Spectroscopic Investigation of Tomato Seed Germination Stimulated by Trichoderma spp.

Author:

Vukelić Igor1ORCID,Radić Danka2ORCID,Pećinar Ilinka3ORCID,Lević Steva3ORCID,Djikanović Daniela4,Radotić Ksenija4,Panković Dejana15ORCID

Affiliation:

1. Faculty of Ecological Agriculture, Educons University, Vojvode Putnika 87, 21208 Sremska Kamenica, Serbia

2. Institute of General and Physical Chemistry, Studentski trg 12/V, 11000 Belgrade, Serbia

3. Faculty of Agriculture, University of Belgrade, Nemanjina 6, 11080 Belgrade, Serbia

4. Institute for Multidisciplinary Research, University of Belgrade, Bulevar despota Stefana 142, 11060 Belgrade, Serbia

5. Julius Kuehn Institute, Institute for Resistance Research and Stress Tolerance, Erwin Baur Strasse 27, 06484 Quedlinburg, Germany

Abstract

Seed germination is a complex process that can be negatively affected by numerous stresses. Trichoderma spp. are known as effective biocontrol agents as well as plant growth and germination stimulators. However, understanding of the early interactions between seeds and Trichoderma spp. remains limited. In the present paper, Fourier-transform infrared spectroscopy (FTIR) and Raman spectroscopy were used to reveal the nature of tomato seed germination as stimulated by Trichoderma. A rapid response of tomato seeds to Trichoderma spp. was observed within 48 h on Murashige and Skoog medium (MS) substrate, preceding any physical contact. Raman analysis indicated that both Trichoderma species stimulated phenolic compound synthesis by triggering plant-specific responses in seed radicles. The impact of T. harzianum and T. brevicompactum on two tomato cultivars resulted in alterations to the middle lamella pectin, cellulose, and xyloglucan in the primary cell wall. The Raman spectra indicated increased xylan content in NA with T9 treatment as well as increased hemicelluloses in GZ with T4 treatment. Moreover, T4 treatment resulted in elevated conjugated aldehydes in lignin in GZ, whereas the trend was reversed in NA. Additionally, FTIR analysis revealed significant changes in total protein levels in Trichoderma spp.-treated tomato seed radicles, with simultaneous decreases in pectin and/or xyloglucan. Our results indicate that two complementary spectroscopic methods, FTIR and Raman spectroscopy, can give valuable information on rapid changes in the plant cell wall structure of tomato radicles during germination stimulated by Trichoderma spp.

Funder

Provincial Secretary for Higher Education and Scientific Research

Ministry of Science, Technological Development and Innovation of the Republic of Serbia

Institute for Multidisciplinary Research University of Belgrade

Institute of General and Physical Chemistry, and European Union’s Horizon Europe Project GREENLand

Publisher

MDPI AG

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