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Precision transcriptomics of viral foci reveals the spatial regulation of immune‐signaling genes and identifies RBOHD as an important player in the incompatible interaction between potato virus Y and potato

Whereas the activation of resistance (R) proteins has been intensively studied, the downstream signaling mechanisms leading to the restriction of the pathogen remain mostly unknown. We studied the immunity network response conditioned by the potato Ny‐1 gene against potato virus Y. We analyzed the p...

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Autores principales: Lukan, Tjaša, Pompe‐Novak, Maruša, Baebler, Špela, Tušek‐Žnidarič, Magda, Kladnik, Aleš, Križnik, Maja, Blejec, Andrej, Zagorščak, Maja, Stare, Katja, Dušak, Barbara, Coll, Anna, Pollmann, Stephan, Morgiewicz, Karolina, Hennig, Jacek, Gruden, Kristina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7692943/
https://www.ncbi.nlm.nih.gov/pubmed/32772469
http://dx.doi.org/10.1111/tpj.14953
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author Lukan, Tjaša
Pompe‐Novak, Maruša
Baebler, Špela
Tušek‐Žnidarič, Magda
Kladnik, Aleš
Križnik, Maja
Blejec, Andrej
Zagorščak, Maja
Stare, Katja
Dušak, Barbara
Coll, Anna
Pollmann, Stephan
Morgiewicz, Karolina
Hennig, Jacek
Gruden, Kristina
author_facet Lukan, Tjaša
Pompe‐Novak, Maruša
Baebler, Špela
Tušek‐Žnidarič, Magda
Kladnik, Aleš
Križnik, Maja
Blejec, Andrej
Zagorščak, Maja
Stare, Katja
Dušak, Barbara
Coll, Anna
Pollmann, Stephan
Morgiewicz, Karolina
Hennig, Jacek
Gruden, Kristina
author_sort Lukan, Tjaša
collection PubMed
description Whereas the activation of resistance (R) proteins has been intensively studied, the downstream signaling mechanisms leading to the restriction of the pathogen remain mostly unknown. We studied the immunity network response conditioned by the potato Ny‐1 gene against potato virus Y. We analyzed the processes in the cell death zone and surrounding tissue on the biochemical and gene expression levels in order to reveal the spatiotemporal regulation of the immune response. We show that the transcriptional response in the cell death zone and surrounding tissue is dependent on salicylic acid (SA). For some genes the spatiotemporal regulation is completely lost in the SA‐deficient line, whereas other genes show a different response, indicating multiple connections between hormonal signaling modules. The induction of NADPH oxidase RBOHD expression occurs specifically on the lesion border during the resistance response. In plants with silenced RBOHD, the functionality of the resistance response is perturbed and the spread of the virus is not arrested at the site of infection. RBOHD is required for the spatial accumulation of SA, and conversely RBOHD is under the transcriptional regulation of SA. Using spatially resolved RNA‐seq, we also identified spatial regulation of an UDP‐glucosyltransferase, another component in feedback activation of SA biosynthesis, thus deciphering a novel aspect of resistance signaling.
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spelling pubmed-76929432020-12-08 Precision transcriptomics of viral foci reveals the spatial regulation of immune‐signaling genes and identifies RBOHD as an important player in the incompatible interaction between potato virus Y and potato Lukan, Tjaša Pompe‐Novak, Maruša Baebler, Špela Tušek‐Žnidarič, Magda Kladnik, Aleš Križnik, Maja Blejec, Andrej Zagorščak, Maja Stare, Katja Dušak, Barbara Coll, Anna Pollmann, Stephan Morgiewicz, Karolina Hennig, Jacek Gruden, Kristina Plant J Original Articles Whereas the activation of resistance (R) proteins has been intensively studied, the downstream signaling mechanisms leading to the restriction of the pathogen remain mostly unknown. We studied the immunity network response conditioned by the potato Ny‐1 gene against potato virus Y. We analyzed the processes in the cell death zone and surrounding tissue on the biochemical and gene expression levels in order to reveal the spatiotemporal regulation of the immune response. We show that the transcriptional response in the cell death zone and surrounding tissue is dependent on salicylic acid (SA). For some genes the spatiotemporal regulation is completely lost in the SA‐deficient line, whereas other genes show a different response, indicating multiple connections between hormonal signaling modules. The induction of NADPH oxidase RBOHD expression occurs specifically on the lesion border during the resistance response. In plants with silenced RBOHD, the functionality of the resistance response is perturbed and the spread of the virus is not arrested at the site of infection. RBOHD is required for the spatial accumulation of SA, and conversely RBOHD is under the transcriptional regulation of SA. Using spatially resolved RNA‐seq, we also identified spatial regulation of an UDP‐glucosyltransferase, another component in feedback activation of SA biosynthesis, thus deciphering a novel aspect of resistance signaling. John Wiley and Sons Inc. 2020-09-01 2020-11 /pmc/articles/PMC7692943/ /pubmed/32772469 http://dx.doi.org/10.1111/tpj.14953 Text en © 2020 The Authors. The Plant Journal published by Society for Experimental Biology and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Articles
Lukan, Tjaša
Pompe‐Novak, Maruša
Baebler, Špela
Tušek‐Žnidarič, Magda
Kladnik, Aleš
Križnik, Maja
Blejec, Andrej
Zagorščak, Maja
Stare, Katja
Dušak, Barbara
Coll, Anna
Pollmann, Stephan
Morgiewicz, Karolina
Hennig, Jacek
Gruden, Kristina
Precision transcriptomics of viral foci reveals the spatial regulation of immune‐signaling genes and identifies RBOHD as an important player in the incompatible interaction between potato virus Y and potato
title Precision transcriptomics of viral foci reveals the spatial regulation of immune‐signaling genes and identifies RBOHD as an important player in the incompatible interaction between potato virus Y and potato
title_full Precision transcriptomics of viral foci reveals the spatial regulation of immune‐signaling genes and identifies RBOHD as an important player in the incompatible interaction between potato virus Y and potato
title_fullStr Precision transcriptomics of viral foci reveals the spatial regulation of immune‐signaling genes and identifies RBOHD as an important player in the incompatible interaction between potato virus Y and potato
title_full_unstemmed Precision transcriptomics of viral foci reveals the spatial regulation of immune‐signaling genes and identifies RBOHD as an important player in the incompatible interaction between potato virus Y and potato
title_short Precision transcriptomics of viral foci reveals the spatial regulation of immune‐signaling genes and identifies RBOHD as an important player in the incompatible interaction between potato virus Y and potato
title_sort precision transcriptomics of viral foci reveals the spatial regulation of immune‐signaling genes and identifies rbohd as an important player in the incompatible interaction between potato virus y and potato
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7692943/
https://www.ncbi.nlm.nih.gov/pubmed/32772469
http://dx.doi.org/10.1111/tpj.14953
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