Genomic Relationships of Glycine Remota, a Recently Discovered Perennial Relative of Soybean, within Glycine

IF 0.9 3区 生物学 Q4 EVOLUTIONARY BIOLOGY Systematic Botany Pub Date : 2023-03-28 DOI:10.1600/036364423X16758873924117
J. Landis, J. Doyle
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引用次数: 1

Abstract

Abstract The legume genus, Glycine, which includes the Asian annual cultivated soybean, also includes a group of Australian perennial species comprising the subgenus Glycine. Because the subgenus Glycine represents the tertiary gene pool for one of the world's most important crops, the group has been the target of collection and study for decades, resulting in a steady growth in the number of formally recognized species, from six in the 1970s to over 20 at present, as well as a number of additional informal taxa. These studies have also produced a system of nuclear diploid “genome groups” corresponding to clades in molecular phylogenies. The aptly named G. remota is known only from a single isolated population in the Kimberley region of northwestern Australia and was named only in 2015. The species is unique within Glycine in having unifoliolate leaves; its discoverers hypothesized that G. remota, if diploid, is related to species of the I-genome that are also native to the Kimberley region. We produced low coverage short-read genome sequencing data from an herbarium specimen of G. remota. Genome size estimates from the sequencing data suggests that G. remota is a diploid, while ploidy estimation is inconclusive likely due to the history of whole genome duplication in Glycine. Phylogenomic analyses of genome-wide SNPs, as well as phylogenetic analyses of the low copy nuclear gene (histone H3D), the entire ribosomal RNA cistron, and the internal transcribed spacer all placed the species unequivocally in the diploid I-genome clade. A complete plastome sequence was also generated and its placement with a plastome phylogeny is also consistent with membership in the I-genome.
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新近发现的大豆多年生亲缘关系甘氨酸重塑在甘氨酸中的基因组关系
摘要豆科植物Glycine包括亚洲一年生栽培大豆,也包括一组澳大利亚多年生物种Glycine亚属。由于甘氨酸亚属代表了世界上最重要的作物之一的第三代基因库,几十年来,该类群一直是收集和研究的目标,导致正式认可的物种数量稳步增长,从20世纪70年代的6个增加到目前的20多个,以及一些额外的非正式分类群。这些研究还产生了一个与分子系统发育中的分支相对应的核二倍体“基因组群”系统。只有在澳大利亚西北部金伯利地区的一个孤立种群中才知道这个名字恰如其分的G.remota,它是在2015年才被命名的。该物种在甘氨酸中是独特的,具有单小叶;它的发现者假设,如果是二倍体的话,雷莫塔与金伯利地区的I基因组物种有关。我们从一个植物标本馆提取了低覆盖率的短读基因组测序数据。测序数据的基因组大小估计表明,远志是一种二倍体,而倍性估计可能是不确定的,因为甘氨酸有全基因组复制的历史。全基因组SNPs的系统发育基因组分析,以及低拷贝核基因(组蛋白H3D)、整个核糖体RNA顺反子和内部转录间隔区的系统发育分析,都将该物种明确地置于二倍体I基因组分支中。还产生了一个完整的质体序列,其在质体系统发育中的位置也与I基因组中的成员身份一致。
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来源期刊
Systematic Botany
Systematic Botany 生物-进化生物学
CiteScore
1.80
自引率
10.00%
发文量
72
审稿时长
6-12 weeks
期刊介绍: Systematic Botany Monographs is a series of peer-reviewed taxonomic monographs and revisions published the American Society of Plant Taxonomists. ISSN 0737-8211, ISBN prefix 978-0-912861. No; volumes of Systematic Botany Monographs must be ordered separately. ASPT membership inludes only a subscription to the quarterly journal Systematic Botany. SBM is supported by sales, author"s subsidies, and donations.
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