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Biogenic VOCs Emission Profiles Associated with Plant-Pest Interaction for Phenotyping Applications

Pest attacks on plants can substantially change plants’ volatile organic compounds (VOCs) emission profiles. Comparison of VOC emission profiles between non-infected/non-infested and infected/infested plants, as well as resistant and susceptible plant cultivars, may provide cues for a deeper underst...

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Autores principales: Valencia-Ortiz, Milton, Marzougui, Afef, Zhang, Chongyuan, Bali, Sapinder, Odubiyi, Steven, Sathuvalli, Vidyasagar, Bosque-Pérez, Nilsa A., Pumphrey, Michael O., Sankaran, Sindhuja
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9269240/
https://www.ncbi.nlm.nih.gov/pubmed/35808366
http://dx.doi.org/10.3390/s22134870
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author Valencia-Ortiz, Milton
Marzougui, Afef
Zhang, Chongyuan
Bali, Sapinder
Odubiyi, Steven
Sathuvalli, Vidyasagar
Bosque-Pérez, Nilsa A.
Pumphrey, Michael O.
Sankaran, Sindhuja
author_facet Valencia-Ortiz, Milton
Marzougui, Afef
Zhang, Chongyuan
Bali, Sapinder
Odubiyi, Steven
Sathuvalli, Vidyasagar
Bosque-Pérez, Nilsa A.
Pumphrey, Michael O.
Sankaran, Sindhuja
author_sort Valencia-Ortiz, Milton
collection PubMed
description Pest attacks on plants can substantially change plants’ volatile organic compounds (VOCs) emission profiles. Comparison of VOC emission profiles between non-infected/non-infested and infected/infested plants, as well as resistant and susceptible plant cultivars, may provide cues for a deeper understanding of plant-pest interactions and associated resistance. Furthermore, the identification of biomarkers—specific biogenic VOCs—associated with the resistance can serve as a non-destructive and rapid tool for phenotyping applications. This research aims to compare the VOCs emission profiles under diverse conditions to identify constitutive (also referred to as green VOCs) and induced (resulting from biotic/abiotic stress) VOCs released in potatoes and wheat. In the first study, wild potato Solanum bulbocastanum (accession# 22; SB22) was inoculated with Meloidogyne chitwoodi race 1 (Mc1), and Mc1 pathotype Roza (SB22 is resistant to Mc1 and susceptible to pathotype Roza), and VOCs emission profiles were collected using gas chromatography-flame ionization detection (GC-FID) at different time points. Similarly, in the second study, the VOCs emission profiles of resistant (‘Hollis’) and susceptible (‘Alturas’) wheat cultivars infested with Hessian fly insects were evaluated using the GC-FID system. In both studies, in addition to variable plant responses (susceptibility to pests), control treatments (non-inoculated or non-infested) were used to compare the VOCs emission profiles resulting from differences in stress conditions. The common VOC peaks (constitutive VOCs) between control and infected/infested samples, and unique VOC peaks (induced VOCs) presented only in infected/infested samples were analyzed. In the potato-nematode study, the highest unique peak was found two days after inoculation (DAI) for SB22 inoculated with Mc1 (resistance response). The most common VOC peaks in SB22 inoculated with both Mc1 and Roza were found at 5 and 10 DAI. In the wheat-insect study, only the Hollis showed unique VOC peaks. Interestingly, both cultivars released the same common VOCs between control and infected samples, with only a difference in VOC average peak intensity at 22.4 min retention time where the average intensity was 4.3 times higher in the infested samples of Hollis than infested samples of Alturas. These studies demonstrate the potential of plant VOCs to serve as a rapid phenotyping tool to assess resistance levels in different crops.
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spelling pubmed-92692402022-07-09 Biogenic VOCs Emission Profiles Associated with Plant-Pest Interaction for Phenotyping Applications Valencia-Ortiz, Milton Marzougui, Afef Zhang, Chongyuan Bali, Sapinder Odubiyi, Steven Sathuvalli, Vidyasagar Bosque-Pérez, Nilsa A. Pumphrey, Michael O. Sankaran, Sindhuja Sensors (Basel) Brief Report Pest attacks on plants can substantially change plants’ volatile organic compounds (VOCs) emission profiles. Comparison of VOC emission profiles between non-infected/non-infested and infected/infested plants, as well as resistant and susceptible plant cultivars, may provide cues for a deeper understanding of plant-pest interactions and associated resistance. Furthermore, the identification of biomarkers—specific biogenic VOCs—associated with the resistance can serve as a non-destructive and rapid tool for phenotyping applications. This research aims to compare the VOCs emission profiles under diverse conditions to identify constitutive (also referred to as green VOCs) and induced (resulting from biotic/abiotic stress) VOCs released in potatoes and wheat. In the first study, wild potato Solanum bulbocastanum (accession# 22; SB22) was inoculated with Meloidogyne chitwoodi race 1 (Mc1), and Mc1 pathotype Roza (SB22 is resistant to Mc1 and susceptible to pathotype Roza), and VOCs emission profiles were collected using gas chromatography-flame ionization detection (GC-FID) at different time points. Similarly, in the second study, the VOCs emission profiles of resistant (‘Hollis’) and susceptible (‘Alturas’) wheat cultivars infested with Hessian fly insects were evaluated using the GC-FID system. In both studies, in addition to variable plant responses (susceptibility to pests), control treatments (non-inoculated or non-infested) were used to compare the VOCs emission profiles resulting from differences in stress conditions. The common VOC peaks (constitutive VOCs) between control and infected/infested samples, and unique VOC peaks (induced VOCs) presented only in infected/infested samples were analyzed. In the potato-nematode study, the highest unique peak was found two days after inoculation (DAI) for SB22 inoculated with Mc1 (resistance response). The most common VOC peaks in SB22 inoculated with both Mc1 and Roza were found at 5 and 10 DAI. In the wheat-insect study, only the Hollis showed unique VOC peaks. Interestingly, both cultivars released the same common VOCs between control and infected samples, with only a difference in VOC average peak intensity at 22.4 min retention time where the average intensity was 4.3 times higher in the infested samples of Hollis than infested samples of Alturas. These studies demonstrate the potential of plant VOCs to serve as a rapid phenotyping tool to assess resistance levels in different crops. MDPI 2022-06-28 /pmc/articles/PMC9269240/ /pubmed/35808366 http://dx.doi.org/10.3390/s22134870 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Brief Report
Valencia-Ortiz, Milton
Marzougui, Afef
Zhang, Chongyuan
Bali, Sapinder
Odubiyi, Steven
Sathuvalli, Vidyasagar
Bosque-Pérez, Nilsa A.
Pumphrey, Michael O.
Sankaran, Sindhuja
Biogenic VOCs Emission Profiles Associated with Plant-Pest Interaction for Phenotyping Applications
title Biogenic VOCs Emission Profiles Associated with Plant-Pest Interaction for Phenotyping Applications
title_full Biogenic VOCs Emission Profiles Associated with Plant-Pest Interaction for Phenotyping Applications
title_fullStr Biogenic VOCs Emission Profiles Associated with Plant-Pest Interaction for Phenotyping Applications
title_full_unstemmed Biogenic VOCs Emission Profiles Associated with Plant-Pest Interaction for Phenotyping Applications
title_short Biogenic VOCs Emission Profiles Associated with Plant-Pest Interaction for Phenotyping Applications
title_sort biogenic vocs emission profiles associated with plant-pest interaction for phenotyping applications
topic Brief Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9269240/
https://www.ncbi.nlm.nih.gov/pubmed/35808366
http://dx.doi.org/10.3390/s22134870
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