Interactions between the nitrogen-fixing cyanobacterium Trichodesmium and siderophore-producing cyanobacterium Synechococcus under iron limitation

Author:

Sun Xumei12,Xiao Yan3,Yong Chengwen1,Sun Hansheng1,Li Shuangqing1,Huang Hailong12,Jiang Haibo123

Affiliation:

1. School of Marine Sciences, Ningbo University , 818 Fenghua Road, Ningbo, Zhejiang, 315211 , People’s Republic of China

2. Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai) , 1 Jintang Road, Zhuhai, Guangdong, 519000 , People’s Republic of China

3. School of Life Sciences, Central China Normal University , 152 Luoyu Road, Wuhan, Hubei, 430079 , People’s Republic of China

Abstract

Abstract As diazotrophic cyanobacteria of tremendous biomass, Trichodesmium continuously provide a nitrogen source for carbon-fixing cyanobacteria and drive the generation of primary productivity in marine environments. However, ocean iron deficiencies limit growth and metabolism of Trichodesmium. Recent studies have shown the co-occurrence of Trichodesmium and siderophore-producing Synechococcus in iron-deficient oceans, but whether siderophores secreted by Synechococcus can be used by Trichodesmium to adapt to iron deficiency is not clear. We constructed a mutant Synechococcus strain unable to produce siderophores to explore this issue. Synechococcus filtrates with or without siderophores were added into a Trichodesmium microbial consortium consisting of Trichodesmium erythraeum IMS 101 as the dominant microbe with chronic iron deficiency. By analyzing the physiological phenotype, metagenome, and metatranscriptome, we investigated the interactions between the nitrogen-fixing cyanobacterium Tricodesmium and siderophore-producing cyanobacterium Synechococcus under conditions of iron deficiency. The results indicated that siderophores secreted by Synechococcus are likely to chelate with free iron in the culture medium of the Trichodesmium consortium, reducing the concentration of bioavailable iron and posing greater challenges to the absorption of iron by Trichodesmium. These findings revealed the characteristics of iron-competitive utilization between diazotrophic cyanobacteria and siderophore-producing cyanobacteria, as well as potential interactions, and provide a scientific basis for understanding the regulatory effects of nutrient limitation on marine primary productivity.

Funder

National Natural Science Foundation of China

Science and Technology Innovation 2025 Major Project of Ningbo City

Independent Research Projects of Southern Marine Science and Engineering Guangdong Laboratory

Publisher

Oxford University Press (OUP)

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