RNA Sequencing-Associated Study Identifies GmDRR1 as Positively Regulating the Establishment of Symbiosis in Soybean

Author:

Shi Yan1ORCID,Zhang Zhanguo1,Wen Yingnan1,Yu Guolong1,Zou Jianan1,Huang Shiyu1,Wang Jinhui1,Zhu Jingyi1,Wang Jieqi1,Chen Lin1,Ma Chao1,Liu Xueying1,Zhu Rongsheng1,Li Qingying1,Li Jianyi1,Guo Miaoxin1,Liu Hanxi1,Zhu Yongxu1,Sun Zhijun1,Han Lu1,Jiang Hongwei12,Wu Xiaoxia1,Wang Nannan13,Zhang Weiyao4,Yin Zhengong14,Li Candong13,Hu Zhenbang1,Qi Zhaoming1,Liu Chunyan1,Chen Qingshan1,Xin Dawei1ORCID

Affiliation:

1. Key Laboratory of Soybean Biology of Chinese Ministry of Education, Key Laboratory of Soybean Biology and Breeding/Genetics of Chinese Agriculture Ministry, College of Science, Northeast Agricultural University, Harbin, Heilongjiang Province, People’s Republic of China

2. Jilin Academy of Agricultural Sciences, Soybean Research Institute, Changchun, People’s Republic of China

3. Jiamusi Branch of Heilongjiang Academy of Agricultural, Jiamusi, People’s Republic of China

4. Suihua Branch of Heilongjiang Academy of Agricultural, Suihua, China, Crop Breeding Institute, Heilongjiang Academy of Agricultural Sciences, Harbin, Heilongjiang, People’s Republic of China

Abstract

In soybean (Glycine max)-rhizobium interactions, the type III secretion system (T3SS) of rhizobium plays a key role in regulating host specificity. However, the lack of information on the role of T3SS in signaling networks limits our understanding of symbiosis. Here, we conducted an RNA sequencing analysis of three soybean chromosome segment substituted lines, one female parent and two derived lines with different chromosome-substituted segments of wild soybean and opposite nodulation patterns. By analyzing chromosome-linked differentially expressed genes in the substituted segments and quantitative trait loci (QTL)-assisted selection in the substituted-segment region, genes that may respond to type III effectors to mediate plant immunity–related signaling were identified. To narrow down the number of candidate genes, QTL assistant was used to identify the candidate region consistent with the substituted segments. Furthermore, one candidate gene, GmDRR1, was identified in the substituted segment. To investigate the role of GmDRR1 in symbiosis establishment, GmDRR1-overexpression and RNA interference soybean lines were constructed. The nodule number increased in the former compared with wild-type soybean. Additionally, the T3SS-regulated effectors appeared to interact with the GmDDR1 signaling pathway. This finding will allow the detection of T3SS-regulated effectors involved in legume-rhizobium interactions.

Funder

Nature Science Foundation for The Excellent Youth Scholars of Heilongjiang Province

Nature Science Fund for Distinguished Young Scholars of Heilongjiang Province

Youth Science and Technology Innovation Leader

The National Key R&D Program of China

The National Natural Science Foundation of China

The Heilongjiang Postdoctoral Science Foundation

The Promote Project for Young Talents of the Colleges in Heilongjiang province

Publisher

Scientific Societies

Subject

Agronomy and Crop Science,General Medicine,Physiology

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