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Dissection of genomic drivers of spike morphology changes in wheat by high-throughput phenotyping

Cell Reports · 6 Aug 2025 · 10.1016/j.celrep.2025.116120

Abstract

Spike morphology is crucial for wheat (Triticum aestivum L.) yield and environmental adaptation. We developed a high-throughput phenotyping platform to dissect spike morphology traits based on 54 traits in 1,359 wheat accessions. These 54 spike morphology traits exhibited clear geographical differences among 306 worldwide accessions and breeding selection trend across different time windows for 1,053 accessions released from 1900 to 2020 in China. Based on geographical distribution and breeding selection of haplotypes, we attribute the differences in spike morphology to variable haplotype combinations. Wheat breeding breaks the trade-off between spike length and width/thickness, resulting in increased spike volume. A large proportion of genomic regions has been identified across wheat varieties and utilized as a fixed group to facilitate the targeted improvement and selection of desirable traits during wheat breeding programs. Overall, we provide a resource for the molecular design of spike morphology to facilitate future wheat breeding.

Plant phenotyping relevance

コムギ穂の形態形質を多数個体から取得するハイスループット表現型解析プラットフォームの開発と適用が研究の中心である。

abstractWe developed a high-throughput phenotyping platform to dissect spike morphology traits based on 54 traits in 1,359 wheat accessions.

Code and data availability

The paper's high-resolution spike phenotyping platform software is explicitly released as public code by the authors on GitHub. The genotype datasets (GVM000272/GVM000720) are molecular omics deposits and do not qualify as phenotype/trait data; other listed tools are generic third-party libraries.

Codepublic

n/gvm) under accession number GVM00027239 or GVM000720. • The genotype data for 1053 Chinese accessions (1900–2020) are pub­ licly available at the Genome Variation Map (https://bigd.big.ac.cn/gvm) under accession number GVM000720. • The software for the high-resolution phenotyping platform is publicly avail­ able with the link https://github.com/ShenKC-hub/wheat_platform1.0. • Any additional information required to reanalyze the data reported in this paper is available from the lead contact upon request. ACKNOWLEDGMENTS This work was supported by the National Natural Science Foundation of China (32272122, 32401876, and 32225038),the Strategic Priority Research Program of Chinese Academy of

Open resource ↗ShenKC-hub/wheat_platform1.0 · wheat_platform1.0 · pdf-raw-page:15 lines:1-81

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