Cargando…
Pedigree-based analysis in multi-parental diploid rose populations reveals QTLs for cercospora leaf spot disease resistance
Cercospora leaf spot (CLS) (Cercospora rosicola) is a major fungal disease of roses (Rosa sp.) in the southeastern U.S. Developing CLS-resistant cultivars offers a potential solution to reduce pesticide use. Yet, no work has been performed on CLS resistance. This study aimed to identify QTLs and to...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9859674/ https://www.ncbi.nlm.nih.gov/pubmed/36684798 http://dx.doi.org/10.3389/fpls.2022.1082461 |
_version_ | 1784874412923682816 |
---|---|
author | Rawandoozi, Zena J. Young, Ellen L. Kang, Stella Yan, Muqing Noyan, Seza Fu, Qiuyi Hochhaus, Tessa Rawandoozi, Maad Y. Klein, Patricia E. Byrne, David H. Riera-Lizarazu, Oscar |
author_facet | Rawandoozi, Zena J. Young, Ellen L. Kang, Stella Yan, Muqing Noyan, Seza Fu, Qiuyi Hochhaus, Tessa Rawandoozi, Maad Y. Klein, Patricia E. Byrne, David H. Riera-Lizarazu, Oscar |
author_sort | Rawandoozi, Zena J. |
collection | PubMed |
description | Cercospora leaf spot (CLS) (Cercospora rosicola) is a major fungal disease of roses (Rosa sp.) in the southeastern U.S. Developing CLS-resistant cultivars offers a potential solution to reduce pesticide use. Yet, no work has been performed on CLS resistance. This study aimed to identify QTLs and to characterize alleles for resistance to CLS. The study used pedigree-based QTL analysis to dissect the genetic basis of CLS resistance using two multi-parental diploid rose populations (TX2WOB and TX2WSE) evaluated across five years in two Texas locations. A total 38 QTLs were identified across both populations and distributed over all linkage groups. Three QTLs on LG3, LG4, and LG6 were consistently mapped over multiple environments. The LG3 QTL was mapped in a region between 18.9 and 27.8 Mbp on the Rosa chinensis genome assembly. This QTL explained 13 to 25% of phenotypic variance. The LG4 QTL detected in the TX2WOB population spanned a 35.2 to 39.7 Mbp region with phenotypic variance explained (PVE) up to 48%. The LG6 QTL detected in the TX2WSE population was localized to 17.9 to 33.6 Mbp interval with PVE up to 36%. Also, this study found multiple degrees of favorable allele effects (q-allele) associated with decreasing CLS at major loci. Ancestors ‘OB’, ‘Violette’, and PP-M4-4 were sources of resistance q-alleles. These results will aid breeders in parental selection to develop CLS-resistant rose cultivars. Ultimately, high throughput DNA tests that target major loci for CLS could be developed for routine use in a DNA-informed breeding program. |
format | Online Article Text |
id | pubmed-9859674 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-98596742023-01-21 Pedigree-based analysis in multi-parental diploid rose populations reveals QTLs for cercospora leaf spot disease resistance Rawandoozi, Zena J. Young, Ellen L. Kang, Stella Yan, Muqing Noyan, Seza Fu, Qiuyi Hochhaus, Tessa Rawandoozi, Maad Y. Klein, Patricia E. Byrne, David H. Riera-Lizarazu, Oscar Front Plant Sci Plant Science Cercospora leaf spot (CLS) (Cercospora rosicola) is a major fungal disease of roses (Rosa sp.) in the southeastern U.S. Developing CLS-resistant cultivars offers a potential solution to reduce pesticide use. Yet, no work has been performed on CLS resistance. This study aimed to identify QTLs and to characterize alleles for resistance to CLS. The study used pedigree-based QTL analysis to dissect the genetic basis of CLS resistance using two multi-parental diploid rose populations (TX2WOB and TX2WSE) evaluated across five years in two Texas locations. A total 38 QTLs were identified across both populations and distributed over all linkage groups. Three QTLs on LG3, LG4, and LG6 were consistently mapped over multiple environments. The