Genome-Wide QTL Mapping for Stripe Rust Resistance in Winter Wheat Pindong 34 Using a 90K SNP Array

Winter wheat cultivar Pindong 34 has both adult-plant resistance (APR) and all-stage resistance (ASR) to stripe rust, which is caused by Puccinia striiformis f. sp. tritici (Pst). To map the quantitative trait loci (QTL) for stripe rust resistance, an F6−10 recombinant inbred line (RIL) population f...

Full description

Bibliographic Details
Main Authors: Xinli Zhou, Xin Li, Dejun Han, Suizhuang Yang, Zhensheng Kang, Runsheng Ren
Format: Article
Language:English
Published: Frontiers Media S.A. 2022-07-01
Series:Frontiers in Plant Science
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fpls.2022.932762/full
_version_ 1811316097422458880
author Xinli Zhou
Xin Li
Dejun Han
Suizhuang Yang
Zhensheng Kang
Runsheng Ren
author_facet Xinli Zhou
Xin Li
Dejun Han
Suizhuang Yang
Zhensheng Kang
Runsheng Ren
author_sort Xinli Zhou
collection DOAJ
description Winter wheat cultivar Pindong 34 has both adult-plant resistance (APR) and all-stage resistance (ASR) to stripe rust, which is caused by Puccinia striiformis f. sp. tritici (Pst). To map the quantitative trait loci (QTL) for stripe rust resistance, an F6−10 recombinant inbred line (RIL) population from a cross of Mingxian 169 × Pingdong 34 was phenotyped for stripe rust response over multiple years in fields under natural infection conditions and with selected Pst races under controlled greenhouse conditions, and genotyping was performed with a 90K single nucleotide polymorphism (SNP) array chip. Inclusive composite interval mapping (ICIM) identified 12 APR resistance QTLs and 3 ASR resistance QTLs. Among the 12 APR resistance QTLs, QYrpd.swust-1BL (explaining 9.24–13.33% of the phenotypic variation), QYrpd.swust-3AL.1 (11.41–14.80%), QYrpd.swust-3AL.2 (11.55–16.10%), QYrpd.swust-6BL (9.39–12.78%), QYrpd.swust-6DL (9.52–16.36%), QYrpd.swust-7AL (9.09–17.0%), and QYrpd.swust-7DL (8.87–11.38%) were more abundant than in the five tested environments and QYrpd.swust-1AS (11.05–12.72%), QYrpd.swust-1DL (9.81–13.05%), QYrpd.swust-2BL.1 (9.69–10.57%), QYrpd.swust-2BL.2 (10.36–12.97%), and QYrpd.swust-2BL.3 (9.54–13.15%) were significant in some of the tests. The three ASR resistance QTLs QYrpd.swust-2AS (9.69–13.58%), QYrpd.swust-2BL.4 (9.49–12.07%), and QYrpd.swust-7AS (16.16%) were detected based on the reactions in the seedlings tested with the CYR34 Pst race. Among the 15 QTLs detected in Pindong 34, the ASR resistance gene QYrpd.swust-7AS mapped on the short arm of chromosome 7A was likely similar to the previously reported QTL Yr61 in the region. The QTLs identified in the present study and their closely linked molecular markers could be useful for developing wheat cultivars with durable resistance to stripe rust.
first_indexed 2024-04-13T11:42:54Z
format Article
id doaj.art-8419b9d9123949c5931c8a876ae68028
institution Directory Open Access Journal
issn 1664-462X
language English
last_indexed 2024-04-13T11:42:54Z
publishDate 2022-07-01
publisher Frontiers Media S.A.
record_format Article
series Frontiers in Plant Science
spelling doaj.art-8419b9d9123949c5931c8a876ae680282022-12-22T02:48:15ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2022-07-011310.3389/fpls.2022.932762932762Genome-Wide QTL Mapping for Stripe Rust Resistance in Winter Wheat Pindong 34 Using a 90K SNP ArrayXinli Zhou0Xin Li1Dejun Han2Suizhuang Yang3Zhensheng Kang4Runsheng Ren5School of Life Sciences and Engineering, Wheat Research Institute, Southwest University of Science and Technology, Mianyang, ChinaSchool of Life Sciences and Engineering, Wheat Research Institute, Southwest University of Science and Technology, Mianyang, ChinaState Key Laboratory of Crop Stress Biology in Arid Areas, College of Plant Protection, Northwest A&F University, Xianyang, ChinaSchool of Life Sciences and Engineering, Wheat Research Institute, Southwest University