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The genome and lifestage-specific transcriptomes of a plant-parasitic nematode and its host reveal susceptibility genes involved in trans-kingdom synthesis of vitamin B5

Plant-parasitic nematodes are a major threat to crop production in all agricultural systems. The scarcity of classical resistance genes highlights a pressing need to find new ways to develop nematode-resistant germplasm. Here, we sequence and assemble a high-quality phased genome of the model cyst n...

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Autores principales: Siddique, Shahid, Radakovic, Zoran S., Hiltl, Clarissa, Pellegrin, Clement, Baum, Thomas J., Beasley, Helen, Bent, Andrew F., Chitambo, Oliver, Chopra, Divykriti, Danchin, Etienne G. J., Grenier, Eric, Habash, Samer S., Hasan, M. Shamim, Helder, Johannes, Hewezi, Tarek, Holbein, Julia, Holterman, Martijn, Janakowski, Sławomir, Koutsovoulos, Georgios D., Kranse, Olaf P., Lozano-Torres, Jose L., Maier, Tom R., Masonbrink, Rick E., Mendy, Badou, Riemer, Esther, Sobczak, Mirosław, Sonawala, Unnati, Sterken, Mark G., Thorpe, Peter, van Steenbrugge, Joris J. M., Zahid, Nageena, Grundler, Florian, Eves-van den Akker, Sebastian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9582021/
https://www.ncbi.nlm.nih.gov/pubmed/36261416
http://dx.doi.org/10.1038/s41467-022-33769-w
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author Siddique, Shahid
Radakovic, Zoran S.
Hiltl, Clarissa
Pellegrin, Clement
Baum, Thomas J.
Beasley, Helen
Bent, Andrew F.
Chitambo, Oliver
Chopra, Divykriti
Danchin, Etienne G. J.
Grenier, Eric
Habash, Samer S.
Hasan, M. Shamim
Helder, Johannes
Hewezi, Tarek
Holbein, Julia
Holterman, Martijn
Janakowski, Sławomir
Koutsovoulos, Georgios D.
Kranse, Olaf P.
Lozano-Torres, Jose L.
Maier, Tom R.
Masonbrink, Rick E.
Mendy, Badou
Riemer, Esther
Sobczak, Mirosław
Sonawala, Unnati
Sterken, Mark G.
Thorpe, Peter
van Steenbrugge, Joris J. M.
Zahid, Nageena
Grundler, Florian
Eves-van den Akker, Sebastian
author_facet Siddique, Shahid
Radakovic, Zoran S.
Hiltl, Clarissa
Pellegrin, Clement
Baum, Thomas J.
Beasley, Helen
Bent, Andrew F.
Chitambo, Oliver
Chopra, Divykriti
Danchin, Etienne G. J.
Grenier, Eric
Habash, Samer S.
Hasan, M. Shamim
Helder, Johannes
Hewezi, Tarek
Holbein, Julia
Holterman, Martijn
Janakowski, Sławomir
Koutsovoulos, Georgios D.
Kranse, Olaf P.
Lozano-Torres, Jose L.
Maier, Tom R.
Masonbrink, Rick E.
Mendy, Badou
Riemer, Esther
Sobczak, Mirosław
Sonawala, Unnati
Sterken, Mark G.
Thorpe, Peter
van Steenbrugge, Joris J. M.
Zahid, Nageena
Grundler, Florian
Eves-van den Akker, Sebastian
author_sort Siddique, Shahid
collection PubMed
description Plant-parasitic nematodes are a major threat to crop production in all agricultural systems. The scarcity of classical resistance genes highlights a pressing need to find new ways to develop nematode-resistant germplasm. Here, we sequence and assemble a high-quality phased genome of the model cyst nematode Heterodera schachtii to provide a platform for the first system-wide dual analysis of host and parasite gene expression over time, covering all major parasitism stages. Analysis of the hologenome of the plant-nematode infection site identified metabolic pathways that were incomplete in the parasite but complemented by the host. Using a combination of bioinformatic, genetic, and biochemical approaches, we show that a highly atypical completion of vitamin B5 biosynthesis by the parasitic animal, putatively enabled by a horizontal gene transfer from a bacterium, is required for full pathogenicity. Knockout of either plant-encoded or now nematode-encoded steps in the pathway significantly reduces parasitic success. Our experiments establish a reference for cyst nematodes, further our understanding of the evolution of plant-parasitism by nematodes, and show that congruent differential expression of metabolic pathways in the infection hologenome represents a new way to find nematode susceptibility genes. The approach identifies genome-editing-amenable targets for future development of nematode-resistant crops.
