Trichoderma atroviride Enhances Impatiens walleriana Hook. f Growth and Flowering in Different Growing Media

Author:

Traversari Silvia12ORCID,Cardarelli Mariateresa3ORCID,Brambilla Massimo4ORCID,Cutini Maurizio4ORCID,Burchi Gianluca5,Fedrizzi Marco6,Massa Daniele5ORCID,Orlandini Alessandro67,Cacini Sonia5

Affiliation:

1. Research Institute on Terrestrial Ecosystems (IRET), National Research Council (CNR), Via Giuseppe Moruzzi 1, 56124 Pisa, Italy

2. National Biodiversity Future Center (NBFC), 90133 Palermo, Italy

3. Department of Agriculture and Forest Sciences, University of Tuscia, Via S. Camillo De Lellis snc, 01100 Viterbo, Italy

4. Research Centre for Engineering and Agro-Food Processing, Council for Agricultural Research and Economics (CREA), Via Milano 43, 24027 Treviglio, Bergamo, Italy

5. Research Centre for Vegetables and Ornamental Crops, Council for Agricultural Research and Economics (CREA), Via dei Fiori 8, 51017 Pescia, Pistoia, Italy

6. Research Centre for Engineering and Agro-Food Processing, Council for Agricultural Research and Economics (CREA), Via della Pascolare 16, 00015 Monterotondo Scalo, Rome, Italy

7. Research Centre for Agriculture and Environment, Council for Agricultural Research and Economics (CREA), Via di Lanciola 12/a, 50125 Firenze, Italy

Abstract

Trichoderma spp. are widely reported to regulate plant growth by improving nutrient uptake, photosynthesis, and abiotic stress tolerance. However, their possible application for bedding plants is little explored, especially when comparing different growing media. Considering that coconut coir dust is finding broader application in the ornamental plants sector as a peat substitute, this work was aimed to test the combination of Trichoderma atroviride AT10 and coconut coir dust on Impatiens walleriana plants. Four treatments were tested as a mix of: (i) two growing media (70:30), peat:perlite or coconut coir dust:perlite; and (ii) the absence or presence of a T. atroviride treatment. At the end of the production cycle, the biomass and ornamental parameters, leaf pigments, nutrient content of the plant tissues, and Trichoderma abundance were assessed. The results revealed that T. atroviride can readily colonize coir, and the same positive effects of inoculum were found in plants grown on both substrates. The biostimulant effect of T. atroviride was observed as an increase in the aboveground biomass, number and weight of flowers, pigments and nutrient concentration, thereby improving the commercial quality of I. walleriana. Thus, T. atroviride has shown its potential in making bedding plant cultivation more sustainable and improving the yield and aesthetic parameters of plants grown on peat and coconut coir dust substrates.

Funder

MASAF, Project “Energia dall’agricoltura: innovazioni sostenibili per la bioeconomia (AGROENER)”

Publisher

MDPI AG

Reference59 articles.

1. Gabellini, S., and Scaramuzzi, S. (2022). Evolving consumption trends, marketing strategies, and governance settings in ornamental horticulture: A grey literature review. Horticulturae, 8.

2. Bedding plant production and the challenge of fungal diseases;Guarnaccia;Plant Dis.,2021

3. USDA (2024, February 16). Floriculture Crops: 2018 Summary. United States Department of Agriculture–National Agricultural Statistics Service, Available online: https://www.nass.usda.gov/Publications/Todays_Reports/reports/floran19.pdf.

4. European Commission Working Document (2024, February 16). Horticultural Products Flowers and Ornamental Plants Statistic 2010–2019. DGAGRI-G2 2020. Available online: https://agriculture.ec.europa.eu/system/files/2020-06/flowers-ornamental-plants-statistics_en_0.pdf.

5. Pardossi, A., Carmassi, G., Diara, C., Incrocci, L., Maggini, R., and Massa, D. (2011). Fertigation and Substrate Management in Closed Soilless Culture, University of Pisa.

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