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The Memory of Rice Response to Spaceflight Stress: From the Perspective of Metabolomics and Proteomics

The stress response of plants to spaceflight has been confirmed in contemporary plants, and plants retained the memory of spaceflight through methylation reaction. However, how the progeny plants adapt to this cross-generational stress memory was rarely reported. Here, we used the ShiJian-10 retract...

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Autores principales: Zeng, Deyong, Cui, Jie, Yin, Yishu, Xiong, Yi, Yu, Wenchen, Zhao, Haitian, Guan, Shuanghong, Cheng, Dayou, Sun, Yeqing, Lu, Weihong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8954569/
https://www.ncbi.nlm.nih.gov/pubmed/35328810
http://dx.doi.org/10.3390/ijms23063390
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author Zeng, Deyong
Cui, Jie
Yin, Yishu
Xiong, Yi
Yu, Wenchen
Zhao, Haitian
Guan, Shuanghong
Cheng, Dayou
Sun, Yeqing
Lu, Weihong
author_facet Zeng, Deyong
Cui, Jie
Yin, Yishu
Xiong, Yi
Yu, Wenchen
Zhao, Haitian
Guan, Shuanghong
Cheng, Dayou
Sun, Yeqing
Lu, Weihong
author_sort Zeng, Deyong
collection PubMed
description The stress response of plants to spaceflight has been confirmed in contemporary plants, and plants retained the memory of spaceflight through methylation reaction. However, how the progeny plants adapt to this cross-generational stress memory was rarely reported. Here, we used the ShiJian-10 retractable satellite carrying Dongnong416 rice seeds for a 12.5-day on-orbit flight and planted the F2 generation after returning to the ground. We evaluated the agronomic traits of the F2 generation plants and found that the F2 generation plants had no significant differences in plant height and number of tillers. Next, the redox state in F2 plants was evaluated, and it was found that the spaceflight broke the redox state of the F2 generation rice. In order to further illustrate the stress response caused by this redox state imbalance, we conducted proteomics and metabolomics analysis. Proteomics results showed that the redox process in F2 rice interacts with signal transduction, stress response, and other pathways, causing genome instability in the plant, leading to transcription, post-transcriptional modification, protein synthesis, protein modification, and degradation processes were suppressed. The metabolomics results showed that the metabolism of the F2 generation plants was reshaped. These metabolic pathways mainly included amino acid metabolism, sugar metabolism, cofactor and vitamin metabolism, purine metabolism, phenylpropane biosynthesis, and flavonoid metabolism. These metabolic pathways constituted a new metabolic network. This study confirmed that spaceflight affected the metabolic changes in offspring rice, which would help better understand the adaptation mechanism of plants to the space environment.
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spelling pubmed-89545692022-03-26 The Memory of Rice Response to Spaceflight Stress: From the Perspective of Metabolomics and Proteomics Zeng, Deyong Cui, Jie Yin, Yishu Xiong, Yi Yu, Wenchen Zhao, Haitian Guan, Shuanghong Cheng, Dayou Sun, Yeqing Lu, Weihong Int J Mol Sci Article The stress response of plants to spaceflight has been confirmed in contemporary plants, and plants retained the memory of spaceflight through methylation reaction. However, how the progeny plants adapt to this cross-generational stress memory was rarely reported. Here, we used the ShiJian-10 retractable satellite carrying Dongnong416 rice seeds for a 12.5-day on-orbit flight and planted the F2 generation after returning to the ground. We evaluated the agronomic traits of the F2 generation plants and found that the F2 generation plants had no significant differences in plant height and number of tillers. Next, the redox state in F2 plants was evaluated, and it was found that the spaceflight broke the redox state of the F2 generation rice. In order to further illustrate the stress response caused by this redox state imbalance, we conducted proteomics and metabolomics analysis. Proteomics results showed that the redox process in F2 rice interacts with signal transduction, stress response, and other pathways, causing genome instability in the plant, leading to transcription, post-transcriptional modification, protein synthesis, protein modification, and degradation processes were suppressed. The metabolomics results showed that the metabolism of the F2 generation plants was reshaped. These metabolic pathways mainly included amino acid metabolism, sugar metabolism, cofactor and vitamin metabolism, purine metabolism, phenylpropane biosynthesis, and flavonoid metabolism. These metabolic pathways constituted a new metabolic network. This study confirmed that spaceflight affected the metabolic changes in offspring rice, which would help better understand the adaptation mechanism of plants to the space environment. MDPI 2022-03-21 /pmc/articles/PMC8954569/ /pubmed/35328810 http://dx.doi.org/10.3390/ijms23063390 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 Article
Zeng, Deyong
Cui, Jie
Yin, Yishu
Xiong, Yi
Yu, Wenchen
Zhao, Haitian
Guan, Shuanghong
Cheng, Dayou
Sun, Yeqing
Lu, Weihong
The Memory of Rice Response to Spaceflight Stress: From the Perspective of Metabolomics and Proteomics
title The Memory of Rice Response to Spaceflight Stress: From the Perspective of Metabolomics and Proteomics
title_full The Memory of Rice Response to Spaceflight Stress: From the Perspective of Metabolomics and Proteomics
title_fullStr The Memory of Rice Response to Spaceflight Stress: From the Perspective of Metabolomics and Proteomics
title_full_unstemmed The Memory of Rice Response to Spaceflight Stress: From the Perspective of Metabolomics and Proteomics
title_short The Memory of Rice Response to Spaceflight Stress: From the Perspective of Metabolomics and Proteomics
title_sort memory of rice response to spaceflight stress: from the perspective of metabolomics and proteomics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8954569/
https://www.ncbi.nlm.nih.gov/pubmed/35328810
http://dx.doi.org/10.3390/ijms23063390
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