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通过靶向核基因的亚基因组定相鉴定出藓类植物Physcomitrium 和 Entosthodon(金发藓科)中具有远祖的频繁异源多倍体。

Frequent allopolyploidy with distant progenitors in the moss genera Physcomitrium and Entosthodon (Funariaceae) identified via subgenome phasing of targeted nuclear genes.

机构信息

Biology Department, Trinity College, Hartford, CT, United States.

Biodiversidad, Ecología y Evolución, Universidad Complutense de Madrid, Madrid, Spain.

出版信息

Evolution. 2023 Dec 2;77(12):2561-2575. doi: 10.1093/evolut/qpad171.

DOI:10.1093/evolut/qpad171
PMID:37740404
Abstract

Allopolyploids represent a new frontier in species discovery among embryophytes. Within mosses, allopolyploid discovery is challenged by low morphological complexity. The rapid expansion of sequencing approaches in addition to computational developments to identifying genome merger and whole-genome duplication using variation among nuclear loci representing homeologs has allowed for increased allopolyploid discovery among mosses. Here, we test a novel approach to phasing homeologs within loci and phasing loci across subgenomes, or subgenome assignment, called Homologizer, in the family Funariaceae. We confirm the intergeneric hybrid nature of Entosthodon hungaricus, and the allopolyploid origin of Physcomitrium eurystomum and one population of Physcomitrium collenchymatum. We also reveal that hybridization gave rise to Physcomitrium immersum, as well as to yet unrecognized lineages sharing the phenotype of Physcomitrium pyriforme and Physcomitrium sphaericum. Our findings demonstrate the utility of our approach when working with polyploid genomes, and its value in identifying progenitor species using target capture data.

摘要

异源多倍体代表了植物界中物种发现的一个新前沿。在苔藓植物中,异源多倍体的发现受到形态复杂性低的挑战。随着测序方法的快速扩展,以及利用代表同源基因座的核基因座之间变异来识别基因组融合和全基因组复制的计算方法的发展,苔藓植物中的异源多倍体发现得到了增加。在这里,我们测试了一种在苔藓植物科 Funariaceae 中对基因座内同源基因座进行相位和亚基因组或亚基因组分配(称为 Homologizer)的新方法。我们证实了 Entosthodon hungaricus 的属间杂种性质,以及 Physcomitrium eurystomum 和 Physcomitrium collenchymatum 的一个种群的异源多倍体起源。我们还揭示了杂交导致了 Physcomitrium immersum 的产生,以及尚未被识别的谱系,它们具有 Physcomitrium pyriforme 和 Physcomitrium sphaericum 的表型。我们的研究结果表明,当处理多倍体基因组时,我们的方法具有实用性,并且在使用目标捕获数据识别祖种方面具有价值。

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