CopG1, a Novel Transcriptional Regulator Affecting Symbiosis in Bradyrhizobium sp. SUTN9-2

Author:

Wangthaisong Praneet1ORCID,Piromyou Pongdet2ORCID,Songwattana Pongpan2,Phimphong Tarnee1,Songsaeng Apisit1ORCID,Pruksametanan Natcha1,Boonchuen Pakpoom1,Wongdee Jenjira2,Teamtaisong Kamonluck3,Boonkerd Nantakorn1,Sato Shusei4,Tittabutr Panlada1ORCID,Teaumroong Neung1ORCID

Affiliation:

1. School of Biotechnology, Institute of Agricultural Technology, Suranaree University of Technology, Nakhon Ratchasima 30000, Thailand

2. Institute of Research and Development, Suranaree University of Technology, Nakhon Ratchasima 30000, Thailand

3. The Center for Scientific and Technological Equipment, Suranaree University of Technology, Nakhon Ratchasima 30000, Thailand

4. Graduate School of Life Sciences, Tohoku University, Sendai 980-8577, Japan

Abstract

The symbiotic interaction between leguminous and Bradyrhizobium sp. SUTN9-2 mainly relies on the nodulation process through Nod factors (NFs), while the type IV secretion system (T4SS) acts as an alternative pathway in this symbiosis. Two copies of T4SS (T4SS1 and T4SS2) are located on the chromosome of SUTN9-2. ΔT4SS1 reduces both nodule number and nitrogenase activity in all SUTN9-2 nodulating legumes. The functions of three selected genes (copG1, traG1, and virD21) within the region of T4SS1 were examined. We generated deleted mutants and tested them in Vigna radiata cv. SUT4. ΔtraG1 and ΔvirD21 exhibited lower invasion efficiency at the early stages of root infection but could be recently restored. In contrast, ΔcopG1 completely hindered nodule organogenesis and nitrogenase activity in all tested legumes. ΔcopG1 showed low expression of the nodulation gene and ttsI but exhibited high expression levels of the T4SS genes, traG1 and trbE1. The secreted proteins from ΔT4SS1 were down-regulated compared to the wild-type. Although ΔcopG1 secreted several proteins after flavonoid induction, T3SS (nopP and nopX) and the C4-dicarboxylate transporter (dct) were not detected. These results confirm the crucial role of the copG1 gene as a novel key regulator in the symbiotic relationship between SUTN9-2 and legumes.

Funder

the Royal Golden Jubilee Ph.D. Programme (RGJ) scholarship under the Thailand Research Fund

Suranaree University of Technology

National Science, Research, and Innovation Fund

NSRF via the Program Management Unit for Human Resources & Institutional Development, Research, and Innovation

National Research Council of Thailand

Office of the Permanent Secretary of the Ministry of Higher Education, Science, Research, and Innovation

Publisher

MDPI AG

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