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spelling pubmed-95820212022-10-21 The genome and lifestage-specific transcriptomes of a plant-parasitic nematode and its host reveal susceptibility genes involved in trans-kingdom synthesis of vitamin B5 Siddique, Shahid Radakovic, Zoran S. Hiltl, Clarissa Pellegrin, Clement Baum, Thomas J. Beasley, Helen Bent, Andrew F. Chitambo, Oliver Chopra, Divykriti Danchin, Etienne G. J. Grenier, Eric Habash, Samer S. Hasan, M. Shamim Helder, Johannes Hewezi, Tarek Holbein, Julia Holterman, Martijn Janakowski, Sławomir Koutsovoulos, Georgios D. Kranse, Olaf P. Lozano-Torres, Jose L. Maier, Tom R. Masonbrink, Rick E. Mendy, Badou Riemer, Esther Sobczak, Mirosław Sonawala, Unnati Sterken, Mark G. Thorpe, Peter van Steenbrugge, Joris J. M. Zahid, Nageena Grundler, Florian Eves-van den Akker, Sebastian Nat Commun Article Plant-parasitic nematodes are a major threat to crop production in all agricultural systems. The scarcity of classical resistance genes highlights a pressing need to find new ways to develop nematode-resistant germplasm. Here, we sequence and assemble a high-quality phased genome of the model cyst nematode Heterodera schachtii to provide a platform for the first system-wide dual analysis of host and parasite gene expression over time, covering all major parasitism stages. Analysis of the hologenome of the plant-nematode infection site identified metabolic pathways that were incomplete in the parasite but complemented by the host. Using a combination of bioinformatic, genetic, and biochemical approaches, we show that a highly atypical completion of vitamin B5 biosynthesis by the parasitic animal, putatively enabled by a horizontal gene transfer from a bacterium, is required for full pathogenicity. Knockout of either plant-encoded or now nematode-encoded steps in the pathway significantly reduces parasitic success. Our experiments establish a reference for cyst nematodes, further our understanding of the evolution of plant-parasitism by nematodes, and show that congruent differential expression of metabolic pathways in the infection hologenome represents a new way to find nematode susceptibility genes. The approach identifies genome-editing-amenable targets for future development of nematode-resistant crops. Nature Publishing Group UK 2022-10-19 /pmc/articles/PMC9582021/ /pubmed/36261416 http://dx.doi.org/10.1038/s41467-022-33769-w Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Siddique, Shahid
Radakovic, Zoran S.
Hiltl, Clarissa
Pellegrin, Clement
Baum, Thomas J.
Beasley, Helen
Bent, Andrew F.
Chitambo, Oliver
Chopra, Divykriti
Danchin, Etienne G. J.
Grenier, Eric
Habash, Samer S.
Hasan, M. Shamim
Helder, Johannes
Hewezi, Tarek
Holbein, Julia
Holterman, Martijn
Janakowski, Sławomir
Koutsovoulos, Georgios D.
Kranse, Olaf P.
Lozano-Torres, Jose L.
Maier, Tom R.
Masonbrink, Rick E.
Mendy, Badou
Riemer, Esther
Sobczak, Mirosław
Sonawala, Unnati
Sterken, Mark G.
Thorpe, Peter
van Steenbrugge, Joris J. M.
Zahid, Nageena
Grundler, Florian
Eves-van den Akker, Sebastian
The genome and lifestage-specific transcriptomes of a plant-parasitic nematode and its host reveal susceptibility genes involved in trans-kingdom synthesis of vitamin B5
title The genome and lifestage-specific transcriptomes of a plant-parasitic nematode and its host reveal susceptibility genes involved in trans-kingdom synthesis of vitamin B5
title_full The genome and lifestage-specific transcriptomes of a plant-parasitic nematode and its host reveal susceptibility genes involved in trans-kingdom synthesis of vitamin B5
title_fullStr The genome and lifestage-specific transcriptomes of a plant-parasitic nematode and its host reveal susceptibility genes involved in trans-kingdom synthesis of vitamin B5
title_full_unstemmed The genome and lifestage-specific transcriptomes of a plant-parasitic nematode and its host reveal susceptibility genes involved in trans-kingdom synthesis of vitamin B5
title_short The genome and lifestage-specific transcriptomes of a plant-parasitic nematode and its host reveal susceptibility genes involved in trans-kingdom synthesis of vitamin B5
title_sort genome and lifestage-specific transcriptomes of a plant-parasitic nematode and its host reveal susceptibility genes involved in trans-kingdom synthesis of vitamin b5
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9582021/
https://www.ncbi.nlm.nih.gov/pubmed/36261416
http://dx.doi.org/10.1038/s41467-022-33769-w
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