Leaf Development Monitoring and Early Detection of Water Deficiency by Low Field Nuclear Magnetic Resonance Relaxation in Nicotiana tabacum Plants

Drought is the main abiotic stress worldwide affecting harvest quality and quantity of numerous crops. To enable better water management, low field NMR (nuclear magnetic resonance) relaxometry was assessed as a developmental marker and a new method for early detection of water deficiency. The effect...

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Main Authors: Clément Sorin, François Mariette, Maja Musse, Laurent Leport, Florence Cruz, Jean-Claude Yvin
Format: Article
Language:English
Published: MDPI AG 2018-06-01
Series:Applied Sciences
Subjects:
T2
Online Access:http://www.mdpi.com/2076-3417/8/6/943
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spelling doaj-499cb0b62f43483ea4fd297c09f86d172020-11-25T00:57:19ZengMDPI AGApplied Sciences2076-34172018-06-018694310.3390/app8060943app8060943Leaf Development Monitoring and Early Detection of Water Deficiency by Low Field Nuclear Magnetic Resonance Relaxation in Nicotiana tabacum PlantsClément Sorin0François Mariette1Maja Musse2Laurent Leport3Florence Cruz4Jean-Claude Yvin5Irstea, UR OPAALE, 17 Avenue de Cucillé-CS 64427, F-35044 Rennes, FranceIrstea, UR OPAALE, 17 Avenue de Cucillé-CS 64427, F-35044 Rennes, FranceIrstea, UR OPAALE, 17 Avenue de Cucillé-CS 64427, F-35044 Rennes, FranceUniversity Bretagne Loire, F-35044 Rennes, FranceAgro Innovation International, Centre Mondial de l’Innovation, Groupe Roullier, F-35401 St Malo, FranceAgro Innovation International, Centre Mondial de l’Innovation, Groupe Roullier, F-35401 St Malo, FranceDrought is the main abiotic stress worldwide affecting harvest quality and quantity of numerous crops. To enable better water management, low field NMR (nuclear magnetic resonance) relaxometry was assessed as a developmental marker and a new method for early detection of water deficiency. The effect of a foliar biostimulant against water stress was also investigated. Two leaves of different ranks (four and eight) were studied. The leaves of different ranks were characterized by different NMR T2 spectra which validated the ability of NMR to describe the developmental stage of tobacco. Results also showed that T2 NMR relaxation spectra allow the detection of mild water stress (80% of the field capacity) through the precise characterization of the leaf water status while other water stress markers (relative water content, photosynthetic related parameters…) were not yet impacted. The agricultural impact of the mild water stress was determined through the nitrogen rate in shoots and amino acids assay six weeks after the beginning of the stress and results shows that foliar application of biostimulant limits the negative consequences of drought. Our results demonstrate the sensitivity of NMR to detect slight changes triggered in the leaf by water stress at the tissue level.http://www.mdpi.com/2076-3417/8/6/943leaf structuredroughtT2transverse relaxationbiostimulantleaf development
collection DOAJ
language English
format Article
sources DOAJ
author Clément Sorin
François Mariette
Maja Musse
Laurent Leport
Florence Cruz
Jean-Claude Yvin
spellingShingle Clément Sorin
François Mariette
Maja Musse
Laurent Leport
Florence Cruz
Jean-Claude Yvin
Leaf Development Monitoring and Early Detection of Water Deficiency by Low Field Nuclear Magnetic Resonance Relaxation in Nicotiana tabacum Plants
Applied Sciences
leaf structure
drought
T2
transverse relaxation
biostimulant
leaf development
author_facet Clément Sorin
François Mariette
Maja Musse
Laurent Leport
Florence Cruz
Jean-Claude Yvin
author_sort Clément Sorin
title Leaf Development Monitoring and Early Detection of Water Deficiency by Low Field Nuclear Magnetic Resonance Relaxation in Nicotiana tabacum Plants
title_short Leaf Development Monitoring and Early Detection of Water Deficiency by Low Field Nuclear Magnetic Resonance Relaxation in Nicotiana tabacum Plants
title_full Leaf Development Monitoring and Early Detection of Water Deficiency by Low Field Nuclear Magnetic Resonance Relaxation in Nicotiana tabacum Plants
title_fullStr Leaf Development Monitoring and Early Detection of Water Deficiency by Low Field Nuclear Magnetic Resonance Relaxation in Nicotiana tabacum Plants
title_full_unstemmed Leaf Development Monitoring and Early Detection of Water Deficiency by Low Field Nuclear Magnetic Resonance Relaxation in Nicotiana tabacum Plants
title_sort leaf development monitoring and early detection of water deficiency by low field nuclear magnetic resonance relaxation in nicotiana tabacum plants
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2018-06-01
description Drought is the main abiotic stress worldwide affecting harvest quality and quantity of numerous crops. To enable better water management, low field NMR (nuclear magnetic resonance) relaxometry was assessed as a developmental marker and a new method for early detection of water deficiency. The effect of a foliar biostimulant against water stress was also investigated. Two leaves of different ranks (four and eight) were studied. The leaves of different ranks were characterized by different NMR T2 spectra which validated the ability of NMR to describe the developmental stage of tobacco. Results also showed that T2 NMR relaxation spectra allow the detection of mild water stress (80% of the field capacity) through the precise characterization of the leaf water status while other water stress markers (relative water content, photosynthetic related parameters…) were not yet impacted. The agricultural impact of the mild water stress was determined through the nitrogen rate in shoots and amino acids assay six weeks after the beginning of the stress and results shows that foliar application of biostimulant limits the negative consequences of drought. Our results demonstrate the sensitivity of NMR to detect slight changes triggered in the leaf by water stress at the tissue level.
topic leaf structure
drought
T2
transverse relaxation
biostimulant
leaf development
url http://www.mdpi.com/2076-3417/8/6/943
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