Temporal behavior of wheat – Puccinia striiformis interaction prompted defense-responsive genes
Wheat stripe rust caused by Puccinia striiformis Westend. f.sp. tritici (Pst) is a global threat to wheat production. Genetic modification of defense-responsive factors in wheat rust interactions could help devise strategies to control stripe rust on wheat. This experiment studied the interaction be...
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Format: | Article |
Language: | English |
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Taylor & Francis Group
2022-12-01
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Series: | Journal of Plant Interactions |
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Online Access: | https://www.tandfonline.com/doi/10.1080/17429145.2022.2082570 |
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author | Charu Lata Pramod Prasad O. P. Gangwar Sneha Adhikari Rajni Kant Thakur Siddanna Savadi Kuldeep Kumar Subodh Kumar G. P. Singh S. C. Bhardwaj |
author_facet | Charu Lata Pramod Prasad O. P. Gangwar Sneha Adhikari Rajni Kant Thakur Siddanna Savadi Kuldeep Kumar Subodh Kumar G. P. Singh S. C. Bhardwaj |
author_sort | Charu Lata |
collection | DOAJ |
description | Wheat stripe rust caused by Puccinia striiformis Westend. f.sp. tritici (Pst) is a global threat to wheat production. Genetic modification of defense-responsive factors in wheat rust interactions could help devise strategies to control stripe rust on wheat. This experiment studied the interaction between Pst pathotype 78S84 in PBW343 and FLW-3 by evaluating the quantitative temporal transcription profiles of defense-related genes at different time points. This is the first attempt to exhibit inter-connections among different proteins and depict a hypothetical model for the mechanism of R gene-mediated resistance. Transcript levels of LTP, AQP1, PR1, PR2, PR4, and PR10 were relatively higher under compatible interaction, while under incompatible interaction, transcript levels of COMT1, PRA2, WCAB, and PR9 were significantly high. This study projected the role of defense-responsive genes, inter-networking of proteins, and R gene-mediated resistance between wheat and stripe rust. |
first_indexed | 2024-12-12T07:42:35Z |
format | Article |
id | doaj.art-cca97126c2724f37bdfe2da3d2f544ad |
institution | Directory Open Access Journal |
issn | 1742-9145 1742-9153 |
language | English |
last_indexed | 2024-12-12T07:42:35Z |
publishDate | 2022-12-01 |
publisher | Taylor & Francis Group |
record_format | Article |
series | Journal of Plant Interactions |
spelling | doaj.art-cca97126c2724f37bdfe2da3d2f544ad2022-12-22T00:32:44ZengTaylor & Francis GroupJournal of Plant Interactions1742-91451742-91532022-12-0117167468410.1080/17429145.2022.2082570Temporal behavior of wheat – Puccinia striiformis interaction prompted defense-responsive genesCharu Lata0Pramod Prasad1O. P. Gangwar2Sneha Adhikari3Rajni Kant Thakur4Siddanna Savadi5Kuldeep Kumar6Subodh Kumar7G. P. Singh8S. C. Bhardwaj9ICAR-IIWBR, Regional Station, Shimla, IndiaICAR-IIWBR, Regional Station, Shimla, IndiaICAR-IIWBR, Regional Station, Shimla, IndiaICAR-IIWBR, Regional Station, Shimla, IndiaICAR-IIWBR, Regional Station, Shimla, IndiaICAR-Directorate of Cashew Research, Puttur, IndiaICAR-Indian Institute of Pulses Research, Kanpur, IndiaICAR-IIWBR, Regional Station, Shimla, IndiaICAR-Indian Institute of Wheat and Barley Research, Karnal, IndiaICAR-IIWBR, Regional Station, Shimla, IndiaWheat stripe rust caused by Puccinia striiformis Westend. f.sp. tritici (Pst) is a global threat to wheat production. Genetic modification of defense-responsive factors in wheat rust interactions could help devise strategies to control stripe rust on wheat. This experiment studied the interaction between Pst pathotype 78S84 in PBW343 and FLW-3 by evaluating the quantitative temporal transcription profiles of defense-related genes at different time points. This is the first attempt to exhibit inter-connections among different proteins and depict a hypothetical model for the mechanism of R gene-mediated resistance. Transcript levels of LTP, AQP1, PR1, PR2, PR4, and PR10 were relatively higher under compatible interaction, while under incompatible interaction, transcript levels of COMT1, PRA2, WCAB, and PR9 were significantly high. This study projected the role of defense-responsive genes, inter-networking of proteins, and R gene-mediated resistance between wheat and stripe rust.https://www.tandfonline.com/doi/10.1080/17429145.2022.2082570Triticum aestivum LPuccinia striiformisdefense-responsive genesgene expressioncompatible and incompatible interaction |
spellingShingle | Charu Lata Pramod Prasad O. P. Gangwar Sneha Adhikari Rajni Kant Thakur Siddanna Savadi Kuldeep Kumar Subodh Kumar G. P. Singh S. C. Bhardwaj Temporal behavior of wheat – Puccinia striiformis interaction prompted defense-responsive genes Journal of Plant Interactions Triticum aestivum L Puccinia striiformis defense-responsive genes gene expression compatible and incompatible interaction |
title | Temporal behavior of wheat – Puccinia striiformis interaction prompted defense-responsive genes |
title_full | Temporal behavior of wheat – Puccinia striiformis interaction prompted defense-responsive genes |
title_fullStr | Temporal behavior of wheat – Puccinia striiformis interaction prompted defense-responsive genes |
title_full_unstemmed | Temporal behavior of wheat – Puccinia striiformis interaction prompted defense-responsive genes |
title_short | Temporal behavior of wheat – Puccinia striiformis interaction prompted defense-responsive genes |
title_sort | temporal behavior of wheat puccinia striiformis interaction prompted defense responsive genes |
topic | Triticum aestivum L Puccinia striiformis defense-responsive genes gene expression compatible and incompatible interaction |
url | https://www.tandfonline.com/doi/10.1080/17429145.2022.2082570 |
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