Cargando…

De novo chromosome‐level genome of a semi‐dwarf cultivar of Prunus persica identifies the aquaporin PpTIP2 as responsible for temperature‐sensitive semi‐dwarf trait and PpB3‐1 for flower type and size

Peach (Prunus persica) is one of the most important fruit crops globally, but its cultivation can be hindered by large tree size. ‘Zhongyoutao 14’ (CN14) is a temperature‐sensitive semi‐dwarf (TSSD) cultivar which might be useful as breeding stock. The genome of CN14 was sequenced and assembled de n...

Descripción completa

Detalles Bibliográficos
Autores principales: Lian, Xiaodong, Zhang, Haipeng, Jiang, Chao, Gao, Fan, Yan, Liu, Zheng, Xianbo, Cheng, Jun, Wang, Wei, Wang, Xiaobei, Ye, Xia, Li, Jidong, Zhang, Langlang, Li, Zhiqian, Tan, Bin, Feng, Jiancan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9055816/
https://www.ncbi.nlm.nih.gov/pubmed/34919780
http://dx.doi.org/10.1111/pbi.13767
_version_ 1784697497359220736
author Lian, Xiaodong
Zhang, Haipeng
Jiang, Chao
Gao, Fan
Yan, Liu
Zheng, Xianbo
Cheng, Jun
Wang, Wei
Wang, Xiaobei
Ye, Xia
Li, Jidong
Zhang, Langlang
Li, Zhiqian
Tan, Bin
Feng, Jiancan
author_facet Lian, Xiaodong
Zhang, Haipeng
Jiang, Chao
Gao, Fan
Yan, Liu
Zheng, Xianbo
Cheng, Jun
Wang, Wei
Wang, Xiaobei
Ye, Xia
Li, Jidong
Zhang, Langlang
Li, Zhiqian
Tan, Bin
Feng, Jiancan
author_sort Lian, Xiaodong
collection PubMed
description Peach (Prunus persica) is one of the most important fruit crops globally, but its cultivation can be hindered by large tree size. ‘Zhongyoutao 14’ (CN14) is a temperature‐sensitive semi‐dwarf (TSSD) cultivar which might be useful as breeding stock. The genome of CN14 was sequenced and assembled de novo using single‐molecule real‐time sequencing and chromosome conformation capture assembly. A high‐quality genome was assembled and annotated, with 228.82 Mb mapped to eight chromosomes. Eighty‐six re‐sequenced F(1) individuals and 334 previously re‐sequenced accessions were used to identify candidate genes controlling TSSD and flower type and size. An aquaporin tonoplast intrinsic protein (PpTIP2) was a strong candidate gene for control of TSSD. Sequence variations in the upstream regulatory region of PpTIP2 correlated with different transcriptional activity at different temperatures. PpB3‐1, a candidate gene for flower type (SH) and flower size, contributed to petal development and promoted petal enlargement. The locus of another 12 agronomic traits was identified through genome‐wide association study. Most of these loci exhibited consistent and precise association signals, except for flesh texture and flesh adhesion. A 6015‐bp insertion in exon 3 and a 26‐bp insertion upstream of PpMYB25 were associated with fruit hairless. Along with a 70.5‐Kb gap at the F‐M locus in CN14, another two new alleles were identified in peach accessions. Our findings will not only promote genomic research and agronomic breeding in peach but also provide a foundation for the peach pan‐genome.
format Online
Article
Text
id pubmed-9055816
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-90558162022-05-03 De novo chromosome‐level genome of a semi‐dwarf cultivar of Prunus persica identifies the aquaporin PpTIP2 as responsible for temperature‐sensitive semi‐dwarf trait and PpB3‐1 for flower type and size Lian, Xiaodong Zhang, Haipeng Jiang, Chao Gao, Fan Yan, Liu Zheng, Xianbo Cheng, Jun Wang, Wei Wang, Xiaobei Ye, Xia Li, Jidong Zhang, Langlang Li, Zhiqian Tan, Bin Feng, Jiancan Plant Biotechnol J Research Articles Peach (Prunus persica) is one of the most important fruit crops globally, but its cultivation can be hindered by large tree size. ‘Zhongyoutao 14’ (CN14) is a temperature‐sensitive semi‐dwarf (TSSD) cultivar which might be useful as breeding stock. The genome of CN14 was sequenced and assembled de novo using single‐molecule real‐time sequencing and chromosome conformation capture assembly. A high‐quality genome was assembled and annotated, with 228.82 Mb mapped to eight chromosomes. Eighty‐six re‐sequenced F(1) individuals and 334 previously re‐sequenced accessions were used to identify candidate genes controlling TSSD and flower type and size. An aquaporin tonoplast intrinsic protein (PpTIP2) was a strong candidate gene for control of TSSD. Sequence variations in the upstream regulatory region of PpTIP2 correlated with different transcriptional activity at different temperatures. PpB3‐1, a candidate gene for flower type (SH) and flower size, contributed to petal development and promoted petal enlargement. The locus of another 12 agronomic traits was identified through genome‐wide association study. Most of these loci exhibited consistent and precise association signals, except for flesh texture and flesh adhesion. A 6015‐bp insertion in exon 3 and a 26‐bp insertion upstream of PpMYB25 were associated with fruit hairless. Along with a 70.5‐Kb gap at the F‐M locus in CN14, another two new alleles were identified in peach accessions. Our findings will not only promote genomic research and agronomic breeding in peach but also provide a foundation for the peach pan‐genome. John Wiley and Sons Inc. 2022-01-04 2022-05 /pmc/articles/PMC9055816/ /pubmed/34919780 http://dx.doi.org/10.1111/pbi.13767 Text en © 2021 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists 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 Research Articles
