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利用多环境试验鉴定苜蓿五个农艺性状相关的遗传位点

Identification of genetic loci associated with five agronomic traits in alfalfa using multi-environment trials.

作者信息

Lin Sen, Medina Cesar A, Wang Guojie, Combs David, Shewmaker Glenn, Fransen Steve, Llewellyn Don, Norberg Steven, Yu Long-Xi

机构信息

USA Department of Agriculture - Agricultural Research Service, Plant Germplasm Introduction and Testing Research, Prosser, WA, USA.

Department of Crop and Soil Science, Oregon State University, LaGrande, OR, USA.

出版信息

Theor Appl Genet. 2023 Apr 29;136(5):121. doi: 10.1007/s00122-023-04364-4.

Abstract

The use of multi-environment trials to test yield-related traits in a diverse alfalfa panel allowed to find multiple molecular markers associated with complex agronomic traits. Yield is one of the most important target traits in alfalfa breeding; however, yield is a complex trait affected by genetic and environmental factors. In this study, we used multi-environment trials to test yield-related traits in a diverse panel composed of 200 alfalfa accessions and varieties. Phenotypic data of maturity stage measured as mean stage by count (MSC), dry matter content, plant height (PH), biomass yield (Yi), and fall dormancy (FD) were collected in three locations in Idaho, Oregon, and Washington from 2018 to 2020. Single-trial and stagewise analyses were used to obtain estimated trait means of entries by environment. The plants were genotyped using a genotyping by sequencing approach and obtained a genotypic matrix with 97,345 single nucleotide polymorphisms. Genome-wide association studies identified a total of 84 markers associated with the traits analyzed. Of those, 29 markers were in noncoding regions and 55 markers were in coding regions. Ten significant SNPs at the same locus were associated with FD and they were linked to a gene annotated as a nuclear fusion defective 4-like (NFD4). Additional SNPs associated with MSC, PH, and Yi were annotated as transcription factors such as Cysteine3Histidine (C3H), Hap3/NF-YB family, and serine/threonine-protein phosphatase 7 proteins, respectively. Our results provide insight into the genetic factors that influence alfalfa maturity, yield, and dormancy, which is helpful to speed up the genetic gain toward alfalfa yield improvement.

摘要

利用多环境试验对多样化苜蓿群体的产量相关性状进行测试,从而发现了多个与复杂农艺性状相关的分子标记。产量是苜蓿育种中最重要的目标性状之一;然而,产量是一个受遗传和环境因素影响的复杂性状。在本研究中,我们利用多环境试验对由200个苜蓿种质和品种组成的多样化群体的产量相关性状进行了测试。2018年至2020年期间,在爱达荷州、俄勒冈州和华盛顿州的三个地点收集了以计数平均阶段(MSC)衡量的成熟阶段、干物质含量、株高(PH)、生物量产量(Yi)和秋眠性(FD)的表型数据。采用单试验和阶段性分析方法,按环境获得各材料的估计性状均值。利用简化基因组测序方法对植株进行基因分型,获得了一个包含97345个单核苷酸多态性的基因型矩阵。全基因组关联研究共鉴定出84个与所分析性状相关的标记。其中,29个标记位于非编码区,55个标记位于编码区。同一基因座上的10个显著单核苷酸多态性与FD相关,它们与一个注释为核融合缺陷4样(NFD4)的基因连锁。与MSC、PH和Yi相关的其他单核苷酸多态性分别注释为转录因子,如半胱氨酸3组氨酸(C3H)、Hap3/NF-YB家族和丝氨酸/苏氨酸蛋白磷酸酶7蛋白。我们的研究结果为影响苜蓿成熟度、产量和休眠的遗传因素提供了见解,这有助于加快苜蓿产量改良的遗传增益。

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