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Wheat Resistance to Stripe and Leaf Rusts Conferred by Introgression of Slow Rusting Resistance Genes

Twenty-three wheat genotypes were evaluated for stripe and leaf rusts, caused by Puccinia striiformis f. sp. tritici and Puccinia triticina f. sp. tritici, respectively, at seedling and adult stages under greenhouses and field conditions during the 2019/2020 and 2020/2021 growing seasons. The race a...

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Autores principales: Omara, Reda Ibrahim, Shahin, Atef Abdelfattah, Ahmed, Shaimaa Mahmoud, Mostafa, Yasser Sabry, Alamri, Saad Abdulrahman, Hashem, Mohamed, Elsharkawy, Mohsen Mohamed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8397070/
https://www.ncbi.nlm.nih.gov/pubmed/34436161
http://dx.doi.org/10.3390/jof7080622
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author Omara, Reda Ibrahim
Shahin, Atef Abdelfattah
Ahmed, Shaimaa Mahmoud
Mostafa, Yasser Sabry
Alamri, Saad Abdulrahman
Hashem, Mohamed
Elsharkawy, Mohsen Mohamed
author_facet Omara, Reda Ibrahim
Shahin, Atef Abdelfattah
Ahmed, Shaimaa Mahmoud
Mostafa, Yasser Sabry
Alamri, Saad Abdulrahman
Hashem, Mohamed
Elsharkawy, Mohsen Mohamed
author_sort Omara, Reda Ibrahim
collection PubMed
description Twenty-three wheat genotypes were evaluated for stripe and leaf rusts, caused by Puccinia striiformis f. sp. tritici and Puccinia triticina f. sp. tritici, respectively, at seedling and adult stages under greenhouses and field conditions during the 2019/2020 and 2020/2021 growing seasons. The race analysis revealed that 250E254 and TTTST races for stripe and leaf rusts, respectively were the most aggressive. Eight wheat genotypes (Misr-3, Misr-4, Giza-171, Gemmeiza-12, Lr34/Yr18, Lr37/Yr17, Lr46/Yr29, and Lr67/Yr46) were resistant to stripe and leaf rusts at seedling and adult stages. This result was confirmed by identifying the resistance genes: Lr34/Yr18, Lr37/Yr17, Lr46/Yr29, and Lr67/Yr46 in these genotypes showing their role in the resistance. Sids-14 and Shandweel-1 genotypes were susceptible to stripe and leaf rusts. Twelve crosses between the two new susceptible wheat genotypes and the three slow rusting genes (Lr34/Yr18, Lr37/Yr17, and Lr67/Yr46) were conducted. The frequency distribution of disease severity (%) in F(2) plants of the twelve crosses was ranged from 0 to 80%. Resistant F(2) plants were selected and the resistance genes were detected. This study is important for introducing new active resistance genes into the breeding programs and preserving diversity among recently released wheat genotypes.
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spelling pubmed-83970702021-08-28 Wheat Resistance to Stripe and Leaf Rusts Conferred by Introgression of Slow Rusting Resistance Genes Omara, Reda Ibrahim Shahin, Atef Abdelfattah Ahmed, Shaimaa Mahmoud Mostafa, Yasser Sabry Alamri, Saad Abdulrahman Hashem, Mohamed Elsharkawy, Mohsen Mohamed J Fungi (Basel) Article Twenty-three wheat genotypes were evaluated for stripe and leaf rusts, caused by Puccinia striiformis f. sp. tritici and Puccinia triticina f. sp. tritici, respectively, at seedling and adult stages under greenhouses and field conditions during the 2019/2020 and 2020/2021 growing seasons. The race analysis revealed that 250E254 and TTTST races for stripe and leaf rusts, respectively were the most aggressive. Eight wheat genotypes (Misr-3, Misr-4, Giza-171, Gemmeiza-12, Lr34/Yr18, Lr37/Yr17, Lr46/Yr29, and Lr67/Yr46) were resistant to stripe and leaf rusts at seedling and adult stages. This result was confirmed by identifying the resistance genes: Lr34/Yr18, Lr37/Yr17, Lr46/Yr29, and Lr67/Yr46 in these genotypes showing their role in the resistance. Sids-14 and Shandweel-1 genotypes were susceptible to stripe and leaf rusts. Twelve crosses between the two new susceptible wheat genotypes and the three slow rusting genes (Lr34/Yr18, Lr37/Yr17, and Lr67/Yr46) were conducted. The frequency distribution of disease severity (%) in F(2) plants of the twelve crosses was ranged from 0 to 80%. Resistant F(2) plants were selected and the resistance genes were detected. This study is important for introducing new active resistance genes into the breeding programs and preserving diversity among recently released wheat genotypes. MDPI 2021-07-31 /pmc/articles/PMC8397070/ /pubmed/34436161 http://dx.doi.org/10.3390/jof7080622 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Omara, Reda Ibrahim
Shahin, Atef Abdelfattah
Ahmed, Shaimaa Mahmoud
Mostafa, Yasser Sabry
Alamri, Saad Abdulrahman
Hashem, Mohamed
Elsharkawy, Mohsen Mohamed
Wheat Resistance to Stripe and Leaf Rusts Conferred by Introgression of Slow Rusting Resistance Genes
title Wheat Resistance to Stripe and Leaf Rusts Conferred by Introgression of Slow Rusting Resistance Genes
title_full Wheat Resistance to Stripe and Leaf Rusts Conferred by Introgression of Slow Rusting Resistance Genes
title_fullStr Wheat Resistance to Stripe and Leaf Rusts Conferred by Introgression of Slow Rusting Resistance Genes
title_full_unstemmed Wheat Resistance to Stripe and Leaf Rusts Conferred by Introgression of Slow Rusting Resistance Genes
title_short Wheat Resistance to Stripe and Leaf Rusts Conferred by Introgression of Slow Rusting Resistance Genes
title_sort wheat resistance to stripe and leaf rusts conferred by introgression of slow rusting resistance genes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8397070/
https://www.ncbi.nlm.nih.gov/pubmed/34436161
http://dx.doi.org/10.3390/jof7080622
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