Cargando…

Function and evolution of allelic variations of Sr13 conferring resistance to stem rust in tetraploid wheat (Triticum turgidum L.)

The resistance gene Sr13 is one of the most important genes in durum wheat for controlling stem rust caused by Puccinia graminis f. sp. tritici (Pgt). The Sr13 functional gene CNL13 has haplotypes R1, R2 and R3. The R1/R3 and R2 haplotypes were originally designated as alleles Sr13a and Sr13b, respe...

Descripción completa

Detalles Bibliográficos
Autores principales: Gill, Baljeet K., Klindworth, Daryl L., Rouse, Matthew N., Zhang, Jinglun, Zhang, Qijun, Sharma, Jyoti S., Chu, Chenggen, Long, Yunming, Chao, Shiaoman, Olivera, Pablo D., Friesen, Timothy L., Zhong, Shaobin, Jin, Yue, Faris, Justin D., Fiedler, Jason D., Elias, Elias M., Liu, Shuyu, Cai, Xiwen, Xu, Steven S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8362117/
https://www.ncbi.nlm.nih.gov/pubmed/33825238
http://dx.doi.org/10.1111/tpj.15263
_version_ 1783738092720488448
author Gill, Baljeet K.
Klindworth, Daryl L.
Rouse, Matthew N.
Zhang, Jinglun
Zhang, Qijun
Sharma, Jyoti S.
Chu, Chenggen
Long, Yunming
Chao, Shiaoman
Olivera, Pablo D.
Friesen, Timothy L.
Zhong, Shaobin
Jin, Yue
Faris, Justin D.
Fiedler, Jason D.
Elias, Elias M.
Liu, Shuyu
Cai, Xiwen
Xu, Steven S.
author_facet Gill, Baljeet K.
Klindworth, Daryl L.
Rouse, Matthew N.
Zhang, Jinglun
Zhang, Qijun
Sharma, Jyoti S.
Chu, Chenggen
Long, Yunming
Chao, Shiaoman
Olivera, Pablo D.
Friesen, Timothy L.
Zhong, Shaobin
Jin, Yue
Faris, Justin D.
Fiedler, Jason D.
Elias, Elias M.
Liu, Shuyu
Cai, Xiwen
Xu, Steven S.
author_sort Gill, Baljeet K.
collection PubMed
description The resistance gene Sr13 is one of the most important genes in durum wheat for controlling stem rust caused by Puccinia graminis f. sp. tritici (Pgt). The Sr13 functional gene CNL13 has haplotypes R1, R2 and R3. The R1/R3 and R2 haplotypes were originally designated as alleles Sr13a and Sr13b, respectively. To detect additional Sr13 alleles, we developed Kompetitive allele specific PCR (KASP™) marker KASPSr13 and four semi‐thermal asymmetric reverse PCR markers, rwgsnp37–rwgsnp40, based on the CNL13 sequence. These markers were shown to detect R1, R2 and R3 haplotypes in a panel of diverse tetraploid wheat accessions. We also observed the presence of Sr13 in durum line CAT‐A1, although it lacked any of the known haplotypes. Sequence analysis revealed that CNL13 of CAT‐A1 differed from the susceptible haplotype S1 by a single nucleotide (C2200T) in the leucine‐rich repeat region and differed from the other three R haplotypes by one or two additional nucleotides, confirming that CAT‐A1 carries a new (R4) haplotype. Stem rust tests on the monogenic, transgenic and mutant lines showed that R1 differed from R3 in its susceptibility to races TCMJC and THTSC, whereas R4 differed from all other haplotypes for susceptibility to TTKSK, TPPKC and TCCJC. Based on these differences, we designate the R1, R3 and R4 haplotypes as alleles Sr13a, Sr13c and Sr13d, respectively. This study indicates that Sr13d may be the primitive functional allele originating from the S1 haplotype via a point mutation, with the other three R alleles probably being derived from Sr13d through one or two additional point mutations.
format Online
Article
Text
id pubmed-8362117
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-83621172021-08-17 Function and evolution of allelic variations of Sr13 conferring resistance to stem rust in tetraploid wheat (Triticum turgidum L.) Gill, Baljeet K. Klindworth, Daryl L. Rouse, Matthew N. Zhang, Jinglun Zhang, Qijun Sharma, Jyoti S. Chu, Chenggen Long, Yunming Chao, Shiaoman Olivera, Pablo D. Friesen, Timothy L. Zhong, Shaobin Jin, Yue Faris, Justin D. Fiedler, Jason D. Elias, Elias M. Liu, Shuyu Cai, Xiwen Xu, Steven S. Plant J Original Articles The resistance gene Sr13 is one of the most important genes in durum wheat for controlling stem rust caused by Puccinia graminis f. sp. tritici (Pgt). The Sr13 functional gene CNL13 has haplotypes R1, R2 and R3. The R1/R3 and R2 haplotypes were originally designated as alleles Sr13a and Sr13b, respectively. To detect additional Sr13 alleles, we developed Kompetitive allele specific PCR (KASP™) marker KASPSr13 and four semi‐thermal asymmetric reverse