Genome-wide association analysis of Mexican bread wheat landraces for resistance to yellow and stem rust.

Deploying under-utilized landraces in wheat breeding has been advocated to accelerate genetic gains in current era of genomics assisted breeding. Mexican bread wheat landraces (Creole wheats) represent an important resource for the discovery of novel alleles including disease resistance. A core set...

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Main Authors: Prashant Vikram, Deepmala Sehgal, Achala Sharma, Sridhar Bhavani, Priyanka Gupta, Mandeep Randhawa, Neftali Pardo, Daisy Basandra, Puja Srivastava, Sanjay Singh, Tanvi Sood, Carolina Paola Sansaloni, Hifzur Rahman, Sukhwinder Singh
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2021-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0246015
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spelling doaj-1a1bd9c7375a457fab32a3a1c32c815d2021-06-24T04:31:44ZengPublic Library of Science (PLoS)PLoS ONE1932-62032021-01-01161e024601510.1371/journal.pone.0246015Genome-wide association analysis of Mexican bread wheat landraces for resistance to yellow and stem rust.Prashant VikramDeepmala SehgalAchala SharmaSridhar BhavaniPriyanka GuptaMandeep RandhawaNeftali PardoDaisy BasandraPuja SrivastavaSanjay SinghTanvi SoodCarolina Paola SansaloniHifzur RahmanSukhwinder SinghDeploying under-utilized landraces in wheat breeding has been advocated to accelerate genetic gains in current era of genomics assisted breeding. Mexican bread wheat landraces (Creole wheats) represent an important resource for the discovery of novel alleles including disease resistance. A core set of 1,098 Mexican landraces was subjected to multi-location testing for rust diseases in India, Mexico and Kenya. The landrace core set showed a continuous variation for yellow (YR) and stem rust (SR) disease severity. Principal component analysis differentiated Mexican landraces into three groups based on their respective collection sites. Linkage disequilibrium (LD) decay varied from 10 to 32 Mb across chromosomes with an averge of 23Mb across whole genome. Genome-wide association analysis revealed marker-trait associations for YR resistance in India and Mexico as well as for SR resistance in Kenya. In addition, significant additive-additive interaction effects were observed for both YR and SR resistance including genomic regions on chromosomes 1BL and 3BS, which co-locate with pleiotropic genes Yr29/Lr46/Sr58/Pm39/Ltn2 and Sr2/Yr30/Lr27, respectively. Study reports novel genomic associations for YR (chromosomes 1AL, 2BS, and 3BL) and SR (chromosomes 2AL, 4DS, and 5DS). The novel findings in Creole wheat landraces can be efficiently utilized for the wheat genetic improvement.https://doi.org/10.1371/journal.pone.0246015
collection DOAJ
language English
format Article
sources DOAJ
author Prashant Vikram
Deepmala Sehgal
Achala Sharma
Sridhar Bhavani
Priyanka Gupta
Mandeep Randhawa
Neftali Pardo
Daisy Basandra
Puja Srivastava
Sanjay Singh
Tanvi Sood
Carolina Paola Sansaloni
Hifzur Rahman
Sukhwinder Singh
spellingShingle Prashant Vikram
Deepmala Sehgal
Achala Sharma
Sridhar Bhavani
Priyanka Gupta
Mandeep Randhawa
Neftali Pardo
Daisy Basandra
Puja Srivastava
Sanjay Singh
Tanvi Sood
Carolina Paola Sansaloni
Hifzur Rahman
Sukhwinder Singh
Genome-wide association analysis of Mexican bread wheat landraces for resistance to yellow and stem rust.
PLoS ONE
author_facet Prashant Vikram
Deepmala Sehgal
Achala Sharma
Sridhar Bhavani
Priyanka Gupta
Mandeep Randhawa
Neftali Pardo
Daisy Basandra
Puja Srivastava
Sanjay Singh
Tanvi Sood
Carolina Paola Sansaloni
Hifzur Rahman
Sukhwinder Singh
author_sort Prashant Vikram
title Genome-wide association analysis of Mexican bread wheat landraces for resistance to yellow and stem rust.
title_short Genome-wide association analysis of Mexican bread wheat landraces for resistance to yellow and stem rust.
title_full Genome-wide association analysis of Mexican bread wheat landraces for resistance to yellow and stem rust.
title_fullStr Genome-wide association analysis of Mexican bread wheat landraces for resistance to yellow and stem rust.
title_full_unstemmed Genome-wide association analysis of Mexican bread wheat landraces for resistance to yellow and stem rust.
title_sort genome-wide association analysis of mexican bread wheat landraces for resistance to yellow and stem rust.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2021-01-01
description Deploying under-utilized landraces in wheat breeding has been advocated to accelerate genetic gains in current era of genomics assisted breeding. Mexican bread wheat landraces (Creole wheats) represent an important resource for the discovery of novel alleles including disease resistance. A core set of 1,098 Mexican landraces was subjected to multi-location testing for rust diseases in India, Mexico and Kenya. The landrace core set showed a continuous variation for yellow (YR) and stem rust (SR) disease severity. Principal component analysis differentiated Mexican landraces into three groups based on their respective collection sites. Linkage disequilibrium (LD) decay varied from 10 to 32 Mb across chromosomes with an averge of 23Mb across whole genome. Genome-wide association analysis revealed marker-trait associations for YR resistance in India and Mexico as well as for SR resistance in Kenya. In addition, significant additive-additive interaction effects were observed for both YR and SR resistance including genomic regions on chromosomes 1BL and 3BS, which co-locate with pleiotropic genes Yr29/Lr46/Sr58/Pm39/Ltn2 and Sr2/Yr30/Lr27, respectively. Study reports novel genomic associations for YR (chromosomes 1AL, 2BS, and 3BL) and SR (chromosomes 2AL, 4DS, and 5DS). The novel findings in Creole wheat landraces can be efficiently utilized for the wheat genetic improvement.
url https://doi.org/10.1371/journal.pone.0246015
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