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A platform for whole-genome speed introgression from Aegilops tauschiito wheat for breeding future crops

Authors :
Li, Hao
Zhu, Lele
Fan, Ruixiao
Li, Zheng
Liu, Yifan
Shaheen, Aaqib
Nie, Fang
Li, Can
Liu, Xuqin
Li, Yuanyuan
Liu, Wenjuan
Yang, Yingying
Guo, Tutu
Zhu, Yu
Bu, Mengchen
Li, Chenglin
Liang, Huihui
Bai, Shenglong
Ma, Feifei
Guo, Guanghui
Zhang, Zhen
Huang, Jinling
Zhou, Yun
Song, Chun-Peng
Source :
Nature Protocols; February 2024, Vol. 19 Issue: 2 p281-312, 32p
Publication Year :
2024

Abstract

Breeding new and sustainable crop cultivars of high yields and desirable traits has been a major challenge for ensuring food security for the growing global human population. For polyploid crops such as wheat, introducing genetic variation from wild relatives of its subgenomes is a key strategy to improve the quality of their breeding pools. Over the past decades, considerable progress has been made in speed breeding, genome sequencing, high-throughput phenotyping and genomics-assisted breeding, which now allows us to realize whole-genome introgression from wild relatives to modern crops. Here, we present a standardized protocol to rapidly introgress the entire genome of Aegilops tauschii, the progenitor of the D subgenome of bread wheat, into elite wheat backgrounds. This protocol integrates multiple modern high-throughput technologies and includes three major phases: development of synthetic octaploid wheat, generation of hexaploid A. tauschii–wheat introgression lines (A-WIs) and homozygosis of the generated A-WIs. Our approach readily generates stable introgression lines in 2 y, thus greatly accelerating the generation of A-WIs and the introduction of desirable genes from A. tauschiito wheat cultivars. These A-WIs are valuable for wheat-breeding programs and functional gene discovery. The current protocol can be easily modified and used for introgressing the genomes of wild relatives to other polyploid crops.

Details

Language :
English
ISSN :
17542189 and 17502799
Volume :
19
Issue :
2
Database :
Supplemental Index
Journal :
Nature Protocols
Publication Type :
Periodical
Accession number :
ejs64732115
Full Text :
https://doi.org/10.1038/s41596-023-00922-8