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迈向对鱼腥藻(念珠藻属)PCC7120中生物膜形成的控制:对相关基因及其调控的新见解。

Towards the control of biofilm formation in Anabaena (Nostoc) sp. PCC7120: novel insights into the genes involved and their regulation.

作者信息

Olivan-Muro Irene, Guío Jorge, Alonso-Tolo Germán, Sevilla Emma, Fillat María F

机构信息

Departamento de Bioquímica y Biología Molecular y Celular, Facultad de Ciencias e Instituto de Biocomputación y Física de Sistemas Complejos, Universidad de Zaragoza, Pedro Cerbuna, 12, Zaragoza, 50009, Spain.

出版信息

New Phytol. 2025 Aug;247(4):1805-1825. doi: 10.1111/nph.70317. Epub 2025 Jun 20.

Abstract

Cyanobacteria are major components of biofilms in light-exposed environments, contributing to nutrient cycling, nitrogen fixation and global biogeochemical processes. Although nitrogen-fixing cyanobacteria have been successfully used in biofertilization, the regulatory mechanisms underlying biofilm formation remain poorly understood. In this work, we have identified 183 novel genes in Anabaena sp. PCC7120 potentially associated with exopolysaccharide (EPS) biosynthesis and biofilm formation, unveiling conserved and novel regulatory connections shared with phylogenetically distant bacteria. Anabaena possesses homologues of two-component systems such as XssRS and ColRS from Xanthomonas spp., and AnCrpAB from Methylobacillus, suggesting that these homologues play essential or advantageous roles in biofilm formation across diverse bacterial lineages. Additionally, Anabaena features homologues of several proteins exhibiting the GG-secretion motif typical of small proteins required for biofilm formation in unicellular cyanobacteria. A wide array of biofilm-related genes in Anabaena, including major gene clusters participating in the synthesis and translocation of EPS and key regulatory proteins involved in the control of biofilms in other bacteria are modulated by ferric uptake regulator proteins. These findings link the control of biofilm formation in Anabaena to environmental cues such as metal availability, desiccation and nitrogen levels, providing new insights to improve the use of nitrogen-fixing cyanobacterial biofilms in sustainable agriculture and environmental management.

摘要

蓝细菌是光照环境中生物膜的主要组成部分,对养分循环、固氮作用和全球生物地球化学过程有重要贡献。尽管固氮蓝细菌已成功应用于生物肥料领域,但生物膜形成的调控机制仍知之甚少。在这项研究中,我们在鱼腥藻PCC7120中鉴定出183个与胞外多糖(EPS)生物合成和生物膜形成潜在相关的新基因,揭示了与亲缘关系较远的细菌共有的保守和新的调控联系。鱼腥藻拥有双组分系统的同源物,如来自黄单胞菌属的XssRS和ColRS,以及来自甲基杆菌属的AnCrpAB,这表明这些同源物在不同细菌谱系的生物膜形成中发挥着重要或有利的作用。此外,鱼腥藻具有几种蛋白质的同源物,这些蛋白质表现出单细胞蓝细菌生物膜形成所需小蛋白质典型的GG分泌基序。鱼腥藻中一系列与生物膜相关的基因,包括参与EPS合成和转运的主要基因簇以及其他细菌中参与生物膜控制的关键调控蛋白,都受到铁摄取调节蛋白的调控。这些发现将鱼腥藻生物膜形成的控制与金属可用性、干燥和氮水平等环境线索联系起来,为改善固氮蓝细菌生物膜在可持续农业和环境管理中的应用提供了新的见解。

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