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假单胞菌中的铁获取策略:机制、生态和进化。

Iron acquisition strategies in pseudomonads: mechanisms, ecology, and evolution.

机构信息

Department of Quantitative Biomedicine, University of Zürich, Winterthurerstrasse 190, 8057, Zurich, Switzerland.

出版信息

Biometals. 2023 Aug;36(4):777-797. doi: 10.1007/s10534-022-00480-8. Epub 2022 Dec 12.

Abstract

Iron is important for bacterial growth and survival, as it is a common co-factor in essential enzymes. Although iron is very abundant in the earth crust, its bioavailability is low in most habitats because ferric iron is largely insoluble under aerobic conditions and at neutral pH. Consequently, bacteria have evolved a plethora of mechanisms to solubilize and acquire iron from environmental and host stocks. In this review, I focus on Pseudomonas spp. and first present the main iron uptake mechanisms of this taxa, which involve the direct uptake of ferrous iron via importers, the production of iron-chelating siderophores, the exploitation of siderophores produced by other microbial species, and the use of iron-chelating compounds produced by plants and animals. In the second part of this review, I elaborate on how these mechanisms affect interactions between bacteria in microbial communities, and between bacteria and their hosts. This is important because Pseudomonas spp. live in diverse communities and certain iron-uptake strategies might have evolved not only to acquire this essential nutrient, but also to gain relative advantages over competitors in the race for iron. Thus, an integrative understanding of the mechanisms of iron acquisition and the eco-evolutionary dynamics they drive at the community level might prove most useful to understand why Pseudomonas spp., in particular, and many other bacterial species, in general, have evolved such diverse iron uptake repertoires.

摘要

铁对于细菌的生长和存活至关重要,因为它是许多必需酶的常见辅因子。尽管铁在地壳中含量丰富,但在大多数生境中的生物利用度很低,因为在有氧条件下和中性 pH 值下,三价铁大多不易溶解。因此,细菌进化出了大量的机制来从环境和宿主库存中溶解和获取铁。在这篇综述中,我专注于假单胞菌属,并首先介绍了该属的主要铁摄取机制,这些机制包括通过进口器直接摄取亚铁、产生铁螯合的铁载体、利用其他微生物物种产生的铁载体以及利用植物和动物产生的铁螯合化合物。在这篇综述的第二部分,我详细阐述了这些机制如何影响微生物群落中细菌之间以及细菌与其宿主之间的相互作用。这一点很重要,因为假单胞菌属生活在多样化的群落中,某些铁摄取策略的进化不仅是为了获取这种必需的营养物质,也是为了在争夺铁的竞争中获得相对于竞争对手的相对优势。因此,综合理解铁摄取机制及其在群落水平上驱动的生态进化动态,可能有助于我们理解为什么假单胞菌属,特别是许多其他细菌物种,进化出了如此多样化的铁摄取机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7258/10393863/d2e58f4bb83d/10534_2022_480_Fig1_HTML.jpg

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