[Production and biological activity of the triazine derivatives: focusing on antibiotics produced by bacteria].

Hajime Nakatani, Michio Homma
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引用次数: 0

Abstract

Heterocyclic triazines and their derivatives have excellent biological activity and have been used as herbicides and anticancer drugs. A large number of derivatives were synthesized and their biological activity was investigated. Some bacteria synthesize the triazine derivatives such as Nostocine A, Toxoflavin, and Fluviol from GTP using enzymes similar to those in the synthesis pathway of Riboflavin (vitamin B2). These triazine derivatives show antibiotic activity. In particular, research on Toxoflavin has progressed as a toxin produced by bacteria that cause seedling rot and rice grain blight in rice. It has recently been revealed that Fluviol, which is produced by bacteria, acts to suppress the growth of pathogenic bacteria. This review will focus on triazine derivatives produced by bacteria.

[三嗪类衍生物的生产和生物活性:以细菌生产的抗生素为重点]。
杂环三嗪及其衍生物具有优良的生物活性,已被用作除草剂和抗癌药物。合成了大量的衍生物,并对其生物活性进行了研究。一些细菌利用类似于核黄素(维生素B2)合成途径的酶,从GTP合成三嗪衍生物如Nostocine A、Toxoflavin和Fluviol。这些三嗪衍生物具有抗生素活性。特别是,对弓形黄素的研究取得了进展,弓形黄素是一种由细菌产生的毒素,可引起水稻幼苗腐烂和稻谷枯萎病。最近发现,由细菌产生的氟维醇具有抑制致病菌生长的作用。本文将对细菌产生的三嗪类衍生物进行综述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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