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Transcriptomic signature reveals mechanism of flower bud distortion in witches’-broom disease of soybean (Glycine max)

BACKGROUND: Soybean (Glycine max L. Merril) crop is major source of edible oil and protein for human and animals besides its various industrial uses including biofuels. Phytoplasma induced floral bud distortion syndrome (FBD), also known as witches’ broom syndrome (WBS) has been one of the major bio...

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Autores principales: Jaiswal, Sarika, Jadhav, Pravin V., Jasrotia, Rahul Singh, Kale, Prashant B., Kad, Snehal K., Moharil, Mangesh P., Dudhare, Mahendra S., Kheni, Jashminkumar, Deshmukh, Amit G., Mane, Shyamsundar S., Nandanwar, Ravindra S., Penna, Suprasanna, Manjaya, Joy G., Iquebal, Mir Asif, Tomar, Rukam Singh, Kawar, Prashant G., Rai, Anil, Kumar, Dinesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6332543/
https://www.ncbi.nlm.nih.gov/pubmed/30646861
http://dx.doi.org/10.1186/s12870-018-1601-1
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author Jaiswal, Sarika
Jadhav, Pravin V.
Jasrotia, Rahul Singh
Kale, Prashant B.
Kad, Snehal K.
Moharil, Mangesh P.
Dudhare, Mahendra S.
Kheni, Jashminkumar
Deshmukh, Amit G.
Mane, Shyamsundar S.
Nandanwar, Ravindra S.
Penna, Suprasanna
Manjaya, Joy G.
Iquebal, Mir Asif
Tomar, Rukam Singh
Kawar, Prashant G.
Rai, Anil
Kumar, Dinesh
author_facet Jaiswal, Sarika
Jadhav, Pravin V.
Jasrotia, Rahul Singh
Kale, Prashant B.
Kad, Snehal K.
Moharil, Mangesh P.
Dudhare, Mahendra S.
Kheni, Jashminkumar
Deshmukh, Amit G.
Mane, Shyamsundar S.
Nandanwar, Ravindra S.
Penna, Suprasanna
Manjaya, Joy G.
Iquebal, Mir Asif
Tomar, Rukam Singh
Kawar, Prashant G.
Rai, Anil
Kumar, Dinesh
author_sort Jaiswal, Sarika
collection PubMed
description BACKGROUND: Soybean (Glycine max L. Merril) crop is major source of edible oil and protein for human and animals besides its various industrial uses including biofuels. Phytoplasma induced floral bud distortion syndrome (FBD), also known as witches’ broom syndrome (WBS) has been one of the major biotic stresses adversely affecting its productivity. Transcriptomic approach can be used for knowledge discovery of this disease manifestation by morpho-physiological key pathways. RESULTS: We report transcriptomic study using Illumina HiSeq NGS data of FBD in soybean, revealing 17,454 differentially expressed genes, 5561 transcription factors, 139 pathways and 176,029 genic region putative markers single sequence repeats, single nucleotide polymorphism and Insertion Deletion. Roles of PmbA, Zn-dependent protease, SAP family and auxin responsive system are described revealing mechanism of flower bud distortion having abnormalities in pollen, stigma development. Validation of 10 randomly selected genes was done by qPCR. Our findings describe the basic mechanism of FBD disease, right from sensing of phytoplasma infection by host plant triggering molecular signalling leading to mobilization of carbohydrate and protein, phyllody, abnormal pollen development, improved colonization of insect in host plants to spread the disease. Study reveals how phytoplasma hijacks metabolic machinery of soybean manifesting FBD. CONCLUSIONS: This is the first report of transcriptomic signature of FBD or WBS disease of soybean revealing morphological and metabolic changes which attracts insect for spread of disease. All the genic region putative markers may be used as genomic resource for variety improvement and new agro-chemical development for disease control to enhance soybean productivity. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s12870-018-1601-1) contains supplementary material, which is available to authorized users.
