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叶片培养温度曲线对根癌农杆菌介导的瞬时表达的影响。

Effect of leaf incubation temperature profiles on Agrobacterium tumefaciens-mediated transient expression.

作者信息

Jung Sang-Kyu, McDonald Karen A, Dandekar Abhaya M

机构信息

Dept. of Chemical Engineering and Materials Science, University of California, Davis, CA, 95616.

Dept. of Plant Sciences, University of California, Davis, CA, 95616.

出版信息

Biotechnol Prog. 2015 May-Jun;31(3):783-90. doi: 10.1002/btpr.2077. Epub 2015 Apr 18.

Abstract

Agrobacterium tumefaciens-mediated transient expression is known to be highly dependent on incubation temperature. Compared with early studies that were conducted at constant temperature, we examined the effect of variable leaf incubation temperature on transient expression. As a model system, synthetic endoglucanase (E1) and endoxylanase (Xyn10A) genes were transiently expressed in detached whole sunflower leaves via vacuum infiltration for biofuel applications. We found that the kinetics of transient expression strongly depended on timing of the temperature change as well as leaf incubation temperature. Surprisingly, we found that high incubation temperature (27-30 °C) which is suboptimal for T-DNA transfer, significantly enhanced transient expression if the high temperature was applied during the late phase (Day 3-6) of leaf incubation whereas incubation temperature in a range of 20-25 °C for an early phase (Day 0-2) resulted in higher production. On the basis of these results, we propose that transient expression is governed by both T-DNA transfer and protein synthesis in plant cells that have different temperature dependent kinetics. Because the phases were separated in time and had different optimal temperatures, we were then able to develop a novel two phase optimization strategy for leaf incubation temperature. Applying the time-varying temperature profile, we were able to increase the protein accumulation by fivefold compared with the control at a constant temperature of 20 °C. From our knowledge, this is the first report illustrating the effect of variable temperature profiling for improved transient expression.

摘要

已知根癌农杆菌介导的瞬时表达高度依赖于培养温度。与早期在恒温条件下进行的研究相比,我们研究了叶片培养温度变化对瞬时表达的影响。作为一个模型系统,通过真空渗透法在离体的完整向日葵叶片中瞬时表达合成内切葡聚糖酶(E1)和内切木聚糖酶(Xyn10A)基因,用于生物燃料应用。我们发现瞬时表达的动力学强烈依赖于温度变化的时间以及叶片培养温度。令人惊讶的是,我们发现对于T-DNA转移而言并非最适宜的高培养温度(27-30°C),如果在叶片培养的后期阶段(第3-6天)施加高温,则会显著增强瞬时表达,而在早期阶段(第0-2天)20-25°C的培养温度会导致更高的产量。基于这些结果,我们提出瞬时表达受植物细胞中具有不同温度依赖性动力学的T-DNA转移和蛋白质合成的共同调控。由于这两个阶段在时间上是分开的且具有不同的最佳温度,我们随后能够为叶片培养温度开发一种新颖的两阶段优化策略。应用随时间变化的温度曲线,与在20°C恒温条件下的对照相比,我们能够将蛋白质积累量提高五倍。据我们所知,这是第一份说明温度变化曲线对改善瞬时表达影响的报告。

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