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  5. Physiological Response of Olive Trees Under Xylella fastidiosa Infection and Thymol Therapy Monitored Through Advanced IoT Sensors

Physiological Response of Olive Trees Under Xylella fastidiosa Infection and Thymol Therapy Monitored Through Advanced IoT Sensors

Author(s)
Cagnarini, Claudia
De Angelis, Paolo  
Liberati, Dario
Valentini, Riccardo  
Falanga, Valentina
more
Date Issued
May 2, 2025
Type
article
text::journal::journal article
Volume
14
Issue
9
DOI
10.3390/plants14091380
ISSN
2223-7747
Journal
PLANTS  
Abstract
Since its first detection in 2013, Xylella fastidiosa subsp. pauca (Xfp) has caused a devastating Olive Quick Decline Syndrome (OQDS) outbreak in Southern Italy. Effective disease surveillance and treatment strategies are urgently needed to mitigate its impact. This study investigates the short-term (1.5 years) effects of thymol-based treatments on infected olive trees of the susceptible cultivar Cellina di Nardò in two orchards in Salento, Apulia region. Twenty trees per trial received a 3% thymol solution either alone or encapsulated in a cellulose nanoparticle carrier. Over two years, sap flux density and canopy-transmitted solar radiation were monitored using TreeTalker sensors, and spectral greenness indices were calculated. Xfp cell concentrations in plant tissues were quantified via qPCR. Neither thymol treatment halted disease progression nor significantly reduced bacterial load, though the Xfp cell concentration reduction increased over time in the preventive trial. Symptomatic trees exhibited increased sap flux density, though the treatment mitigated this effect in the curative trial. Greenness indices remained lower in infected trees, but the response to symptom severity was delayed. These findings underscore the need for longer-term studies, investigation of synergistic effects with other phytocompounds, and integration of real-time sensor data into adaptive disease management protocols.
Subjects

spectral transmittanc...

sap velocity

TreeTalkers

proximity sensors

nanoparticles

bacterial plant disea...

active natural molecu...

Xfp epidemic

Apulia region

Handle
https://dspace.unitus.it/handle/2067/65254
File(s)
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plants-14-01380-v2.pdf

Size

7.56 MB

Format

Adobe PDF

Checksum (MD5)

b8c57b32922f4b08b6b8678454a3d65d

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