| Literature DB >> 31433882 |
Babu Valliyodan1,2, Steven B Cannon3, Philipp E Bayer4, Shengqiang Shu5, Anne V Brown3, Longhui Ren6, Jerry Jenkins7, Claire Y-L Chung8, Ting-Fung Chan8, Christopher G Daum5, Christopher Plott7, Alex Hastie9, Kobi Baruch10, Kerrie W Barry5, Wei Huang11, Gunvant Patil1, Rajeev K Varshney12, Haifei Hu4, Jacqueline Batley4, Yuxuan Yuan4, Qijian Song13, Robert M Stupar14, David M Goodstein5, Gary Stacey1, Hon-Ming Lam8, Scott A Jackson15, Jeremy Schmutz7, Jane Grimwood7, David Edwards4, Henry T Nguyen1.
Abstract
We report reference-quality genome assemblies and annotations for two accessions of soybean (Glycine max) and for one accession of Glycine soja, the closest wild relative of G. max. The G. max assemblies provided are for widely used US cultivars: the northern line Williams 82 (Wm82) and the southern line Lee. The Wm82 assembly improves the prior published assembly, and the Lee and G. soja assemblies are new for these accessions. Comparisons among the three accessions show generally high structural conservation, but nucleotide difference of 1.7 single-nucleotide polymorphisms (snps) per kb between Wm82 and Lee, and 4.7 snps per kb between these lines and G. soja. snp distributions and comparisons with genotypes of the Lee and Wm82 parents highlight patterns of introgression and haplotype structure. Comparisons against the US germplasm collection show placement of the sequenced accessions relative to global soybean diversity. Analysis of a pan-gene collection shows generally high conservation, with variation occurring primarily in genomically clustered gene families. We found approximately 40-42 inversions per chromosome between either Lee or Wm82v4 and G. soja, and approximately 32 inversions per chromosome between Wm82 and Lee. We also investigated five domestication loci. For each locus, we found two different alleles with functional differences between G. soja and the two domesticated accessions. The genome assemblies for multiple cultivated accessions and for the closest wild ancestor of soybean provides a valuable set of resources for identifying causal variants that underlie traits for the domestication and improvement of soybean, serving as a basis for future research and crop improvement efforts for this important crop species.Entities:
Keywords: zzm321990Glycine maxzzm321990; zzm321990Glycine sojazzm321990; comparative genomics; domestication; genome assembly; soybean
Mesh:
Year: 2019 PMID: 31433882 DOI: 10.1111/tpj.14500
Source DB: PubMed Journal: Plant J ISSN: 0960-7412 Impact factor: 6.417