Chitosan-Coated Fosetyl-Al Nanocrystals’ Efficacy on Nicotiana tabacum Colonized by Xylella fastidiosa

Author:

Tatulli Giuseppe1ORCID,Baldassarre Francesca23,Schiavi Daniele4,Tacconi Stefano5,Cognigni Flavio6,Costantini Francesca17,Balestra Giorgio Mariano48,Dini Luciana9,Pucci Nicoletta1,Rossi Marco610,Scala Valeria1ORCID,Ciccarella Giuseppe23,Loreti Stefania1

Affiliation:

1. Council for Agricultural Research and Economics, Research Centre for Plant Protection and Certification of Rome, 00156 Rome, Italy

2. Department of Biological and Environmental Sciences, UdR INSTM of Lecce University of Salento, Via Monteroni, 73100 Lecce, Italy

3. Institute of Nanotechnology, CNR NANOTEC, Consiglio Nazionale delle Ricerche, Via Monteroni, 73100 Lecce, Italy

4. Department of Agriculture and Forest Sciences (DAFNE), University of Tuscia, Via S. Camillo de Lellis, Snc, 01100 Viterbo, Italy

5. CarMeN Laboratory, INSERM 1060-INRAE 1397, Department of Human Nutrition, Lyon Sud Hospital, University of Lyon, Lyon, France

6. Department of Basic and Applied Sciences for Engineering (SBAI), Sapienza University of Rome, Rome, Italy

7. Department of Environmental Biology, Sapienza University of Rome, p.le A. Moro 5, 00185, Rome, Italy

8. Phytoparasites Diagnostics (PhyDia) s.r.l. Via S. Camillo Delellis Snc 01100 Viterbo, Italy

9. Department of Biology and Biotechnology “C. Darwin”, Sapienza University of Rome, Rome, Italy

10. Research Center on Nanotechnology Applied to Engineering of Sapienza (CNIS), Sapienza University of Rome, Rome, Italy

Abstract

Xylella fastidiosa ( Xf) is a quarantine plant pathogen capable of colonizing the xylem of a wide range of hosts. Currently, there is no cure able to eliminate the pathogen from a diseased plant, but several integrated strategies have been implemented for containing the spread of Xf. Nanotechnology represents an innovative strategy based on the possibility of maximizing the potential antibacterial activity by increasing the surface-to-volume ratio of nanoscale formulations. Nanoparticles based on chitosan and/or fosetyl-Al have shown different in vitro antibacterial efficacy against Xf subsp. fastidiosa ( Xff) and pauca ( Xfp). This work demonstrated the uptake of chitosan-coated fosetyl-Al nanocrystals (CH-nanoFos) by roots and their localization in the stems and leaves of Olea europaea plants. Additionally, the antibacterial activity of fosetyl-Al, nano-fosetyl, nano-chitosan, and CH-nanoFos was tested on Nicotiana tabacum cultivar SR1 (Petite Havana) inoculated with Xff, Xfp, or Xf subsp. multiplex ( Xfm). The bacterial load was evaluated with qPCR, and the results showed that CH-nanoFos was the only treatment able to reduce the colonization of Xff, Xfm, and Xfp in tobacco plants. Additionally, the area under the disease progress curve, used to assess symptom development in tobacco plants inoculated with Xff, Xfm, and Xfp and treated with CH-nanoFos, showed a reduction in symptom development. Furthermore, the twitching assay and bacterial growth under microfluidic conditions confirmed the antibacterial activity of CH-nanoFos.

Funder

Ministero delle Politiche Agricole Alimentari e Forestali

Publisher

Scientific Societies

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