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From Plant Survival Under Severe Stress to Anti-Viral Human Defense – A Perspective That Calls for Common Efforts

Reprogramming of primary virus-infected cells is the critical step that turns viral attacks harmful to humans by initiating super-spreading at cell, organism and population levels. To develop early anti-viral therapies and proactive administration, it is important to understand the very first steps...

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Autores principales: Arnholdt-Schmitt, Birgit, Mohanapriya, Gunasekaran, Bharadwaj, Revuru, Noceda, Carlos, Macedo, Elisete Santos, Sathishkumar, Ramalingam, Gupta, Kapuganti Jagadis, Sircar, Debabrata, Kumar, Sarma Rajeev, Srivastava, Shivani, Adholeya, Alok, Thiers, KarineLeitão Lima, Aziz, Shahid, Velada, Isabel, Oliveira, Manuela, Quaresma, Paulo, Achra, Arvind, Gupta, Nidhi, Kumar, Ashwani, Costa, José Hélio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8240590/
https://www.ncbi.nlm.nih.gov/pubmed/34211468
http://dx.doi.org/10.3389/fimmu.2021.673723
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author Arnholdt-Schmitt, Birgit
Mohanapriya, Gunasekaran
Bharadwaj, Revuru
Noceda, Carlos
Macedo, Elisete Santos
Sathishkumar, Ramalingam
Gupta, Kapuganti Jagadis
Sircar, Debabrata
Kumar, Sarma Rajeev
Srivastava, Shivani
Adholeya, Alok
Thiers, KarineLeitão Lima
Aziz, Shahid
Velada, Isabel
Oliveira, Manuela
Quaresma, Paulo
Achra, Arvind
Gupta, Nidhi
Kumar, Ashwani
Costa, José Hélio
author_facet Arnholdt-Schmitt, Birgit
Mohanapriya, Gunasekaran
Bharadwaj, Revuru
Noceda, Carlos
Macedo, Elisete Santos
Sathishkumar, Ramalingam
Gupta, Kapuganti Jagadis
Sircar, Debabrata
Kumar, Sarma Rajeev
Srivastava, Shivani
Adholeya, Alok
Thiers, KarineLeitão Lima
Aziz, Shahid
Velada, Isabel
Oliveira, Manuela
Quaresma, Paulo
Achra, Arvind
Gupta, Nidhi
Kumar, Ashwani
Costa, José Hélio
author_sort Arnholdt-Schmitt, Birgit
collection PubMed
description Reprogramming of primary virus-infected cells is the critical step that turns viral attacks harmful to humans by initiating super-spreading at cell, organism and population levels. To develop early anti-viral therapies and proactive administration, it is important to understand the very first steps of this process. Plant somatic embryogenesis (SE) is the earliest and most studied model for de novo programming upon severe stress that, in contrast to virus attacks, promotes individual cell and organism survival. We argued that transcript level profiles of target genes established from in vitro SE induction as reference compared to virus-induced profiles can identify differential virus traits that link to harmful reprogramming. To validate this hypothesis, we selected a standard set of genes named ‘ReprogVirus’. This approach was recently applied and published. It resulted in identifying ‘CoV-MAC-TED’, a complex trait that is promising to support combating SARS-CoV-2-induced cell reprogramming in primary infected nose and mouth cells. In this perspective, we aim to explain the rationale of our scientific approach. We are highlighting relevant background knowledge on SE, emphasize the role of alternative oxidase in plant reprogramming and resilience as a learning tool for designing human virus-defense strategies and, present the list of selected genes. As an outlook, we announce wider data collection in a ‘ReprogVirus Platform’ to support anti-viral strategy design through common efforts.
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spelling pubmed-82405902021-06-30 From Plant Survival Under Severe Stress to Anti-Viral Human Defense – A Perspective That Calls for Common Efforts Arnholdt-Schmitt, Birgit Mohanapriya, Gunasekaran Bharadwaj, Revuru Noceda, Carlos Macedo, Elisete Santos Sathishkumar, Ramalingam Gupta, Kapuganti Jagadis Sircar, Debabrata Kumar, Sarma Rajeev Srivastava, Shivani Adholeya, Alok Thiers, KarineLeitão Lima Aziz, Shahid Velada, Isabel Oliveira, Manuela Quaresma, Paulo Achra, Arvind Gupta, Nidhi Kumar, Ashwani Costa, José Hélio Front Immunol Immunology Reprogramming of primary virus-infected cells is the critical step that turns viral attacks harmful to humans by initiating super-spreading at cell, organism and population levels. To develop early anti-viral therapies and proactive administration, it is important to understand the very first steps of this process. Plant somatic embryogenesis (SE) is the earliest and most studied model for de novo programming upon severe stress that, in contrast to virus attacks, promotes individual cell and organism survival. We argued that transcript level profiles of target genes established from in vitro SE induction as reference compared to virus-induced profiles can identify differential virus traits that link to harmful reprogramming. To validate this hypothesis, we selected a standard set of genes named ‘ReprogVirus’. This approach was recently applied and published. It resulted in identifying ‘CoV-MAC-TED’, a complex trait that is promising to support combating SARS-CoV-2-induced cell reprogramming in primary infected nose and mouth cells. In this perspective, we aim to explain the rationale of our scientific approach. We are highlighting relevant background knowledge on SE, emphasize the role of alternative oxidase in plant reprogramming and resilience as a learning tool for designing human virus-defense strategies and, present the list of selected genes. As an outlook, we announce wider data collection in a ‘ReprogVirus Platform’ to support anti-viral strategy design through common efforts. Frontiers Media S.A. 2021-06-15 /pmc/articles/PMC8240590/ /pubmed/34211468 http://dx.doi.org/10.3389/fimmu.2021.673723 Text en Copyright © 2021 Arnholdt-Schmitt, Mohanapriya, Bharadwaj, Noceda, Macedo, Sathishkumar, Gupta, Sircar, Kumar, Srivastava, Adholeya, Thiers, Aziz, Velada, Oliveira, Quaresma, Achra, Gupta, Kumar and Costa https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Arnholdt-Schmitt, Birgit
Mohanapriya, Gunasekaran
Bharadwaj, Revuru
Noceda, Carlos
Macedo, Elisete Santos
Sathishkumar, Ramalingam
Gupta, Kapuganti Jagadis
Sircar, Debabrata
Kumar, Sarma Rajeev
Srivastava, Shivani
Adholeya, Alok
Thiers, KarineLeitão Lima
Aziz, Shahid
Velada, Isabel
Oliveira, Manuela
Quaresma, Paulo
Achra, Arvind
Gupta, Nidhi
Kumar, Ashwani
Costa, José Hélio
From Plant Survival Under Severe Stress to Anti-Viral Human Defense – A Perspective That Calls for Common Efforts
title From Plant Survival Under Severe Stress to Anti-Viral Human Defense – A Perspective That Calls for Common Efforts
title_full From Plant Survival Under Severe Stress to Anti-Viral Human Defense – A Perspective That Calls for Common Efforts
title_fullStr From Plant Survival Under Severe Stress to Anti-Viral Human Defense – A Perspective That Calls for Common Efforts
title_full_unstemmed From Plant Survival Under Severe Stress to Anti-Viral Human Defense – A Perspective That Calls for Common Efforts
title_short From Plant Survival Under Severe Stress to Anti-Viral Human Defense – A Perspective That Calls for Common Efforts
title_sort from plant survival under severe stress to anti-viral human defense – a perspective that calls for common efforts
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8240590/
https://www.ncbi.nlm.nih.gov/pubmed/34211468
http://dx.doi.org/10.3389/fimmu.2021.673723
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