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大豆节间数、株高、种子重量和种子产量的全基因组关联及上位性互作

Genome-wide associations and epistatic interactions for internode number, plant height, seed weight and seed yield in soybean.

作者信息

Assefa Teshale, Otyama Paul I, Brown Anne V, Kalberer Scott R, Kulkarni Roshan S, Cannon Steven B

机构信息

ORISE Fellow, USDA-ARS, Corn Insects and Crop Genetics Research Unit, Ames, Iowa, USA.

Agronomy Department, Iowa State University, Ames, IA, USA.

出版信息

BMC Genomics. 2019 Jun 26;20(1):527. doi: 10.1186/s12864-019-5907-7.

Abstract

BACKGROUND

Breeding programs benefit from information about marker-trait associations for many traits, whether the goal is to place those traits under active selection or to maintain them through background selection. Association studies are also important for identifying accessions bearing potentially useful alleles by characterizing marker-trait associations and allelic states across germplasm collections. This study reports the results of a genome-wide association study and evaluation of epistatic interactions for four agronomic and seed-related traits in soybean.

RESULTS

Using 419 diverse soybean accessions, together with genotyping data from the SoySNP50K Illumina Infinium BeadChip, we identified marker-trait associations for internode number (IN), plant height (PH), seed weight (SW), and seed yield per plant (SYP). We conducted a genome-wide epistatic study (GWES), identifying candidate genes that show evidence of SNP-SNP interactions. Although these candidate genes will require further experimental validation, several appear to be involved in developmental processes related to the respective traits. For IN and PH, these include the Dt1 determinacy locus (a soybean meristematic transcription factor), as well as a pectinesterase gene and a squamosa promoter binding gene that in other plants are involved in cell elongation and the vegetative-to-reproductive transition, respectively. For SW, candidate genes include an ortholog of the AP2 gene, which in other species is involved in maintaining seed size, embryo size, seed weight and seed yield. Another SW candidate gene is a histidine phosphotransfer protein - orthologs of which are involved in cytokinin-mediated seed weight regulating pathways. The SYP association loci overlap with regions reported in previous QTL studies to be involved in seed yield.

CONCLUSIONS

This study further confirms the utility of GWAS and GWES approaches for identifying marker-trait associations and interactions within a diverse germplasm collection.

摘要

背景

育种计划受益于许多性状的标记-性状关联信息,无论目标是对这些性状进行主动选择还是通过背景选择来维持它们。关联研究对于通过表征种质资源库中的标记-性状关联和等位基因状态来鉴定携带潜在有用等位基因的种质也很重要。本研究报告了大豆中四个农艺和种子相关性状的全基因组关联研究结果以及上位性相互作用的评估。

结果

利用419份不同的大豆种质,结合来自SoySNP50K Illumina Infinium芯片的基因分型数据,我们鉴定了节数(IN)、株高(PH)、种子重量(SW)和单株种子产量(SYP)的标记-性状关联。我们进行了全基因组上位性研究(GWES),鉴定了显示SNP-SNP相互作用证据的候选基因。尽管这些候选基因需要进一步的实验验证,但其中几个似乎参与了与各自性状相关的发育过程。对于IN和PH,这些基因包括Dt1决定位点(一种大豆分生组织转录因子),以及一个果胶酯酶基因和一个在其他植物中分别参与细胞伸长和营养生长向生殖生长转变的鳞状启动子结合基因。对于SW,候选基因包括AP2基因的直系同源物,该基因在其他物种中参与维持种子大小、胚大小、种子重量和种子产量。另一个SW候选基因是组氨酸磷酸转移蛋白——其直系同源物参与细胞分裂素介导的种子重量调节途径。SYP关联位点与先前QTL研究中报道的参与种子产量的区域重叠。

结论

本研究进一步证实了GWAS和GWES方法在鉴定不同种质资源库中的标记-性状关联和相互作用方面的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/931d/6595607/e12627d17e64/12864_2019_5907_Fig1_HTML.jpg

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