Bioluminescence Contributes to the Adaptation of Deep-Sea Bacterium Photobacterium phosphoreum ANT-2200 to High Hydrostatic Pressure

Author:

Bao Xu-Chong123,Tang Hong-Zhi23,Li Xue-Gong34ORCID,Li An-Qi23,Qi Xiao-Qing34,Li Deng-Hui45,Liu Shan-Shan45,Wu Long-Fei6ORCID,Zhang Wei-Jia34ORCID

Affiliation:

1. Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences, Yantai 264003, China

2. University of Chinese Academy of Sciences, Beijing 101408, China

3. Laboratory of Deep-Sea Microbial Cell Biology, Institute of Deep-Sea Science and Engineering, Chinese Academy of Sciences, Sanya 572000, China

4. Hainan Deep-Sea Technology Laboratory, IDSSE-BGI, Institution of Deep-Sea Life Sciences, Sanya 572000, China

5. BGI-Qingdao, BGI-Shenzhen, Qingdao 266555, China

6. LCB, IMM, CNRS, Aix-Marseille University, 13402 Marseille, France

Abstract

Bioluminescence is a common phenomenon in nature, especially in the deep ocean. The physiological role of bacterial bioluminescence involves protection against oxidative and UV stresses. Yet, it remains unclear if bioluminescence contributes to deep-sea bacterial adaptation to high hydrostatic pressure (HHP). In this study, we constructed a non-luminescent mutant of ΔluxA and its complementary strain c-ΔluxA of Photobacterium phosphoreum ANT-2200, a deep-sea piezophilic bioluminescent bacterium. The wild-type strain, mutant and complementary strain were compared from aspects of pressure tolerance, intracellular reactive oxygen species (ROS) level and expression of ROS-scavenging enzymes. The results showed that, despite similar growth profiles, HHP induced the accumulation of intracellular ROS and up-regulated the expression of ROS-scavenging enzymes such as dyp, katE and katG, specifically in the non-luminescent mutant. Collectively, our results suggested that bioluminescence functions as the primary antioxidant system in strain ANT-2200, in addition to the well-known ROS-scavenging enzymes. Bioluminescence contributes to bacterial adaptation to the deep-sea environment by coping with oxidative stress generated from HHP. These results further expanded our understanding of the physiological significance of bioluminescence as well as a novel strategy for microbial adaptation to a deep-sea environment.

Funder

Key Research and Development Program of Hainan Province

National Natural Science Foundation of China

Sanya city

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

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