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The gibberellic acid derived from the plastidial MEP pathway is involved in the accumulation of Bamboo mosaic virus

A gene upregulated in Nicotiana benthamiana after Bamboo mosaic virus (BaMV) infection was revealed as 1‐deoxy‐d‐xylulose‐5‐phosphate reductoisomerase (NbDXR). DXR is the key enzyme in the 2‐C‐methyl‐d‐erythritol‐4‐phosphate (MEP) pathway that catalyzes the conversion of 1‐deoxy‐d‐xylulose 5‐phospha...

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Autores principales: Huang, Ying‐Ping, Chen, I‐Hsuan, Kao, Yu‐Shun, Hsu, Yau‐Heiu, Tsai, Ching‐Hsiu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9543464/
https://www.ncbi.nlm.nih.gov/pubmed/35524450
http://dx.doi.org/10.1111/nph.18210
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author Huang, Ying‐Ping
Chen, I‐Hsuan
Kao, Yu‐Shun
Hsu, Yau‐Heiu
Tsai, Ching‐Hsiu
author_facet Huang, Ying‐Ping
Chen, I‐Hsuan
Kao, Yu‐Shun
Hsu, Yau‐Heiu
Tsai, Ching‐Hsiu
author_sort Huang, Ying‐Ping
collection PubMed
description A gene upregulated in Nicotiana benthamiana after Bamboo mosaic virus (BaMV) infection was revealed as 1‐deoxy‐d‐xylulose‐5‐phosphate reductoisomerase (NbDXR). DXR is the key enzyme in the 2‐C‐methyl‐d‐erythritol‐4‐phosphate (MEP) pathway that catalyzes the conversion of 1‐deoxy‐d‐xylulose 5‐phosphate to 2‐C‐methyl‐d‐erythritol‐4‐phosphate. Knockdown and overexpression of NbDXR followed by BaMV inoculation revealed that NbDXR is involved in BaMV accumulation. Treating leaves with fosmidomycin, an inhibitor of DXR function, reduced BaMV accumulation. Subcellular localization confirmed that DXR is a chloroplast‐localized protein by confocal microscopy. Furthermore, knockdown of 1‐hydroxy‐2‐methyl‐2‐(E)‐butenyl‐4‐diphosphate reductase, one of the enzymes in the MEP pathway, also reduced BaMV accumulation. The accumulation of BaMV increased significantly in protoplasts treated with isopentenyl pyrophosphate. Thus, the metabolites of the MEP pathway could be involved in BaMV infection. To identify the critical components involved in BaMV accumulation, we knocked down the crucial enzyme of isoprenoid synthesis, NbGGPPS11 or NbGGPPS2. Only NbGGPPS2 was involved in BaMV infection. The geranylgeranyl pyrophosphate (GGPP) synthesized by NbGGPPS2 is known for gibberellin synthesis. We confirmed this result by supplying gibberellic acid exogenously on leaves, which increased BaMV accumulation. The de novo synthesis of gibberellic acid could assist BaMV accumulation.
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spelling pubmed-95434642022-10-14 The gibberellic acid derived from the plastidial MEP pathway is involved in the accumulation of Bamboo mosaic virus Huang, Ying‐Ping Chen, I‐Hsuan Kao, Yu‐Shun Hsu, Yau‐Heiu Tsai, Ching‐Hsiu New Phytol Research A gene upregulated in Nicotiana benthamiana after Bamboo mosaic virus (BaMV) infection was revealed as 1‐deoxy‐d‐xylulose‐5‐phosphate reductoisomerase (NbDXR). DXR is the key enzyme in the 2‐C‐methyl‐d‐erythritol‐4‐phosphate (MEP) pathway that catalyzes the conversion of 1‐deoxy‐d‐xylulose 5‐phosphate to 2‐C‐methyl‐d‐erythritol‐4‐phosphate. Knockdown and overexpression of NbDXR followed by BaMV inoculation revealed that NbDXR is involved in BaMV accumulation. Treating leaves with fosmidomycin, an inhibitor of DXR function, reduced BaMV accumulation. Subcellular localization confirmed that DXR is a chloroplast‐localized protein by confocal microscopy. Furthermore, knockdown of 1‐hydroxy‐2‐methyl‐2‐(E)‐butenyl‐4‐diphosphate reductase, one of the enzymes in the MEP pathway, also reduced BaMV accumulation. The accumulation of BaMV increased significantly in protoplasts treated with isopentenyl pyrophosphate. Thus, the metabolites of the MEP pathway could be involved in BaMV infection. To identify the critical components involved in BaMV accumulation, we knocked down the crucial enzyme of isoprenoid synthesis, NbGGPPS11 or NbGGPPS2. Only NbGGPPS2 was involved in BaMV infection. The geranylgeranyl pyrophosphate (GGPP) synthesized by NbGGPPS2 is known for gibberellin synthesis. We confirmed this result by supplying gibberellic acid exogenously on leaves, which increased BaMV accumulation. The de novo synthesis of gibberellic acid could assist BaMV accumulation. John Wiley and Sons Inc. 2022-06-22 2022-08 /pmc/articles/PMC9543464/ /pubmed/35524450 http://dx.doi.org/10.1111/nph.18210 Text en © 2022 The Authors. New Phytologist © 2022 New Phytologist Foundation https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Huang, Ying‐Ping
Chen, I‐Hsuan
Kao, Yu‐Shun
Hsu, Yau‐Heiu
Tsai, Ching‐Hsiu
The gibberellic acid derived from the plastidial MEP pathway is involved in the accumulation of Bamboo mosaic virus
title The gibberellic acid derived from the plastidial MEP pathway is involved in the accumulation of Bamboo mosaic virus
title_full The gibberellic acid derived from the plastidial MEP pathway is involved in the accumulation of Bamboo mosaic virus
title_fullStr The gibberellic acid derived from the plastidial MEP pathway is involved in the accumulation of Bamboo mosaic virus
title_full_unstemmed The gibberellic acid derived from the plastidial MEP pathway is involved in the accumulation of Bamboo mosaic virus
title_short The gibberellic acid derived from the plastidial MEP pathway is involved in the accumulation of Bamboo mosaic virus
title_sort gibberellic acid derived from the plastidial mep pathway is involved in the accumulation of bamboo mosaic virus
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9543464/
https://www.ncbi.nlm.nih.gov/pubmed/35524450
http://dx.doi.org/10.1111/nph.18210
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