A Dual Role of Amino Acids from Sesbania rostrata Seed Exudates in the Chemotaxis Response of Azorhizobium caulinodans ORS571

Author:

Liu Xiaolin12,Xie Zhihong1ORCID,Wang Yixuan12,Sun Yu12,Dang Xiaoxiao12,Sun Haishuan3

Affiliation:

1. Key Laboratory of Coastal Biology and Bioresource Utilization, Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences, Yantai, People’s Republic of China

2. University of Chinese Academy of Sciences, Beijing, People’s Republic of China

3. Shandong Huibang Bohai Agriculture Development Limited Company, Dongying, People’s Republic of China

Abstract

Azorhizobium caulinodans ORS571 can induce nodule formation on the roots and the stems of its host legume, Sesbania rostrata. Plant exudates are essential in the dialogue between microbes and their host plant and, in particular, amino acids can play an important role in the chemotactic response of bacteria. Histidine, arginine, and aspartate, which are the three most abundant amino acids present in S. rostrata seed exudates, behave as chemoattractants toward A. caulinodans. A position-specific-iterated BLAST analysis of the methyl-accepting chemotaxis proteins (MCPs) (chemoreceptors) in the genome of A. caulinodans was performed. Among the 43 MCP homologs, two MCPs harboring a dCache domain were selected as possible cognate amino acid MCPs. After analysis of relative gene expression levels and construction of a gene-deleted mutant strain, one of them, AZC_0821 designed as TlpH, was confirmed to be responsible for the chemotactic response to the three amino acids. In addition, it was found that these three amino acids can also influence chemotaxis of A. caulinodans independently of the chemosensory receptors, by being involved in the increase of the expression level of several che and fla genes involved in the chemotaxis pathway and flagella synthesis. Thus, the contribution of amino acids present in seed exudates is directly related to the role as chemoattractants and indirectly related to the role in the regulation of expression of key genes involved in chemotaxis and motility. This “dual role” is likely to influence the formation of biofilms by A. caulinodans and the host root colonization properties of this bacterium.

Funder

NSFC-Shandong Joint Fund Key Projects

National Natural Science Foundation of China

Shandong Key Research and Development Program

Shandong Key Scientific and Technological Innovation Program

Agricultural Scientific and Technological Innovation Project of Shandong Academy of Agricultural Sciences

Publisher

Scientific Societies

Subject

Agronomy and Crop Science,General Medicine,Physiology

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