首页> 外文期刊>Journal of the American Chemical Society >XENOGNOSIN METHYLATION IS CRITICAL IN DEFINING THE CHEMICAL POTENTIAL GRADIENT THAT REGULATES THE SPATIAL DISTRIBUTION IN STRIGA PATHOGENESIS
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XENOGNOSIN METHYLATION IS CRITICAL IN DEFINING THE CHEMICAL POTENTIAL GRADIENT THAT REGULATES THE SPATIAL DISTRIBUTION IN STRIGA PATHOGENESIS

机译:葡聚糖酶甲基化在定义调节STRIGA发生中空间分布的化学势梯度方面至关重要

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摘要

Striga asiatica (Scrophulariaceae) is a parasitic plant requiring a host-derived signal, xenognosin, to initiate a cascade of events necessary for the establishment of host contact. By attempting to model the distribution of the xenognosin around the host, the activity of the signal is shown to be strongly dependent on the presence of another component in the host exudate. Surprisingly this component, characterized as 4,6-dimethoxy-2-[(8'Z,11'Z)-8',11',14'-pentadecatriene]resorcinol, is structurally related and shares the same biosynthetic pathway as the xenognosin. This compound is shown to function as an antioxidant and its ability to enhance the activity of the xenognosin is consistent with its ability to extend its lifetime in the exudate. This endogenous antioxidant activity is required to explain the spatial sensing in the establishment of the host-parasite interface and its characterization provides insight into how chemical potential may be regulated within and around plant tissues.
机译:亚洲杂种菊(Scrophulariaceae)是一种寄生植物,需要寄主来源的信号异种素来启动建立寄主接触所需的一系列事件。通过尝试建模异种诊断素在宿主周围的分布,表明信号的活性强烈依赖于宿主分泌物中另一种成分的存在。出乎意料的是,该组分被表征为4,6-二甲氧基-2-[(8'Z,11'Z)-8',11',14'-十五碳三烯]间苯二酚,在结构上相关并且与异生物素具有相同的生物合成途径。该化合物显示为抗氧化剂,其增强异种素的活性的能力与其延长其在渗出液中的寿命的能力是一致的。需要这种内源性抗氧化剂活性来解释宿主-寄生虫界面建立过程中的空间感测,其特征提供了对如何在植物组织内及其周围调节化学势的见解。

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