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Metabolomic Insights into the Allelopathic Effects of Ailanthus altissima (Mill.) Swingle Volatile Organic Compounds on the Germination Process of Bidens pilosa (L.)

Academic Article
Publication Date:
2025
Citation:
Metabolomic Insights into the Allelopathic Effects of Ailanthus altissima (Mill.) Swingle Volatile Organic Compounds on the Germination Process of Bidens pilosa (L.) / L. Bruno, D.M. Mircea, F. Araniti. - In: METABOLITES. - ISSN 2218-1989. - 15:1(2025 Jan 03), pp. 12.1-12.20. [10.3390/metabo15010012]
abstract:
Background/Objectives: This study explores the allelopathic effects of volatile organic compounds (VOCs) emitted by the invasive species Ailanthus altissima (Mill.) Swingle on the seed germination of Bidens pilosa. A. altissima is known for releasing allelopathic VOCs that suppress the growth of neighbouring plants, contributing to its invasive potential. Methods: To examine these effects, we exposed B. pilosa seeds to varying concentrations of A. altissima VOCs, assessing germination rates and metabolic changes through untargeted metabolomics. Results: Our findings revealed that VOCs from A. altissima significantly inhibited the germination speed and overall germination rates of B. pilosa in a dose-dependent manner. Metabolomic profiling showed disruptions in energy and amino acid metabolism pathways, specifically involving delayed breakdown of starch and key metabolites, indicating inhibition of critical metabolic processes during early germination stages. This metabolic delay likely impairs B. pilosa’s establishment and competitiveness, enhancing A. altissima’s ecological dominance. Conclusions: The results underscore the potential of VOC-based allelopathy as a mechanism of plant invasion, offering insights into the role of VOCs in interspecies plant competition and ecosystem dynamics.
IRIS type:
01 - Articolo su periodico
Keywords:
alien species; allelopathy; metabolomics; phytotoxicity; plant metabolism;
List of contributors:
L. Bruno, D.M. Mircea, F. Araniti
Authors of the University:
ARANITI FABRIZIO ( author )
Link to information sheet:
https://air.unimi.it/handle/2434/1164158
Full Text:
https://air.unimi.it/retrieve/handle/2434/1164158/3068062/metabolites-15-00012.pdf
Project:
Agroecological strategies for sustainable weed management in key European crops (AGROSUS)
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Settore AGRI-06/B - Chimica agraria
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