Transcriptome investigation on the multicellular behavior ofBacillus velezensisBs916 anchoring surfactin

Author:

Dong Fei12,Ren Shiying2,Liu Jiachen2,Bilal Muhammad2,Li Bin3,Chen Xin3,Liu Xuehui4,Zhong Haijing2,Zang Shanshan4,Yuan Mengxian5,Luo Chuping2,Jiang Jihong1

Affiliation:

1. Key Laboratory of Biotechnology for Medicinal Plants of Jiangsu Province and School of Life Sciences, Jiangsu Normal University , Xuzhou, 210023 Jiangsu , China

2. Jiangsu Provincial Key Construction Laboratory of Probiotics Preparation, Faculty of Life Science and Food Engineering, Huaiyin Institute of Technology , Huai'an, 210023 Jiangsu , China

3. Jiangsu Academy of Agricultural Sciences , Nanjing, 210023 Jiangsu , China

4. Institute of Biophysics, Chinese Academy of Sciences , Chaoyang District, 100101 Beijing , China

5. Jiangsu Food & Pharmaceutical Science College , Huai'an, 210023 Jiangsu , China

Abstract

ABSTRACTAimsTo provide valuable information for a comprehensive understanding of the multicellular behavior of Bacillus velezensis Bs916 regulated by surfactin and other natural signals by Transcriptome.Methods and resultsTranscriptomics revealed a distinct effect on gene expression alterations caused by disruption of the surfactin gene cluster(Δsrf) and 100 µg/ml surfactin addition(Δsrf + SRF). A total of 1573 differential expression genes were identified among Bs916, Δsrf, and Δsrf + SRF and grouped into eight categories based on their expression profiles. RT-qPCR analysis of 30 candidate genes showed high consistency with those of transcriptome. Additionally, the expression of eight candidate genes regulated by surfactin in a dose-dependent manner was revealed by lacZ fusion. Based on the above evidence, we proposed that surfactin can act as an extracellular signal for monitoring biofilm formation in Bs916 by directly regulating the expression of AbrB, DegS-degU, and SinI-SinR, and indirectly regulating the phosphorylation of ComA and Spo0A.ConclusionsThe biofilm of Δsrf was unable to restore significantly by surfactin addition, combined inclusion of surfactin (SRF), exopolysaccharide (EPS), and γ-poly-dl-glutamic acid (γ-PGA), results in significant restoration of Δsrf biofilm formation, thereby a preliminary model was presented about the molecular mechanism by which the signaling molecule surfactin regulates Bs916 multicellular behavior.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jiangsu Province of China

Jiangsu Agriculture Science and Technology Innovation Fund

Postgraduate Research & Practice Innovation Program of Jiangsu Province

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,General Medicine,Biotechnology

Reference64 articles.

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