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Production of Sitobion avenae-resistant Triticum aestivum cvs using laccase as RNAi target and its systemic movement in wheat post dsRNA spray

Among the wheat biotic stresses, Sitobion avenae is one of the main factors devastating the wheat yield per hectare. The study’s objective was to find out the laccase (lac) efficacy; as a potential RNAi target against grain aphids. The Sitobion avenae lac (Salac) was confirmed by Reverse Transcripta...

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Autores principales: Rafique, Asma, Afroz, Amber, Zeeshan, Nadia, Rashid, Umer, Khan, Muhammad Azmat Ullah, Irfan, Muhammad, Chatha, Waheed, Khan, Muhammad Ramzan, Rehman, Nazia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10171587/
https://www.ncbi.nlm.nih.gov/pubmed/37163535
http://dx.doi.org/10.1371/journal.pone.0284888
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author Rafique, Asma
Afroz, Amber
Zeeshan, Nadia
Rashid, Umer
Khan, Muhammad Azmat Ullah
Irfan, Muhammad
Chatha, Waheed
Khan, Muhammad Ramzan
Rehman, Nazia
author_facet Rafique, Asma
Afroz, Amber
Zeeshan, Nadia
Rashid, Umer
Khan, Muhammad Azmat Ullah
Irfan, Muhammad
Chatha, Waheed
Khan, Muhammad Ramzan
Rehman, Nazia
author_sort Rafique, Asma
collection PubMed
description Among the wheat biotic stresses, Sitobion avenae is one of the main factors devastating the wheat yield per hectare. The study’s objective was to find out the laccase (lac) efficacy; as a potential RNAi target against grain aphids. The Sitobion avenae lac (Salac) was confirmed by Reverse Transcriptase-PCR. Gene was sequenced and accession number “ON703252” was allotted by GenBank. ERNAi tool was used to design 143 siRNA and one dsRNA target. 69% mortality and 61% reduction in lac expression were observed 8D-post lac DsRNA feeding. Phylogenetic analysis displayed the homology of grain aphid lac gene with peach potato, pea, and Russian wheat aphids. While Salac protein was found similar to the Russian grain, soybean, pea, and cedar bark aphid lac protein multi-copper oxidase. The dsRNAlac spray-induced silencing shows systematic translocation from leaf to root; with maximum lac expression found in the root, followed by stem and leaf 9-13D post-spray; comparison to control. RNAi-GG provides the Golden Gate cloning strategy with a single restriction ligation reaction used to achieve lac silencing. Agrobacterium tumefaciens mediated in planta and in-vitro transformation was used in the study. In vitro transformation, Galaxy 2012 yielded a maximum transformation efficiency (1.5%), followed by Anaj 2017 (0.8%), and Punjab (0.2%). In planta transformation provides better transformation efficiencies with a maximum in Galaxy 2012 (16%), and a minimum for Punjab (5%). Maximum transformation efficiency was achieved for all cultivars with 250 μM acetosyringone and 3h co-cultivation. Galaxy 2012 exhibited maximum transformation efficiency, and aphid mortality post-feeding transgenic wheat.
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spelling pubmed-101715872023-05-11 Production of Sitobion avenae-resistant Triticum aestivum cvs using laccase as RNAi target and its systemic movement in wheat post dsRNA spray Rafique, Asma Afroz, Amber Zeeshan, Nadia Rashid, Umer Khan, Muhammad Azmat Ullah Irfan, Muhammad Chatha, Waheed Khan, Muhammad Ramzan Rehman, Nazia PLoS One Research Article Among the wheat biotic stresses, Sitobion avenae is one of the main factors devastating the wheat yield per hectare. The study’s objective was to find out the laccase (lac) efficacy; as a potential RNAi target against grain aphids. The Sitobion avenae lac (Salac) was confirmed by Reverse Transcriptase-PCR. Gene was sequenced and accession number “ON703252” was allotted by GenBank. ERNAi tool was used to design 143 siRNA and one dsRNA target. 69% mortality and 61% reduction in lac expression were observed 8D-post lac DsRNA feeding. Phylogenetic analysis displayed the homology of grain aphid lac gene with peach potato, pea, and Russian wheat aphids. While Salac protein was found similar to the Russian grain, soybean, pea, and cedar bark aphid lac protein multi-copper oxidase. The dsRNAlac spray-induced silencing shows systematic translocation from leaf to root; with maximum lac expression found in the root, followed by stem and leaf 9-13D post-spray; comparison to control. RNAi-GG provides the Golden Gate cloning strategy with a single restriction ligation reaction used to achieve lac silencing. Agrobacterium tumefaciens mediated in planta and in-vitro transformation was used in the study. In vitro transformation, Galaxy 2012 yielded a maximum transformation efficiency (1.5%), followed by Anaj 2017 (0.8%), and Punjab (0.2%). In planta transformation provides better transformation efficiencies with a maximum in Galaxy 2012 (16%), and a minimum for Punjab (5%). Maximum transformation efficiency was achieved for all cultivars with 250 μM acetosyringone and 3h co-cultivation. Galaxy 2012 exhibited maximum transformation efficiency, and aphid mortality post-feeding transgenic wheat. Public Library of Science 2023-05-10 /pmc/articles/PMC10171587/ /pubmed/37163535 http://dx.doi.org/10.1371/journal.pone.0284888 Text en © 2023 Rafique et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Rafique, Asma
Afroz, Amber
Zeeshan, Nadia
Rashid, Umer
Khan, Muhammad Azmat Ullah
Irfan, Muhammad
Chatha, Waheed
Khan, Muhammad Ramzan
Rehman, Nazia
Production of Sitobion avenae-resistant Triticum aestivum cvs using laccase as RNAi target and its systemic movement in wheat post dsRNA spray
title Production of Sitobion avenae-resistant Triticum aestivum cvs using laccase as RNAi target and its systemic movement in wheat post dsRNA spray
title_full Production of Sitobion avenae-resistant Triticum aestivum cvs using laccase as RNAi target and its systemic movement in wheat post dsRNA spray
title_fullStr Production of Sitobion avenae-resistant Triticum aestivum cvs using laccase as RNAi target and its systemic movement in wheat post dsRNA spray
title_full_unstemmed Production of Sitobion avenae-resistant Triticum aestivum cvs using laccase as RNAi target and its systemic movement in wheat post dsRNA spray
title_short Production of Sitobion avenae-resistant Triticum aestivum cvs using laccase as RNAi target and its systemic movement in wheat post dsRNA spray
title_sort production of sitobion avenae-resistant triticum aestivum cvs using laccase as rnai target and its systemic movement in wheat post dsrna spray
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10171587/
https://www.ncbi.nlm.nih.gov/pubmed/37163535
http://dx.doi.org/10.1371/journal.pone.0284888
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