Chlorophyll f production in two new subaerial cyanobacteria of the family Oculatellaceae

Author:

Shen Li‐Qin1,Zhang Zhong‐Chun1,Huang Li1,Zhang Lu‐Dan1,Yu Gongliang2,Chen Min3ORCID,Li Renhui4,Qiu Bao‐Sheng1ORCID

Affiliation:

1. School of Life Sciences, and Hubei Key Laboratory of Genetic Regulation and Integrative Biology Central China Normal University Wuhan Hubei China

2. Key Lab of Algal Biology, Institute of Hydrobiology Chinese Academy of Sciences Wuhan Hubei China

3. School of Life and Environmental Sciences University of Sydney Sydney New South Wales Australia

4. College of Life and Environmental Sciences Wenzhou University Zhejiang China

Abstract

AbstractChlorophyll (Chl) f was recently identified in a few cyanobacteria as the fifth chlorophyll of oxygenic organisms. In this study, two Leptolyngbya‐like strains of CCNU0012 and CCNU0013 were isolated from a dry ditch in Chongqing city and a brick wall in Mount Emei Scenic Area in China, respectively. These two strains were described as new species: Elainella chongqingensis sp. nov. (Oculatellaceae, Synechococcales) and Pegethrix sichuanica sp. nov. (Oculatellaceae, Synechococcales) by the polyphasic approach based on morphological features, phylogenetic analysis of 16S rRNA gene and secondary structure comparison of 16S‐23S internal transcribed spacer domains. Both strains produced Chl a under white light (WL) but additionally induced Chl f synthesis under far‐red light (FRL). Unexpectedly, the content of Chl f in P. sichuanica was nearly half that in most Chl f‐producing cyanobacteria. Red‐shifted phycobiliproteins were also induced in both strains under FRL conditions. Subsequently, additional absorption peak beyond 700 nm in the FRL spectral region appeared in these two strains. This is the first report of Chl f production induced by FRL in the family Oculatellaceae. This study not only extended the diversity of Chl f‐producing cyanobacteria but also provided precious samples to elucidate the essential binding sites of Chl f within cyanobacterial photosystems.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Plant Science,Aquatic Science

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