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热带多年生作物和人工林树木的基因组选择:综述

Genomic selection in tropical perennial crops and plantation trees: a review.

作者信息

Seyum Essubalew Getachew, Bille Ngalle Hermine, Abtew Wosene Gebreselassie, Munyengwa Norman, Bell Joseph Martin, Cros David

机构信息

Department of Plant Biology and Physiology, Faculty of Sciences, University of Yaoundé I, Yaoundé, Cameroon.

Department of Horticulture and Plant Sciences, College of Agriculture and Veterinary Medicine, Jimma University, P.O. Box 307, Jimma, Ethiopia.

出版信息

Mol Breed. 2022 Sep 20;42(10):58. doi: 10.1007/s11032-022-01326-4. eCollection 2022 Oct.

Abstract

UNLABELLED

To overcome the multiple challenges currently faced by agriculture, such as climate change and soil deterioration, more efficient plant breeding strategies are required. Genomic selection (GS) is crucial for the genetic improvement of quantitative traits, as it can increase selection intensity, shorten the generation interval, and improve selection accuracy for traits that are difficult to phenotype. Tropical perennial crops and plantation trees are of major economic importance and have consequently been the subject of many GS articles. In this review, we discuss the factors that affect GS accuracy (statistical models, linkage disequilibrium, information concerning markers, relatedness between training and target populations, the size of the training population, and trait heritability) and the genetic gain expected in these species. The impact of GS will be particularly strong in tropical perennial crops and plantation trees as they have long breeding cycles and constrained selection intensity. Future GS prospects are also discussed. High-throughput phenotyping will allow constructing of large training populations and implementing of phenomic selection. Optimized modeling is needed for longitudinal traits and multi-environment trials. The use of multi-omics, haploblocks, and structural variants will enable going beyond single-locus genotype data. Innovative statistical approaches, like artificial neural networks, are expected to efficiently handle the increasing amounts of heterogeneous multi-scale data. Targeted recombinations on sites identified from profiles of marker effects have the potential to further increase genetic gain. GS can also aid re-domestication and introgression breeding. Finally, GS consortia will play an important role in making the best of these opportunities.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s11032-022-01326-4.

摘要

未标注

为了克服农业目前面临的多重挑战,如气候变化和土壤退化,需要更高效的植物育种策略。基因组选择(GS)对于数量性状的遗传改良至关重要,因为它可以提高选择强度、缩短世代间隔,并提高难以进行表型鉴定的性状的选择准确性。热带多年生作物和人工林树木具有重要的经济意义,因此一直是许多基因组选择文章的主题。在本综述中,我们讨论了影响基因组选择准确性的因素(统计模型、连锁不平衡、标记信息、训练群体与目标群体之间的亲缘关系、训练群体的大小以及性状遗传力)以及这些物种预期的遗传增益。基因组选择对热带多年生作物和人工林树木的影响将尤为显著,因为它们的育种周期长且选择强度受限。我们还讨论了基因组选择的未来前景。高通量表型分析将有助于构建大型训练群体并实施表型组选择。对于纵向性状和多环境试验,需要优化建模。多组学、单倍型块和结构变异的应用将使我们能够超越单基因座基因型数据。像人工神经网络这样的创新统计方法有望有效处理日益增多的异质多尺度数据。基于标记效应图谱确定的位点进行靶向重组有可能进一步提高遗传增益。基因组选择还可以辅助重新驯化和渐渗育种。最后,基因组选择联盟将在充分利用这些机会方面发挥重要作用。

补充信息

在线版本包含可在10.1007/s11032-022-01326-4获取的补充材料。

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