PCR markers, rwgsnp37–rwgsnp40, based on the CNL13 sequence. These markers were shown to detect R1, R2 and R3 haplotypes in a panel of diverse tetraploid wheat accessions. We also observed the presence of Sr13 in durum line CAT‐A1, although it lacked any of the known haplotypes. Sequence analysis revealed that CNL13 of CAT‐A1 differed from the susceptible haplotype S1 by a single nucleotide (C2200T) in the leucine‐rich repeat region and differed from the other three R haplotypes by one or two additional nucleotides, confirming that CAT‐A1 carries a new (R4) haplotype. Stem rust tests on the monogenic, transgenic and mutant lines showed that R1 differed from R3 in its susceptibility to races TCMJC and THTSC, whereas R4 differed from all other haplotypes for susceptibility to TTKSK, TPPKC and TCCJC. Based on these differences, we designate the R1, R3 and R4 haplotypes as alleles Sr13a, Sr13c and Sr13d, respectively. This study indicates that Sr13d may be the primitive functional allele originating from the S1 haplotype via a point mutation, with the other three R alleles probably being derived from Sr13d through one or two additional point mutations. John Wiley and Sons Inc. 2021-05-29 2021-06 /pmc/articles/PMC8362117/ /pubmed/33825238 http://dx.doi.org/10.1111/tpj.15263 Text en © 2021 Society for Experimental Biology and John Wiley & Sons Ltd https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Gill, Baljeet K.
Klindworth, Daryl L.
Rouse, Matthew N.
Zhang, Jinglun
Zhang, Qijun
Sharma, Jyoti S.
Chu, Chenggen
Long, Yunming
Chao, Shiaoman
Olivera, Pablo D.
Friesen, Timothy L.
Zhong, Shaobin
Jin, Yue
Faris, Justin D.
Fiedler, Jason D.
Elias, Elias M.
Liu, Shuyu
Cai, Xiwen
Xu, Steven S.
Function and evolution of allelic variations of Sr13 conferring resistance to stem rust in tetraploid wheat (Triticum turgidum L.)
title Function and evolution of allelic variations of Sr13 conferring resistance to stem rust in tetraploid wheat (Triticum turgidum L.)
title_full Function and evolution of allelic variations of Sr13 conferring resistance to stem rust in tetraploid wheat (Triticum turgidum L.)
title_fullStr Function and evolution of allelic variations of Sr13 conferring resistance to stem rust in tetraploid wheat (Triticum turgidum L.)
title_full_unstemmed Function and evolution of allelic variations of Sr13 conferring resistance to stem rust in tetraploid wheat (Triticum turgidum L.)
title_short Function and evolution of allelic variations of Sr13 conferring resistance to stem rust in tetraploid wheat (Triticum turgidum L.)
title_sort function and evolution of allelic variations of sr13 conferring resistance to stem rust in tetraploid wheat (triticum turgidum l.)
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8362117/
https://www.ncbi.nlm.nih.gov/pubmed/33825238
http://dx.doi.org/10.1111/tpj.15263
work_keys_str_mv AT gillbaljeetk functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT klindworthdaryll functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT rousematthewn functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT zhangjinglun functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT zhangqijun functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT sharmajyotis functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT chuchenggen functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT longyunming functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT chaoshiaoman functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT oliverapablod functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT friesentimothyl functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT zhongshaobin functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT jinyue functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT farisjustind functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT fiedlerjasond functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT eliaseliasm functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT liushuyu functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT caixiwen functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml
AT xustevens functionandevolutionofallelicvariationsofsr13conferringresistancetostemrustintetraploidwheattriticumturgiduml