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Comparative genomic analysis of MYB transcription factors for cuticular wax biosynthesis and drought stress tolerance in Helianthus annuus L.

Sunflower is an important oil-seed crop in Pakistan, it is mainly cultivated in the spring season. It is severely affected by drought stress resulting in lower yield. Cuticular wax acts as the first defense line to protect plants from drought stress condition. It seals the aerial parts of plants and...

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Autores principales: Ahmad, Hafiz Muhammad, Rahman, Mahmood-ur, Ahmar, Sunny, Fiaz, Sajid, Azeem, Farrukh, Shaheen, Tayyaba, Ijaz, Munazza, Anwer Bukhari, Shazia, Khan, Sher Aslam, Mora-Poblete, Freddy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8459054/
https://www.ncbi.nlm.nih.gov/pubmed/34588881
http://dx.doi.org/10.1016/j.sjbs.2021.06.009
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author Ahmad, Hafiz Muhammad
Rahman, Mahmood-ur
Ahmar, Sunny
Fiaz, Sajid
Azeem, Farrukh
Shaheen, Tayyaba
Ijaz, Munazza
Anwer Bukhari, Shazia
Khan, Sher Aslam
Mora-Poblete, Freddy
author_facet Ahmad, Hafiz Muhammad
Rahman, Mahmood-ur
Ahmar, Sunny
Fiaz, Sajid
Azeem, Farrukh
Shaheen, Tayyaba
Ijaz, Munazza
Anwer Bukhari, Shazia
Khan, Sher Aslam
Mora-Poblete, Freddy
author_sort Ahmad, Hafiz Muhammad
collection PubMed
description Sunflower is an important oil-seed crop in Pakistan, it is mainly cultivated in the spring season. It is severely affected by drought stress resulting in lower yield. Cuticular wax acts as the first defense line to protect plants from drought stress condition. It seals the aerial parts of plants and reduce the water loss from leaf surfaces. Various myeloblastosis (MYB) transcription factors (TFs) are involved in biosynthesis of epicuticular waxes under drought-stress. However, less information is available for MYB, TFs in drought stress and wax biosynthesis in sunflower. We used different computational tools to compare the Arabidopsis MYB, TFs involved in cuticular wax biosynthesis and drought stress tolerance with sunflower genome. We identified three putative MYB genes (MYB16, MYB94 and MYB96) in sunflower along with their seven homologs in Arabidopsis. Phylogenetic association of MYB TFs in Arabidopsis and sunflower indicated strong conservation of TFs in plant species. From gene structure analysis, it was observed that intron and exon organization was family-specific. MYB TFs were unevenly distributed on sunflower chromosomes. Evolutionary analysis indicated the segmental duplication of the MYB gene family in sunflower. Quantitative Real-Time PCR revealed the up-regulation of three MYB genes under drought stress. The gene expression of MYB16, MYB94 and MYB96 were found many folds higher in experimental plants than control. The present study provided the first insight into MYB TFs family's characterization in sunflower under drought stress conditions and wax biosynthesis TFs.
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spelling pubmed-84590542021-09-28 Comparative genomic analysis of MYB transcription factors for cuticular wax biosynthesis and drought stress tolerance in Helianthus annuus L. Ahmad, Hafiz Muhammad Rahman, Mahmood-ur Ahmar, Sunny Fiaz, Sajid Azeem, Farrukh Shaheen, Tayyaba Ijaz, Munazza Anwer Bukhari, Shazia Khan, Sher Aslam Mora-Poblete, Freddy Saudi J Biol Sci Original Article Sunflower is an important oil-seed crop in Pakistan, it is mainly cultivated in the spring season. It is severely affected by drought stress resulting in lower yield. Cuticular wax acts as the first defense line to protect plants from drought stress condition. It seals the aerial parts of plants and reduce the water loss from leaf surfaces. Various myeloblastosis (MYB) transcription factors (TFs) are involved in biosynthesis of epicuticular waxes under drought-stress. However, less information is available for MYB, TFs in drought stress and wax biosynthesis in sunflower. We used different computational tools to compare the Arabidopsis MYB, TFs involved in cuticular wax biosynthesis and drought stress tolerance with sunflower genome. We identified three putative MYB genes (MYB16, MYB94 and MYB96) in sunflower along with their seven homologs in Arabidopsis. Phylogenetic association of MYB TFs in Arabidopsis and sunflower indicated strong conservation of TFs in plant species. From gene structure analysis, it was observed that intron and exon organization was family-specific. MYB TFs were unevenly distributed on sunflower chromosomes. Evolutionary analysis indicated the segmental duplication of the MYB gene family in sunflower. Quantitative Real-Time PCR revealed the up-regulation of three MYB genes under drought stress. The gene expression of MYB16, MYB94 and MYB96 were found many folds higher in experimental plants than control. The present study provided the first insight into MYB TFs family's characterization in sunflower under drought stress conditions and wax biosynthesis TFs. Elsevier 2021-10 2021-06-10 /pmc/articles/PMC8459054/ /pubmed/34588881 http://dx.doi.org/10.1016/j.sjbs.2021.06.009 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Ahmad, Hafiz Muhammad
Rahman, Mahmood-ur
Ahmar, Sunny
Fiaz, Sajid
Azeem, Farrukh
Shaheen, Tayyaba
Ijaz, Munazza
Anwer Bukhari, Shazia
Khan, Sher Aslam
Mora-Poblete, Freddy
Comparative genomic analysis of MYB transcription factors for cuticular wax biosynthesis and drought stress tolerance in Helianthus annuus L.
title Comparative genomic analysis of MYB transcription factors for cuticular wax biosynthesis and drought stress tolerance in Helianthus annuus L.
title_full Comparative genomic analysis of MYB transcription factors for cuticular wax biosynthesis and drought stress tolerance in Helianthus annuus L.
title_fullStr Comparative genomic analysis of MYB transcription factors for cuticular wax biosynthesis and drought stress tolerance in Helianthus annuus L.
title_full_unstemmed Comparative genomic analysis of MYB transcription factors for cuticular wax biosynthesis and drought stress tolerance in Helianthus annuus L.
title_short Comparative genomic analysis of MYB transcription factors for cuticular wax biosynthesis and drought stress tolerance in Helianthus annuus L.
title_sort comparative genomic analysis of myb transcription factors for cuticular wax biosynthesis and drought stress tolerance in helianthus annuus l.
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8459054/
https://www.ncbi.nlm.nih.gov/pubmed/34588881
http://dx.doi.org/10.1016/j.sjbs.2021.06.009
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