Soybean CEP6 Signaling Peptides Positively Regulate Nodulation

Author:

Wu Shuai1,Wang Xiaoli1,Qin Jie1,Tian Wenqing1,Wang Min1,Yue Aiqin1,Wang Lixiang1ORCID,Du Weijun1,Zhao Jinzhong1ORCID

Affiliation:

1. Houji Labortary in Shanxi Province, College of Agriculture, Shanxi Agricultural University, Jinzhong 030801, China

Abstract

Nodulation is the most efficient nitrate assimilation system in the ecosystem, while excessive fertilization has an increased nitrate inhibition effect; deciphering the nitrate signal transduction mechanism in the process is of the utmost importance. In this study, genome-wide analyses of the GmCEP genes were applied to identify nodulation-related CEP genes; 22 GmCEP family members were identified, while GmCEP6 was mainly expressed in nodules and significantly responded to nitrate treatment and rhizobium infection, especially in later stages. Overexpression and CRISPR-Cas9 were used to validate its role in nodulation. We found that GmCEP6 overexpression significantly increased the nodule number, while GmCEP6 knock-out significantly decreased the nodule number, which suggests that GmCEP6 functions as a positive regulator in soybean nodulation. qRT-PCR showed that alterations in the expression of GmCEP6 affected the expression of marker genes in the Nod factor signaling pathway. Lastly, the function of GmCEP6 in nitrate inhibition of nodulation was analyzed; nodule numbers in the GmCEP6-overexpressed roots significantly increased under nitrogen treatments, which suggests that GmCEP6 functions in the resistance to nitrate inhibition. The study helps us understand that GmCEP6 promotes nodulation and participates in the regulation of nitrate inhibition of nodulation, which is of great significance for high efficiency utilization of nitrogen in soybeans.

Funder

The Central Guidance for Local Science and Technology Development Projects

Technological Innovation 2030 Major Project

Natural Science Foundation of Henan Province

Basic research program of Shanxi Province

National Natural Science Foundation of China

National Key Research and Development Program

Shanxi Breeding Innovation Joint research and development projects

National Laboratory of Minor Crops Germplasm Innovation and Molecular Breeding

Publisher

MDPI AG

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