Gene-to-Gene Network Analysis of the Mediation of Plant Innate Immunity by the Eliciting Plant Response-Like 1 (Epl1) Elicitor of Trichoderma formosa

Author:

Cheng Chi-Hua1,Shen Bing-Nan2,Shang Qian-Wen2,Liu Li-Yu Daisy3,Peng Kou-Cheng4,Chen Yan-Huey2,Chen Fang-Fang2,Hu Sin-Fen2,Wang Yu-Tai5,Wang Hao-Ching6,Wu Hsin-Yi7,Lo Chaur-Tsuen1,Lin Shih-Shun2589ORCID

Affiliation:

1. Department of Biotechnology, National Formosa University, Yulin, Taiwan;

2. Institute of Biotechnology, National Taiwan University, Taipei, Taiwan;

3. Department of Agronomy, National Taiwan University;

4. Institute of Biotechnology, National Dong-Hwa University, Hualien, Taiwan;

5. National Center for High-Performance Computing, National Applied Research Laboratories, Hsinchu, Taiwan;

6. Graduate Institute of Translational Medicine, College of Medical Science and Technology, Taipei Medical University, Taipei, Taiwan;

7. Instrumentation Center, National Taiwan University;

8. Agricultural Biotechnology Research Center, Academia Sinica, Taipei, Taiwan; and

9. Center of Biotechnology, National Taiwan University

Abstract

A new clade, Trichoderma formosa, secretes eliciting plant response-like 1 (Epl1), a small peptide elicitor that stimulates plant immunity. Nicotiana benthamiana pretreated with Epl1 for 3 days developed immunity against Tomato mosaic virus (ToMV) infection. The transcriptome profiles of T. formosa and N. benthamiana were obtained by deep sequencing; the transcript of Epl1 is 736 nt in length and encodes a 12-kDa peptide. Identifying critical genes in Epl1-mediated immunity was challenging due to high similarity between the transcriptome expression profiles of Epl1-treated and ToMV-infected N. benthamiana samples. Therefore, an efficient bioinformatics data mining approach was used for high-throughput transcriptomic assays in this study. We integrated gene-to-gene network analysis into the ContigViews transcriptome database, and genes related to jasmonic acid and ethylene signaling, salicylic acid signaling, leucine-rich repeats, transcription factors, and histone variants were hubs in the gene-to-gene networks. In this study, the Epl1 of T. formosa triggers plant immunity against various pathogen infections. Moreover, we demonstrated that high-throughput data mining and gene-to-gene network analysis can be used to identify critical candidate genes for further studies on the mechanisms of plant immunity.

Funder

Ministry of Science and Technology, Taiwan

Publisher

Scientific Societies

Subject

Agronomy and Crop Science,General Medicine,Physiology

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2. Insights into the ecological generalist lifestyle of Clonostachys fungi through analysis of their predicted secretomes;Frontiers in Microbiology;2023-02-16

3. Role of Cerato-Platanins in Inducing PAMP-Triggered Immunity in Plants;Microbial Biocontrol: Molecular Perspective in Plant Disease Management;2023

4. Trichoderma-derived elicitor-like molecules and their role in plant immunity;The Chemical Dialogue Between Plants and Beneficial Microorganisms;2023

5. Trichoderma: Multifunctional role in plant defense mechanism;New and Future Developments in Microbial Biotechnology and Bioengineering;2023

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