of Science and Technology, Mianyang, ChinaState Key Laboratory of Crop Stress Biology in Arid Areas, College of Plant Protection, Northwest A&F University, Xianyang, ChinaExcellence and Innovation Center, Jiangsu Academy of Agricultural Sciences, Nanjing, ChinaWinter wheat cultivar Pindong 34 has both adult-plant resistance (APR) and all-stage resistance (ASR) to stripe rust, which is caused by Puccinia striiformis f. sp. tritici (Pst). To map the quantitative trait loci (QTL) for stripe rust resistance, an F6−10 recombinant inbred line (RIL) population from a cross of Mingxian 169 × Pingdong 34 was phenotyped for stripe rust response over multiple years in fields under natural infection conditions and with selected Pst races under controlled greenhouse conditions, and genotyping was performed with a 90K single nucleotide polymorphism (SNP) array chip. Inclusive composite interval mapping (ICIM) identified 12 APR resistance QTLs and 3 ASR resistance QTLs. Among the 12 APR resistance QTLs, QYrpd.swust-1BL (explaining 9.24–13.33% of the phenotypic variation), QYrpd.swust-3AL.1 (11.41–14.80%), QYrpd.swust-3AL.2 (11.55–16.10%), QYrpd.swust-6BL (9.39–12.78%), QYrpd.swust-6DL (9.52–16.36%), QYrpd.swust-7AL (9.09–17.0%), and QYrpd.swust-7DL (8.87–11.38%) were more abundant than in the five tested environments and QYrpd.swust-1AS (11.05–12.72%), QYrpd.swust-1DL (9.81–13.05%), QYrpd.swust-2BL.1 (9.69–10.57%), QYrpd.swust-2BL.2 (10.36–12.97%), and QYrpd.swust-2BL.3 (9.54–13.15%) were significant in some of the tests. The three ASR resistance QTLs QYrpd.swust-2AS (9.69–13.58%), QYrpd.swust-2BL.4 (9.49–12.07%), and QYrpd.swust-7AS (16.16%) were detected based on the reactions in the seedlings tested with the CYR34 Pst race. Among the 15 QTLs detected in Pindong 34, the ASR resistance gene QYrpd.swust-7AS mapped on the short arm of chromosome 7A was likely similar to the previously reported QTL Yr61 in the region. The QTLs identified in the present study and their closely linked molecular markers could be useful for developing wheat cultivars with durable resistance to stripe rust.https://www.frontiersin.org/articles/10.3389/fpls.2022.932762/fullwheatstripe rustQTL mappingresistance gene90K wheat SNP array
spellingShingle Xinli Zhou
Xin Li
Dejun Han
Suizhuang Yang
Zhensheng Kang
Runsheng Ren
Genome-Wide QTL Mapping for Stripe Rust Resistance in Winter Wheat Pindong 34 Using a 90K SNP Array
Frontiers in Plant Science
wheat
stripe rust
QTL mapping
resistance gene
90K wheat SNP array
title Genome-Wide QTL Mapping for Stripe Rust Resistance in Winter Wheat Pindong 34 Using a 90K SNP Array
title_full Genome-Wide QTL Mapping for Stripe Rust Resistance in Winter Wheat Pindong 34 Using a 90K SNP Array
title_fullStr Genome-Wide QTL Mapping for Stripe Rust Resistance in Winter Wheat Pindong 34 Using a 90K SNP Array
title_full_unstemmed Genome-Wide QTL Mapping for Stripe Rust Resistance in Winter Wheat Pindong 34 Using a 90K SNP Array
title_short Genome-Wide QTL Mapping for Stripe Rust Resistance in Winter Wheat Pindong 34 Using a 90K SNP Array
title_sort genome wide qtl mapping for stripe rust resistance in winter wheat pindong 34 using a 90k snp array
topic wheat
stripe rust
QTL mapping
resistance gene
90K wheat SNP array
url https://www.frontiersin.org/articles/10.3389/fpls.2022.932762/full
work_keys_str_mv AT xinlizhou genomewideqtlmappingforstriperustresistanceinwinterwheatpindong34usinga90ksnparray
AT xinli genomewideqtlmappingforstriperustresistanceinwinterwheatpindong34usinga90ksnparray
AT dejunhan genomewideqtlmappingforstriperustresistanceinwinterwheatpindong34usinga90ksnparray
AT suizhuangyang genomewideqtlmappingforstriperustresistanceinwinterwheatpindong34usinga90ksnparray
AT zhenshengkang genomewideqtlmappingforstriperustresistanceinwinterwheatpindong34usinga90ksnparray
AT runshengren genomewideqtlmappingforstriperustresistanceinwinterwheatpindong34usinga90ksnparray