One of the main impacts of climate change on agriculture production is the dramatic increase of saline (Na+) content in substrate, that will impair crop performance and productivity. Here we demonstrate how the application of smart technologies such as an in vivo sensor, termed bioristor, allows to continuously monitor in real‑time the dynamic changes of ion concentration in the sap of Arundo donax L. (common name giant reed or giant cane), when exposed to a progressive salinity stress. Data collected in vivo by bioristor sensors inserted at two different heights into A. donax stems enabled us to detect the early phases of stress response upon increasing salinity. Indeed, the continuous time‑ series of data recorded by the bioristor returned a specific signal which correlated with Na+ content in leaves of Na‑stressed plants, opening a new perspective for its application as a tool for in vivo plant phenotyping and selection of genotypes more suitable for the exploitation of saline soils.

Real‑time monitoring of Arundo donax response to saline stress through the application of in vivo sensing technology / Janni Michela, Cocozza Claudia, Brilli Federico, Pignattelli Sara, Vurro Filippo, Coppede Nicola, Bettelli Manuele, Calestani Davide, Francesco Loreto, Andrea Zappettini. - In: SCIENTIFIC REPORTS. - ISSN 2045-2322. - ELETTRONICO. - (2021), pp. 1-11.

Real‑time monitoring of Arundo donax response to saline stress through the application of in vivo sensing technology

Cocozza Claudia;
2021

Abstract

One of the main impacts of climate change on agriculture production is the dramatic increase of saline (Na+) content in substrate, that will impair crop performance and productivity. Here we demonstrate how the application of smart technologies such as an in vivo sensor, termed bioristor, allows to continuously monitor in real‑time the dynamic changes of ion concentration in the sap of Arundo donax L. (common name giant reed or giant cane), when exposed to a progressive salinity stress. Data collected in vivo by bioristor sensors inserted at two different heights into A. donax stems enabled us to detect the early phases of stress response upon increasing salinity. Indeed, the continuous time‑ series of data recorded by the bioristor returned a specific signal which correlated with Na+ content in leaves of Na‑stressed plants, opening a new perspective for its application as a tool for in vivo plant phenotyping and selection of genotypes more suitable for the exploitation of saline soils.
2021
1
11
Janni Michela, Cocozza Claudia, Brilli Federico, Pignattelli Sara, Vurro Filippo, Coppede Nicola, Bettelli Manuele, Calestani Davide, Francesco Loreto...espandi
File in questo prodotto:
File Dimensione Formato  
2021_Janni_Scientific_Reports.pdf

accesso aperto

Tipologia: Pdf editoriale (Version of record)
Licenza: Open Access
Dimensione 2.05 MB
Formato Adobe PDF
2.05 MB Adobe PDF

I documenti in FLORE sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1243511
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 18
  • ???jsp.display-item.citation.isi??? 19
social impact