Villa Federica, Wu Ying-Li, Zerboni Andrea, Cappitelli Francesca
Department of Food, Environmental, and Nutritional Sciences, University of Milan, Milan, Italy.
PhD student, Earth Sciences, University of Milan, Milan, Italy.
Bioscience. 2022 Oct 22;72(12):1156-1175. doi: 10.1093/biosci/biac091. eCollection 2022 Dec.
Pigment-based color is one of the most important phenotypic traits of biofilms at the mineral-air interface (subaerial biofilms, SABs), because it reflects the physiology of the microbial community. Because color is the hallmark of all SABs, we argue that pigment-based color could convey the mechanisms that drive microbial adaptation and coexistence across different terrestrial environments and link phenotypic traits to community fitness and ecological dynamics. Within this framework, we present the most relevant microbial pigments at the mineral-air interface and discuss some of the evolutionary landscapes that necessitate pigments as adaptive strategies for resource allocation and survivability. We report several pigment features that reflect SAB communities' structure and function, as well as pigment ecology in the context of microbial life-history strategies and coexistence theory. Finally, we conclude the study of pigment-based ecology by presenting its potential application and some of the key challenges in the research.
基于色素的颜色是矿物-空气界面生物膜(气下生物膜,SABs)最重要的表型特征之一,因为它反映了微生物群落的生理状况。由于颜色是所有气下生物膜的标志,我们认为基于色素的颜色可以传达驱动微生物在不同陆地环境中适应和共存的机制,并将表型特征与群落适应性和生态动态联系起来。在此框架内,我们介绍了矿物-空气界面最相关的微生物色素,并讨论了一些需要色素作为资源分配和生存能力适应策略的进化图景。我们报告了几个反映气下生物膜群落结构和功能的色素特征,以及微生物生活史策略和共存理论背景下的色素生态学。最后,我们通过介绍其潜在应用和研究中的一些关键挑战来总结基于色素的生态学研究。