Selective Loss of Diversity in Doubled-Haploid Lines from European Maize Landraces

Author:

Zeitler Leo12ORCID,Ross-Ibarra Jeffrey23,Stetter Markus G24ORCID

Affiliation:

1. Department of Biology, Institute of Molecular Plant Biology, ETH Zürich, Zürich, Switzerland

2. Department of Plant Sciences, University of California, Davis, CA

3. Department of Evolution and Ecology, Genome Center, and Center for Population Biology, University of California, Davis, CA, and

4. Institute for Plant Sciences and Cluster of Excellence on Plant Sciences, University of Cologne, Germany

Abstract

Abstract Maize landraces are well adapted to their local environments and present valuable sources of genetic diversity for breeding and conservation. But the maintenance of open-pollinated landraces in ex-situ programs is challenging, as regeneration of seed can often lead to inbreeding depression and the loss of diversity due to genetic drift. Recent reports suggest that the production of doubled-haploid (DH) lines from landraces may serve as a convenient means to preserve genetic diversity in a homozygous form that is immediately useful for modern breeding. The production of doubled-haploid (DH) lines presents an extreme case of inbreeding which results in instantaneous homozygosity genome-wide. Here, we analyzed the effect of DH production on genetic diversity, using genome-wide SNP data from hundreds of individuals of five European landraces and their related DH lines. In contrast to previous findings, we observe a dramatic loss of diversity at both the haplotype level and that of individual SNPs. We identify thousands of SNPs that exhibit allele frequency differences larger than expected under models of neutral genetic drift and document losses of shared haplotypes. We find evidence consistent with selection at functional sites that are potentially involved in the diversity differences between landrace and DH populations. Although we were unable to uncover more details about the mode of selection, we conclude that landrace DH lines may be a valuable tool for the introduction of variation into maize breeding programs but come at the cost of decreased genetic diversity.

Publisher

Oxford University Press (OUP)

Subject

Genetics(clinical),Genetics,Molecular Biology

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Local selection shaped the diversity of European maize landraces;2024-06-07

2. Unraveling Prevalence and Effects of Deleterious Mutations in Maize Elite Lines across Decades of Modern Breeding;Molecular Biology and Evolution;2023-07-26

3. Genotyping of DNA pools identifies untapped landraces and genomic regions to develop next‐generation varieties;Plant Biotechnology Journal;2023-04-13

4. Androgenesis-Based Doubled Haploidy: Past, Present, and Future Perspectives;Frontiers in Plant Science;2022-01-07

5. Existing diversity profile for kernel characteristics of maize germplasm in IAARD-ICABIOGRAD gene bank;THE SECOND INTERNATIONAL CONFERENCE ON GENETIC RESOURCES AND BIOTECHNOLOGY: Harnessing Technology for Conservation and Sustainable Use of Genetic Resources for Food and Agriculture;2022

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