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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Excited-State Proton Transfer in Resveratrol and Proposed Mechanism for Plant Resistance to Fungal Infection
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Excited-State Proton Transfer in Resveratrol and Proposed Mechanism for Plant Resistance to Fungal Infection

机译:兴奋态质子在白藜芦醇中的转移及其对真菌感染的抗性机制

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Steady-state and time-resolved fluorescence techniques were employed to study the photophysics and photochemistry of trans-resveratrol. trans-Resveratrol is found in large quantities in fungi-infected grapevine-leaf tissue and plays a direct role in the resistance to plant disease. We found that trans-resveratrol in liquid solution undergoes a trans-cis isomerization process in the excited state at a rate that depends partially on the solvent viscosity, as was found in previous studies on trans-stilbene. The hydroxyl groups of the phenol moieties in resveratrol are weak photoacids. In water and methanol solutions containing weak bases such as acetate, a proton is transferred to the base within the lifetime of the excited state. When resveratrol is adsorbed on cellulose (also a component of the plant's cell wall), the cis-trans process is slow and the lifetime of the excited state increases from several tens of picoseconds in ethanol to about 1.5 ns. Excited-state proton transfer occurs when resveratrol is adsorbed on cellulose and acetate ions are in close proximity to the phenol moieties. We propose that proton transfer from excited resveratrol to the fungus acid-sensing chemoreceptor is one of the plant's resistance mechanisms to fungal infection.
机译:稳态和时间分辨荧光技术被用来研究反式白藜芦醇的光物理和光化学。反式白藜芦醇在真菌感染的葡萄叶组织中大量发现,并且在抵抗植物病害中起直接作用。我们发现在液体溶液中的反式白藜芦醇在激发态下以部分取决于溶剂粘度的速率经历反式-顺式异构化过程,正如先前对反式-二苯乙烯的研究发现的那样。白藜芦醇中酚部分的羟基是弱光酸。在含有弱碱(例如乙酸盐)的水和甲醇溶液中,质子在激发态的寿命内转移到碱中。当白藜芦醇吸附在纤维素(也是植物细胞壁的组成部分)上时,顺反过程很慢,激发态的寿命从乙醇中的几十皮秒增加到约1.5 ns。当白藜芦醇吸附在纤维素上且乙酸根离子与酚部分非常接近时,就会发生激发态的质子转移。我们建议质子从兴奋的白藜芦醇转移到真菌的酸敏感化学感受器是植物对真菌感染的抗性机制之一。

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