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通过整合基因组选择和温室表型分析来加速林木育种。

Accelerating forest tree breeding by integrating genomic selection and greenhouse phenotyping.

机构信息

Department of Epidemiology and Biostatistics, Michigan State University, East Lansing, MI, 48824, USA.

School of Forest Resources and Conservation, University of Florida, Gainsville, FL, 32611, USA.

出版信息

Plant Genome. 2020 Nov;13(3):e20048. doi: 10.1002/tpg2.20048. Epub 2020 Aug 20.

Abstract

Breeding forest species can be a costly and slow process because of the extensive areas needed for field trials and the long periods (e.g., five years) that are required to measure economically and environmentally relevant phenotypes (e.g., adult plant biomass or plant height). Genomic selection (GS) and indirect selection using early phenotypes (e.g., phenotypes collected in greenhouse conditions) are two ways by which tree breeding can be accelerated. These approaches can both reduce the costs of field-testing and the time required to make selection decisions. Moreover, these approaches can be highly synergistic. Therefore, in this study, we used a data set comprising DNA genotypes and longitudinal measurements of growth collected from a population of Populus deltoides W. Bartram ex Marshall (eastern cottonwood) in the greenhouse and the field, to evaluate the potential impact of integrating large-scale greenhouse phenotyping with conventional GS. We found that the integration of greenhouse phenotyping and GS can deliver very early selection decisions that are moderately accurate. Therefore, we conclude that the adoption of these approaches, in conjunction with reproductive techniques that shorten the generation interval, can lead to an unprecedented acceleration of selection gains in P. deltoides and, potentially, other commercially planted tree species.

摘要

培育森林物种可能是一个成本高且耗时的过程,因为需要进行田间试验的广阔区域,并且需要很长时间(例如五年)来测量具有经济和环境相关性的表型(例如,成年植物生物量或植物高度)。基因组选择(GS)和使用早期表型(例如,在温室条件下收集的表型)的间接选择是加速树木育种的两种方法。这些方法都可以降低田间试验的成本和做出选择决策所需的时间。此外,这些方法可以高度协同。因此,在这项研究中,我们使用了一个数据集,该数据集包含从温室和田间收集的 Populus deltoides W. Bartram ex Marshall(东部棉白杨)种群的 DNA 基因型和生长的纵向测量值,以评估将大规模温室表型与常规 GS 相结合的潜在影响。我们发现,温室表型和 GS 的整合可以提供非常早期的选择决策,这些决策具有中等准确性。因此,我们得出结论,采用这些方法结合缩短世代间隔的繁殖技术,可以在 P. deltoides 以及其他可能种植的商业树种中实现前所未有的选择增益加速。

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