School of Life Sciences, Hubei Key Laboratory of Genetic Regulation and Integrative Biology, Central China Normal University, Wuhan, Hubei, 430079, China.
Department of Chemistry and Biochemistry, Texas Tech University, Lubbock, TX, 79409, USA.
Nat Commun. 2024 May 24;15(1):4426. doi: 10.1038/s41467-024-48847-4.
Iron and phosphorus are essential nutrients that exist at low concentrations in surface waters and may be co-limiting resources for phytoplankton growth. Here, we show that phosphorus deficiency increases the growth of iron-limited cyanobacteria (Synechocystis sp. PCC 6803) through a PhoB-mediated regulatory network. We find that PhoB, in addition to its well-recognized role in controlling phosphate homeostasis, also regulates key metabolic processes crucial for iron-limited cyanobacteria, including ROS detoxification and iron uptake. Transcript abundances of PhoB-targeted genes are enriched in samples from phosphorus-depleted seawater, and a conserved PhoB-binding site is widely present in the promoters of the target genes, suggesting that the PhoB-mediated regulation may be highly conserved. Our findings provide molecular insights into the responses of cyanobacteria to simultaneous iron/phosphorus nutrient limitation.
铁和磷是存在于地表水中浓度较低的必需营养物质,可能是浮游植物生长的共同限制资源。在这里,我们表明,磷缺乏通过 PhoB 介导的调控网络增加了缺铁蓝细菌(Synechocystis sp. PCC 6803)的生长。我们发现,PhoB 除了在控制磷酸盐动态平衡方面的作用外,还调节了对缺铁蓝细菌至关重要的关键代谢过程,包括 ROS 解毒和铁摄取。PhoB 靶向基因的转录丰度在磷耗尽海水中的样本中富集,并且保守的 PhoB 结合位点广泛存在于靶基因的启动子中,表明 PhoB 介导的调控可能高度保守。我们的研究结果为蓝细菌对铁/磷营养同时限制的反应提供了分子见解。