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spelling pubmed-63325432019-01-16 Transcriptomic signature reveals mechanism of flower bud distortion in witches’-broom disease of soybean (Glycine max) Jaiswal, Sarika Jadhav, Pravin V. Jasrotia, Rahul Singh Kale, Prashant B. Kad, Snehal K. Moharil, Mangesh P. Dudhare, Mahendra S. Kheni, Jashminkumar Deshmukh, Amit G. Mane, Shyamsundar S. Nandanwar, Ravindra S. Penna, Suprasanna Manjaya, Joy G. Iquebal, Mir Asif Tomar, Rukam Singh Kawar, Prashant G. Rai, Anil Kumar, Dinesh BMC Plant Biol Research Article BACKGROUND: Soybean (Glycine max L. Merril) crop is major source of edible oil and protein for human and animals besides its various industrial uses including biofuels. Phytoplasma induced floral bud distortion syndrome (FBD), also known as witches’ broom syndrome (WBS) has been one of the major biotic stresses adversely affecting its productivity. Transcriptomic approach can be used for knowledge discovery of this disease manifestation by morpho-physiological key pathways. RESULTS: We report transcriptomic study using Illumina HiSeq NGS data of FBD in soybean, revealing 17,454 differentially expressed genes, 5561 transcription factors, 139 pathways and 176,029 genic region putative markers single sequence repeats, single nucleotide polymorphism and Insertion Deletion. Roles of PmbA, Zn-dependent protease, SAP family and auxin responsive system are described revealing mechanism of flower bud distortion having abnormalities in pollen, stigma development. Validation of 10 randomly selected genes was done by qPCR. Our findings describe the basic mechanism of FBD disease, right from sensing of phytoplasma infection by host plant triggering molecular signalling leading to mobilization of carbohydrate and protein, phyllody, abnormal pollen development, improved colonization of insect in host plants to spread the disease. Study reveals how phytoplasma hijacks metabolic machinery of soybean manifesting FBD. CONCLUSIONS: This is the first report of transcriptomic signature of FBD or WBS disease of soybean revealing morphological and metabolic changes which attracts insect for spread of disease. All the genic region putative markers may be used as genomic resource for variety improvement and new agro-chemical development for disease control to enhance soybean productivity. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s12870-018-1601-1) contains supplementary material, which is available to authorized users. BioMed Central 2019-01-15 /pmc/articles/PMC6332543/ /pubmed/30646861 http://dx.doi.org/10.1186/s12870-018-1601-1 Text en © The Author(s). 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided 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 Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Jaiswal, Sarika
Jadhav, Pravin V.
Jasrotia, Rahul Singh
Kale, Prashant B.
Kad, Snehal K.
Moharil, Mangesh P.
Dudhare, Mahendra S.
Kheni, Jashminkumar
Deshmukh, Amit G.
Mane, Shyamsundar S.
Nandanwar, Ravindra S.
Penna, Suprasanna
Manjaya, Joy G.
Iquebal, Mir Asif
Tomar, Rukam Singh
Kawar, Prashant G.
Rai, Anil
Kumar, Dinesh
Transcriptomic signature reveals mechanism of flower bud distortion in witches’-broom disease of soybean (Glycine max)
title Transcriptomic signature reveals mechanism of flower bud distortion in witches’-broom disease of soybean (Glycine max)
title_full Transcriptomic signature reveals mechanism of flower bud distortion in witches’-broom disease of soybean (Glycine max)
title_fullStr Transcriptomic signature reveals mechanism of flower bud distortion in witches’-broom disease of soybean (Glycine max)
title_full_unstemmed Transcriptomic signature reveals mechanism of flower bud distortion in witches’-broom disease of soybean (Glycine max)
title_short Transcriptomic signature reveals mechanism of flower bud distortion in witches’-broom disease of soybean (Glycine max)
title_sort transcriptomic signature reveals mechanism of flower bud distortion in witches’-broom disease of soybean (glycine max)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6332543/
https://www.ncbi.nlm.nih.gov/pubmed/30646861
http://dx.doi.org/10.1186/s12870-018-1601-1
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