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利用环境基因组选择来挖掘大麦地方品种中的多基因局部适应性。

Environmental genomic selection to leverage polygenic local adaptation in barley landraces.

作者信息

Halpin-McCormick Anna, Campbell Quinn, Negrão Sónia, Morrell Peter L, Hübner Sariel, Neyhart Jeffrey L, Kantar Michael B

机构信息

Department of Tropical Plant and Soil Sciences, University of Hawaii at Manoa, Honolulu, HI, USA.

School of Biology and Environmental Science, University College Dublin, Dublin, Ireland.

出版信息

Commun Biol. 2025 Apr 16;8(1):618. doi: 10.1038/s42003-025-08045-4.

Abstract

Climate change is threatening agricultural production across the globe. Germplasm collections provide an opportunity to explore where variation exists with important crop species. Genome environment association (GEA) is a standard approach for investigating the genetic basis of adaptation to natural environments. While these analyses provide insight into local adaptation, they have not been widely adopted in breeding or conservation programs. This may be attributable to the difficulty in identifying the best individuals for transplantation/relocation in conservation efforts or identification of the best parents in breeding programs. To explore the potential utility in future breeding programs, we used the cereal crop - barley (Hordeum vulgare L.) due to its wide adaptability to different environments and agroecologies, ranging from marginal and low input fields to high-productive farms. Here, we conduct environmental genomic selection (EGS) on 753 landrace barley accessions using a mini-core of 31 landrace accessions and a de-novo core of 100 as the training populations. Since local adaptation to the environment is polygenic, a whole-genome approach is likely to be more accurate for selection. Here we show how an integrative approach coupling environmental genomic selection and species distribution modelling can help identify key parents for adaptation to specific environmental variables.

摘要

气候变化正威胁着全球的农业生产。种质资源库为探索重要作物品种的变异存在位置提供了契机。基因组环境关联分析(GEA)是研究适应自然环境遗传基础的标准方法。虽然这些分析有助于深入了解局部适应性,但尚未在育种或保护计划中得到广泛应用。这可能是由于在保护工作中难以确定用于移植/重新安置的最佳个体,或者在育种计划中难以确定最佳亲本。为了探索其在未来育种计划中的潜在效用,我们选用了谷类作物——大麦(Hordeum vulgare L.),因为它对不同环境和农业生态具有广泛的适应性,涵盖了从边际和低投入田地到高产农场等各种环境。在此,我们以31份地方品种的微型核心种质和100份从头构建的核心种质作为训练群体,对753份地方品种大麦种质进行环境基因组选择(EGS)。由于对环境的局部适应是多基因的,全基因组方法可能在选择上更为准确。我们在此展示了一种将环境基因组选择与物种分布建模相结合的综合方法,如何有助于识别适应特定环境变量的关键亲本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee3d/12003830/4a92d8b3caa0/42003_2025_8045_Fig1_HTML.jpg

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