生化途径。

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