LG3 QTL was mapped in a region between 18.9 and 27.8 Mbp on the Rosa chinensis genome assembly. This QTL explained 13 to 25% of phenotypic variance. The LG4 QTL detected in the TX2WOB population spanned a 35.2 to 39.7 Mbp region with phenotypic variance explained (PVE) up to 48%. The LG6 QTL detected in the TX2WSE population was localized to 17.9 to 33.6 Mbp interval with PVE up to 36%. Also, this study found multiple degrees of favorable allele effects (q-allele) associated with decreasing CLS at major loci. Ancestors ‘OB’, ‘Violette’, and PP-M4-4 were sources of resistance q-alleles. These results will aid breeders in parental selection to develop CLS-resistant rose cultivars. Ultimately, high throughput DNA tests that target major loci for CLS could be developed for routine use in a DNA-informed breeding program. Frontiers Media S.A. 2023-01-06 /pmc/articles/PMC9859674/ /pubmed/36684798 http://dx.doi.org/10.3389/fpls.2022.1082461 Text en Copyright © 2023 Rawandoozi, Young, Kang, Yan, Noyan, Fu, Hochhaus, Rawandoozi, Klein, Byrne and Riera-Lizarazu https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Plant Science Rawandoozi, Zena J. Young, Ellen L. Kang, Stella Yan, Muqing Noyan, Seza Fu, Qiuyi Hochhaus, Tessa Rawandoozi, Maad Y. Klein, Patricia E. Byrne, David H. Riera-Lizarazu, Oscar Pedigree-based analysis in multi-parental diploid rose populations reveals QTLs for cercospora leaf spot disease resistance |
title | Pedigree-based analysis in multi-parental diploid rose populations reveals QTLs for cercospora leaf spot disease resistance |
title_full | Pedigree-based analysis in multi-parental diploid rose populations reveals QTLs for cercospora leaf spot disease resistance |
title_fullStr | Pedigree-based analysis in multi-parental diploid rose populations reveals QTLs for cercospora leaf spot disease resistance |
title_full_unstemmed | Pedigree-based analysis in multi-parental diploid rose populations reveals QTLs for cercospora leaf spot disease resistance |
title_short | Pedigree-based analysis in multi-parental diploid rose populations reveals QTLs for cercospora leaf spot disease resistance |
title_sort | pedigree-based analysis in multi-parental diploid rose populations reveals qtls for cercospora leaf spot disease resistance |
topic | Plant Science |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9859674/ https://www.ncbi.nlm.nih.gov/pubmed/36684798 http://dx.doi.org/10.3389/fpls.2022.1082461 |
work_keys_str_mv | AT rawandoozizenaj pedigreebasedanalysisinmultiparentaldiploidrosepopulationsrevealsqtlsforcercosporaleafspotdiseaseresistance AT youngellenl pedigreebasedanalysisinmultiparentaldiploidrosepopulationsrevealsqtlsforcercosporaleafspotdiseaseresistance AT kangstella pedigreebasedanalysisinmultiparentaldiploidrosepopulationsrevealsqtlsforcercosporaleafspotdiseaseresistance AT yanmuqing pedigreebasedanalysisinmultiparentaldiploidrosepopulationsrevealsqtlsforcercosporaleafspotdiseaseresistance AT noyanseza pedigreebasedanalysisinmultiparentaldiploidrosepopulationsrevealsqtlsforcercosporaleafspotdiseaseresistance AT fuqiuyi pedigreebasedanalysisinmultiparentaldiploidrosepopulationsrevealsqtlsforcercosporaleafspotdiseaseresistance AT hochhaustessa pedigreebasedanalysisinmultiparentaldiploidrosepopulationsrevealsqtlsforcercosporaleafspotdiseaseresistance AT rawandoozimaady pedigreebasedanalysisinmultiparentaldiploidrosepopulationsrevealsqtlsforcercosporaleafspotdiseaseresistance AT kleinpatriciae pedigreebasedanalysisinmultiparentaldiploidrosepopulationsrevealsqtlsforcercosporaleafspotdiseaseresistance AT byrnedavidh pedigreebasedanalysisinmultiparentaldiploidrosepopulationsrevealsqtlsforcercosporaleafspotdiseaseresistance AT rieralizarazuoscar pedigreebasedanalysisinmultiparentaldiploidrosepopulationsrevealsqtlsforcercosporaleafspotdiseaseresistance |