生物
计算生物学
多样性(政治)
基因组学
进化生物学
遗传学
基因组
人类学
基因
社会学
作者
Albert W. Schulthess,Sandip M. Kale,Fang Liu,Yusheng Zhao,Norman Philipp,Maximilian Rembe,Yong Jiang,Ulrike Beukert,Albrecht Serfling,Axel Himmelbach,Jörg Fuchs,Markus Oppermann,Stéphan Weise,Philipp H. G. Boeven,Johannes Schacht,C. Friedrich H. Longin,Sonja Kollers,Nina Pfeiffer,Viktor Korzun,Matthias Lange
出处
期刊:Nature Genetics
[Nature Portfolio]
日期:2022-10-01
卷期号:54 (10): 1544-1552
被引量:57
标识
DOI:10.1038/s41588-022-01189-7
摘要
The great efforts spent in the maintenance of past diversity in genebanks are rationalized by the potential role of plant genetic resources (PGR) in future crop improvement-a concept whose practical implementation has fallen short of expectations. Here, we implement a genomics-informed prebreeding strategy for wheat improvement that does not discriminate against nonadapted germplasm. We collect and analyze dense genetic profiles for a large winter wheat collection and evaluate grain yield and resistance to yellow rust (YR) in bespoke core sets. Breeders already profit from wild introgressions but PGR still offer useful, yet unused, diversity. Potential donors of resistance sources not yet deployed in breeding were detected, while the prebreeding contribution of PGR to yield was estimated through 'Elite × PGR' F1 crosses. Genomic prediction within and across genebanks identified the best parents to be used in crosses with elite cultivars whose advanced progenies can outyield current wheat varieties in multiple field trials.
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