An Integrative Transcriptional Network Revealed Spatial Molecular Interplay Underlying Alantolactone and Inulin Biosynthesis in Inula racemosa Hook f.

Author:

Seth RomitORCID,Devi AmnaORCID,Sharma Balraj,Masand MamtaORCID,Singh GopalORCID,Pal Poonam,Holkar Ashlesha,Sharma Shikha,Sharma Vishal,Negi Shivanti,Sharma Ram KumarORCID

Abstract

Inula racemosa Hook. f. (Pushkarmula), a perennial Himalayan herb known for its aromatic and phytopharmaceutical attributes, is not yet explored at genomic/transcriptomic scale. In this study, efforts were made to unveil the global transcriptional atlas underlying organ-specific specialized metabolite biosynthesis by integrating RNA-Seq analysis of 433 million sequenced reads with the phytochemical analysis of leaf, stem, and root tissues. Overall, 7242 of 83,772 assembled nonredundant unigenes were identified exhibiting spatial expression in leaf (3761), root (2748), and stem (733). Subsequently, integration of the predicted transcriptional interactome network of 2541 unigenes (71,841 edges) with gene ontology and KEGG pathway enrichment analysis revealed isoprenoid, terpenoid, diterpenoid, and gibberellin biosynthesis with antimicrobial activities in root tissue. Interestingly, the root-specific expression of germacrene-mediated alantolactone biosynthesis (GAS, GAO, G8H, IPP, DMAP, and KAO) and antimicrobial activities (BZR1, DEFL, LTP) well-supported with both quantitative expression profiling and phytochemical accumulation of alantolactones (726.08 μg/10 mg) and isoalantolactones (988.59 μg/10 mg), which suggests “roots” as the site of alantolactone biosynthesis. A significant interaction of leaf-specific carbohydrate metabolism with root-specific inulin biosynthesis indicates source (leaf) to sink (root) regulation of inulin. Our findings comprehensively demonstrate the source-sink transcriptional regulation of alantolactone and inulin biosynthesis, which can be further extended for upscaling the targeted specialized metabolites. Nevertheless, the genomic resource created in this study can also be utilized for development of genome-wide functionally relevant molecular markers to expedite the breeding strategies for genetic improvement of I. racemosa.

Funder

Council of Scientific and Industrial Research

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference63 articles.

1. ETHNOPHARMACOLOGY, PHYTOCHEMISTRY AND BIOLOGICAL ACTIVITY OF INULA RACEMOSA HOOK. F: A REVIEW

2. Medico-Historical Review of Drug Kustha;Prasad;Bull. Indian Inst. Hist. Med. Hyderabad.,2002

3. Mano (Inula racemosa): Little Known Aromatic Plant of Lahaul Valley, India

4. In Vitro Propagation and Conservation of Inula Racemosa Hook. F. an Endangered Medicinal Plant of Temperate Origin;Kaur;J. Adv. Lab. Res. Biol.,2010

5. Inula racemosa Hook. f: A potential medicinal crop in the cold desert agro-ecosystem of North Western Himalaya, India

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