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Marker-Assisted Improvement of Bread Wheat Variety HD2967 for Leaf and Stripe Rust Resistance

The mega wheat variety HD2967 was improved for leaf and stripe rust resistance by marker-assisted backcross breeding. After its release in 2011, HD2967 became susceptible to stripe rust and moderately susceptible to leaf rust. The leaf rust resistance gene LrTrk was transferred into HD2967 from the...

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Autores principales: Mallick, Niharika, Jha, Shailendra K., Agarwal, Priyanka, Mall, Anchal, M., Niranjana, Kumar, Sachin, Choudhary, Manish K., Bansal, Shreshtha, Saharan, M. S., Sharma, J. B., Vinod
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9103291/
https://www.ncbi.nlm.nih.gov/pubmed/35567153
http://dx.doi.org/10.3390/plants11091152
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author Mallick, Niharika
Jha, Shailendra K.
Agarwal, Priyanka
Mall, Anchal
M., Niranjana
Kumar, Sachin
Choudhary, Manish K.
Bansal, Shreshtha
Saharan, M. S.
Sharma, J. B.
Vinod,
author_facet Mallick, Niharika
Jha, Shailendra K.
Agarwal, Priyanka
Mall, Anchal
M., Niranjana
Kumar, Sachin
Choudhary, Manish K.
Bansal, Shreshtha
Saharan, M. S.
Sharma, J. B.
Vinod,
author_sort Mallick, Niharika
collection PubMed
description The mega wheat variety HD2967 was improved for leaf and stripe rust resistance by marker-assisted backcross breeding. After its release in 2011, HD2967 became susceptible to stripe rust and moderately susceptible to leaf rust. The leaf rust resistance gene LrTrk was transferred into HD2967 from the durum wheat genotype Trinakria. Then, HD2967 was crossed with Trinakria to produce F(1) plant foreground selection for LrTrk and background selection for the recurrent parent genotype was carried out in BC(1)F(1), BC(2)F(1) and BC(2)F(2) generations. Foreground selection was carried out with the linked marker Xgwm234, while polymorphic SSR markers between parents were used for background selection. Background selection resulted in the rapid recovery of the recurrent parent genome. A morphological evaluation of 6 near isogenic lines (NILs)—2 resistant to leaf and stripe rust, and 4 resistant to leaf rust only—showed no significant differences in yields among NILs and the recurrent parent HD2967. All of the 6 NILs showed the presence of 2NS/2AS translocation, carrying the linked genes Lr37/Sr38/Yr17 present in HD2967 and the targeted leaf rust resistance gene LrTrk. Two NILs also showed additional resistance to stripe rust. Therefore, these NILs with rust resistance and an at par yielding ability of H2967 can replace the susceptible cultivar HD2967 to reduce yield losses due to disease.
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spelling pubmed-91032912022-05-14 Marker-Assisted Improvement of Bread Wheat Variety HD2967 for Leaf and Stripe Rust Resistance Mallick, Niharika Jha, Shailendra K. Agarwal, Priyanka Mall, Anchal M., Niranjana Kumar, Sachin Choudhary, Manish K. Bansal, Shreshtha Saharan, M. S. Sharma, J. B. Vinod, Plants (Basel) Article The mega wheat variety HD2967 was improved for leaf and stripe rust resistance by marker-assisted backcross breeding. After its release in 2011, HD2967 became susceptible to stripe rust and moderately susceptible to leaf rust. The leaf rust resistance gene LrTrk was transferred into HD2967 from the durum wheat genotype Trinakria. Then, HD2967 was crossed with Trinakria to produce F(1) plant foreground selection for LrTrk and background selection for the recurrent parent genotype was carried out in BC(1)F(1), BC(2)F(1) and BC(2)F(2) generations. Foreground selection was carried out with the linked marker Xgwm234, while polymorphic SSR markers between parents were used for background selection. Background selection resulted in the rapid recovery of the recurrent parent genome. A morphological evaluation of 6 near isogenic lines (NILs)—2 resistant to leaf and stripe rust, and 4 resistant to leaf rust only—showed no significant differences in yields among NILs and the recurrent parent HD2967. All of the 6 NILs showed the presence of 2NS/2AS translocation, carrying the linked genes Lr37/Sr38/Yr17 present in HD2967 and the targeted leaf rust resistance gene LrTrk. Two NILs also showed additional resistance to stripe rust. Therefore, these NILs with rust resistance and an at par yielding ability of H2967 can replace the susceptible cultivar HD2967 to reduce yield losses due to disease. MDPI 2022-04-24 /pmc/articles/PMC9103291/ /pubmed/35567153 http://dx.doi.org/10.3390/plants11091152 Text en © 2022 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
Mallick, Niharika
Jha, Shailendra K.
Agarwal, Priyanka
Mall, Anchal
M., Niranjana
Kumar, Sachin
Choudhary, Manish K.
Bansal, Shreshtha
Saharan, M. S.
Sharma, J. B.
Vinod,
Marker-Assisted Improvement of Bread Wheat Variety HD2967 for Leaf and Stripe Rust Resistance
title Marker-Assisted Improvement of Bread Wheat Variety HD2967 for Leaf and Stripe Rust Resistance
title_full Marker-Assisted Improvement of Bread Wheat Variety HD2967 for Leaf and Stripe Rust Resistance
title_fullStr Marker-Assisted Improvement of Bread Wheat Variety HD2967 for Leaf and Stripe Rust Resistance
title_full_unstemmed Marker-Assisted Improvement of Bread Wheat Variety HD2967 for Leaf and Stripe Rust Resistance
title_short Marker-Assisted Improvement of Bread Wheat Variety HD2967 for Leaf and Stripe Rust Resistance
title_sort marker-assisted improvement of bread wheat variety hd2967 for leaf and stripe rust resistance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9103291/
https://www.ncbi.nlm.nih.gov/pubmed/35567153
http://dx.doi.org/10.3390/plants11091152
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