Department of Biotechnologies and Life Sciences, University of Insubria, Varese, Italy.
Department of Medicine and Surgery, University of Insubria, Varese, Italy.
Biotechnol Appl Biochem. 2022 Jun;69(3):981-1001. doi: 10.1002/bab.2170. Epub 2021 May 2.
Synthetic derivatives are currently used instead of pigments in many applicative fields, from food to feed, from pharmaceutical to diagnostic, from agronomy to industry. Progress in organic chemistry allowed to obtain rather cheap compounds covering the whole color spectrum. However, several concerns arise from this chemical approach, as it is mainly based on nonrenewable resources such as fossil oil, and the toxicity or carcinogenic properties of products and/or precursors may be harmful for personnel involved in the productive processes. In this scenario, microorganisms and their pigments represent a colorful world to discover and reconsider. Each living bacterial strain may be a source of secondary metabolites with peculiar functions. The aim of this review is to link the physiological role of bacterial pigments with their potential use in different biotechnological fields. This enormous potential supports the big challenge for the development of strategies useful to identify, produce, and purify the right pigment for the desired application. At the end of this ideal journey through the world of bacterial pigments, the attention will be focused on melanin compounds, whose production relies upon different techniques ranging from natural producers, heterologous hosts, or isolated enzymes. In a green workflow, the microorganisms represent the starting and final point of pigment production.
合成衍生物目前在许多应用领域被用作颜料的替代品,从食品到饲料,从制药到诊断,从农业到工业。有机化学的进步使得能够获得覆盖整个颜色范围的相当便宜的化合物。然而,这种化学方法引起了一些关注,因为它主要基于不可再生资源,如化石石油,并且产品和/或前体的毒性或致癌特性可能对参与生产过程的人员有害。在这种情况下,微生物及其色素代表了一个有待发现和重新考虑的多彩世界。每个活的细菌菌株都可能是具有特殊功能的次生代谢物的来源。本综述的目的是将细菌色素的生理作用与其在不同生物技术领域的潜在用途联系起来。这种巨大的潜力支持了开发有用策略的巨大挑战,这些策略可用于识别、生产和纯化所需应用的正确色素。在这个理想的细菌色素世界之旅结束时,将重点关注黑色素化合物,其生产依赖于从天然生产者、异源宿主或分离的酶等不同技术。在绿色工作流程中,微生物是色素生产的起点和终点。