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生态相互作用中的酚类化合物:氧化的重要性。

Phenolics in ecological interactions: The importance of oxidation.

机构信息

Pesticide Research Lab, The Pennsylvania State University, 16802, University Park, Pennsylvania.

出版信息

J Chem Ecol. 1993 Jul;19(7):1521-52. doi: 10.1007/BF00984895.

Abstract

The ecological activities of plant phenolics are diverse and highly variable. Although some variation is attributable to differences in concentration, structure, and evolutionary history of association with target organisms, much of it is unexplained, making it difficult to predict when and where phenolics will be active. I suggest that our understanding is limited by a failure to appreciate the importance of oxidative activation and the conditions that influence it. I summarize examples of oxidative activation of phenolics in ecological interactions, and argue that physicochemical conditions of the environment that control phenolic oxidation generate variation in ecological activity. Finally, I suggest that measurements of oxidative conditions can improve our predictions of phenolic activity and that experiments must be designed with conditions appropriate to the biochemical mode of phenolic action.

摘要

植物酚类的生态活动多种多样,变化很大。虽然有些差异归因于与目标生物结合的浓度、结构和进化历史的差异,但其中很大一部分仍无法解释,这使得很难预测酚类何时何地会活跃。我认为,我们的认识受到未能认识到氧化激活的重要性和影响它的条件的限制。我总结了酚类在生态相互作用中氧化激活的例子,并认为控制酚类氧化的环境物理化学条件产生了生态活性的变化。最后,我建议可以通过测量氧化条件来提高对酚类活性的预测能力,并且必须根据酚类作用的生化模式设计合适的实验条件。

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