Untargeted Metabolomics of Alternaria solani-Challenged Wild Tomato Species Solanum cheesmaniae Revealed Key Metabolite Biomarkers and Insight into Altered Metabolic Pathways

Author:

Singh Dhananjaya Pratap1,Bisen Mansi Singh1,Prabha Ratna2,Maurya Sudarshan1,Yerasu Suresh Reddy1,Shukla Renu3ORCID,Tiwari Jagesh Kumar1ORCID,Chaturvedi Krishna Kumar2ORCID,Farooqi Md. Samir2,Srivastava Sudhir2ORCID,Rai Anil2ORCID,Sarma Birinchi Kumar4ORCID,Rai Nagendra1,Singh Prabhakar Mohan1ORCID,Behera Tusar Kanti1ORCID,Farag Mohamed A.5ORCID

Affiliation:

1. ICAR-Indian Institute of Vegetable Research, Varanasi 221305, India

2. ICAR-Indian Agricultural Statistics Research Institute, Library Avenue, New Delhi 110012, India

3. Indian Council of Agricultural Research, New Delhi 110012, India

4. Department of Mycology and Plant Pathology, Institute of Agricultural Sciences, Banaras Hindu University, Varanasi 221005, India

5. Pharmacognosy Department, College of Pharmacy, Cairo University, Cairo 11562, Egypt

Abstract

Untargeted metabolomics of moderately resistant wild tomato species Solanum cheesmaniae revealed an altered metabolite profile in plant leaves in response to Alternaria solani pathogen. Leaf metabolites were significantly differentiated in non-stressed versus stressed plants. The samples were discriminated not only by the presence/absence of specific metabolites as distinguished markers of infection, but also on the basis of their relative abundance as important concluding factors. Annotation of metabolite features using the Arabidopsis thaliana (KEGG) database revealed 3371 compounds with KEGG identifiers belonging to biosynthetic pathways including secondary metabolites, cofactors, steroids, brassinosteroids, terpernoids, and fatty acids. Annotation using the Solanum lycopersicum database in PLANTCYC PMN revealed significantly upregulated (541) and downregulated (485) features distributed in metabolite classes that appeared to play a crucial role in defense, infection prevention, signaling, plant growth, and plant homeostasis to survive under stress conditions. The orthogonal partial least squares discriminant analysis (OPLS-DA), comprising a significant fold change (≥2.0) with VIP score (≥1.0), showed 34 upregulated biomarker metabolites including 5-phosphoribosylamine, kaur-16-en-18-oic acid, pantothenate, and O-acetyl-L-homoserine, along with 41 downregulated biomarkers. Downregulated metabolite biomarkers were mapped with pathways specifically known for plant defense, suggesting their prominent role in pathogen resistance. These results hold promise for identifying key biomarker metabolites that contribute to disease resistive metabolic traits/biosynthetic routes. This approach can assist in mQTL development for the stress breeding program in tomato against pathogen interactions.

Funder

Indian Council of Agricultural Research (ICAR), India

Publisher

MDPI AG

Subject

Molecular Biology,Biochemistry,Endocrinology, Diabetes and Metabolism

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