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解析光波长对 物种中DHN-黑色素生成的影响及其与 中活性氧代谢的相互作用。 (注:原文中“ spp.”和“.”部分信息缺失,以上是根据现有内容尽量完整的翻译)

Deciphering the Effect of Light Wavelengths in spp. DHN-Melanin Production and Their Interplay with ROS Metabolism in .

作者信息

Verde-Yáñez Lucía, Usall Josep, Teixidó Neus, Vall-Llaura Núria, Torres Rosario

机构信息

IRTA, Postharvest Programme, Edifici Fruitcentre, Parc Agrobiotech Lleida, Parc de Gardeny, 25003 Lleida, Spain.

出版信息

J Fungi (Basel). 2023 Jun 10;9(6):653. doi: 10.3390/jof9060653.

Abstract

Pathogenic fungi are influenced by many biotic and abiotic factors. Among them, light is a source of information for fungi and also a stress factor that triggers multiple biological responses, including the activation of secondary metabolites, such as the production of melanin pigments. In this study, we analyzed the melanin-like production in in vitro conditions, as well as the expression of all biosynthetic and regulatory genes of the DHN-melanin pathway in the three main species upon exposure to light conditions (white, black, blue, red, and far-red wavelengths). On the other hand, we analyzed, for the first time, the metabolism related to ROS in , through the production of hydrogen peroxide (HO) and the expression of stress-related genes under different light conditions. In general, the results indicated a clear importance of black light on melanin production and expression in and , but not in . Regarding ROS-related metabolism in , blue light highlighted by inhibiting the expression of many antioxidant genes. Overall, it represents a global description of the effect of light on the regulation of two important secondary mechanisms, essential for the adaptation of the fungus to the environment and its survival.

摘要

致病真菌受到许多生物和非生物因素的影响。其中,光对真菌来说既是一种信息来源,也是一种应激因素,可引发多种生物学反应,包括激活次级代谢产物,如黑色素的产生。在本研究中,我们分析了体外条件下黑色素样产物的生成,以及三种主要真菌在暴露于不同光照条件(白色、黑色、蓝色、红色和远红光波长)时,二羟基萘(DHN)-黑色素途径所有生物合成和调控基因的表达。另一方面,我们首次通过过氧化氢(H₂O₂)的产生以及不同光照条件下应激相关基因的表达,分析了这三种真菌中与活性氧(ROS)相关的代谢。总体而言,结果表明黑光对烟曲霉和构巢曲霉中黑色素的产生和表达具有显著影响,但对黑曲霉则不然。关于黑曲霉中与ROS相关的代谢,蓝光通过抑制许多抗氧化基因的表达而显得突出。总体而言,这代表了对光对两种重要次级机制调控作用的全面描述,这两种机制对于真菌适应环境及其生存至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1de3/10304210/34c0697e4f23/jof-09-00653-g001.jpg

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