Lian, Xiaodong
Zhang, Haipeng
Jiang, Chao
Gao, Fan
Yan, Liu
Zheng, Xianbo
Cheng, Jun
Wang, Wei
Wang, Xiaobei
Ye, Xia
Li, Jidong
Zhang, Langlang
Li, Zhiqian
Tan, Bin
Feng, Jiancan
De novo chromosome‐level genome of a semi‐dwarf cultivar of Prunus persica identifies the aquaporin PpTIP2 as responsible for temperature‐sensitive semi‐dwarf trait and PpB3‐1 for flower type and size
title De novo chromosome‐level genome of a semi‐dwarf cultivar of Prunus persica identifies the aquaporin PpTIP2 as responsible for temperature‐sensitive semi‐dwarf trait and PpB3‐1 for flower type and size
title_full De novo chromosome‐level genome of a semi‐dwarf cultivar of Prunus persica identifies the aquaporin PpTIP2 as responsible for temperature‐sensitive semi‐dwarf trait and PpB3‐1 for flower type and size
title_fullStr De novo chromosome‐level genome of a semi‐dwarf cultivar of Prunus persica identifies the aquaporin PpTIP2 as responsible for temperature‐sensitive semi‐dwarf trait and PpB3‐1 for flower type and size
title_full_unstemmed De novo chromosome‐level genome of a semi‐dwarf cultivar of Prunus persica identifies the aquaporin PpTIP2 as responsible for temperature‐sensitive semi‐dwarf trait and PpB3‐1 for flower type and size
title_short De novo chromosome‐level genome of a semi‐dwarf cultivar of Prunus persica identifies the aquaporin PpTIP2 as responsible for temperature‐sensitive semi‐dwarf trait and PpB3‐1 for flower type and size
title_sort de novo chromosome‐level genome of a semi‐dwarf cultivar of prunus persica identifies the aquaporin pptip2 as responsible for temperature‐sensitive semi‐dwarf trait and ppb3‐1 for flower type and size
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9055816/
https://www.ncbi.nlm.nih.gov/pubmed/34919780
http://dx.doi.org/10.1111/pbi.13767
work_keys_str_mv AT lianxiaodong denovochromosomelevelgenomeofasemidwarfcultivarofprunuspersicaidentifiestheaquaporinpptip2asresponsiblefortemperaturesensitivesemidwarftraitandppb31forflowertypeandsize
AT zhanghaipeng denovochromosomelevelgenomeofasemidwarfcultivarofprunuspersicaidentifiestheaquaporinpptip2asresponsiblefortemperaturesensitivesemidwarftraitandppb31forflowertypeandsize
AT jiangchao denovochromosomelevelgenomeofasemidwarfcultivarofprunuspersicaidentifiestheaquaporinpptip2asresponsiblefortemperaturesensitivesemidwarftraitandppb31forflowertypeandsize
AT gaofan denovochromosomelevelgenomeofasemidwarfcultivarofprunuspersicaidentifiestheaquaporinpptip2asresponsiblefortemperaturesensitivesemidwarftraitandppb31forflowertypeandsize
AT yanliu denovochromosomelevelgenomeofasemidwarfcultivarofprunuspersicaidentifiestheaquaporinpptip2asresponsiblefortemperaturesensitivesemidwarftraitandppb31forflowertypeandsize
AT zhengxianbo denovochromosomelevelgenomeofasemidwarfcultivarofprunuspersicaidentifiestheaquaporinpptip2asresponsiblefortemperaturesensitivesemidwarftraitandppb31forflowertypeandsize
AT chengjun denovochromosomelevelgenomeofasemidwarfcultivarofprunuspersicaidentifiestheaquaporinpptip2asresponsiblefortemperaturesensitivesemidwarftraitandppb31forflowertypeandsize
AT wangwei denovochromosomelevelgenomeofasemidwarfcultivarofprunuspersicaidentifiestheaquaporinpptip2asresponsiblefortemperaturesensitivesemidwarftraitandppb31forflowertypeandsize
AT wangxiaobei denovochromosomelevelgenomeofasemidwarfcultivarofprunuspersicaidentifiestheaquaporinpptip2asresponsiblefortemperaturesensitivesemidwarftraitandppb31forflowertypeandsize
AT yexia denovochromosomelevelgenomeofasemidwarfcultivarofprunuspersicaidentifiestheaquaporinpptip2asresponsiblefortemperaturesensitivesemidwarftraitandppb31forflowertypeandsize
AT lijidong denovochromosomelevelgenomeofasemidwarfcultivarofprunuspersicaidentifiestheaquaporinpptip2asresponsiblefortemperaturesensitivesemidwarftraitandppb31forflowertypeandsize
AT zhanglanglang denovochromosomelevelgenomeofasemidwarfcultivarofprunuspersicaidentifiestheaquaporinpptip2asresponsiblefortemperaturesensitivesemidwarftraitandppb31forflowertypeandsize
AT lizhiqian denovochromosomelevelgenomeofasemidwarfcultivarofprunuspersicaidentifiestheaquaporinpptip2asresponsiblefortemperaturesensitivesemidwarftraitandppb31forflowertypeandsize
AT tanbin denovochromosomelevelgenomeofasemidwarfcultivarofprunuspersicaidentifiestheaquaporinpptip2asresponsiblefortemperaturesensitivesemidwarftraitandppb31forflowertypeandsize
AT fengjiancan denovochromosomelevelgenomeofasemidwarfcultivarofprunuspersicaidentifiestheaquaporinpptip2asresponsiblefortemperaturesensitivesemidwarftraitandppb31forflowertypeandsize