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豆科大豆属二倍体B基因组物种复合体中的不一致性再探讨:组蛋白H3-D等位基因与叶绿体单倍型

Incongruence in the diploid B-genome species complex of Glycine (Leguminosae) revisited: histone H3-D alleles versus chloroplast haplotypes.

作者信息

Doyle J J, Doyle J L, Brown A H

机构信息

L. H. Bailey Hortorium, Cornell University, Ithaca, New York 14853, USA.

出版信息

Mol Biol Evol. 1999 Mar;16(3):354-62. doi: 10.1093/oxfordjournals.molbev.a026116.

Abstract

Variation at the single-copy nuclear locus histone H3-D was surveyed in the diploid B-genome group of Glycine subgenus Glycine (Leguminosae: Papilionoideae), which comprises three named Australian species and a number of distinct but as yet not formally recognized taxa. A total of 23 alleles was identified in the 44 accessions surveyed. Only one individual was clearly heterozygous, which is not surprising given the largely autogamous breeding system of subgenus Glycine. Alleles differed by as many as 19 nucleotide substitutions, nearly all in the three introns; length variation was minimal. Phylogenetic analysis identified two shortest allele trees with very little homoplasy, suggesting that recombination has been rare. Both topological and data set incongruence were statistically significant between histone H3-D allele trees and trees inferred from chloroplast DNA haplotypes previously described from these same accessions. Whereas the distribution of H3-D alleles agrees well with morphologically based taxonomic groupings, chloroplast DNA haplotype polymorphisms transgress species boundaries, suggesting that the chloroplast genome is not tracking taxic relationships. Divergences among chloroplast DNA haplotypes involved in such transgressive patterns appear to be more recent than speciation events, suggesting hybridization rather than lineage sorting.

摘要

在豆科蝶形花亚科大豆属二倍体B基因组组群中,对单拷贝核基因座组蛋白H3-D的变异情况进行了调查,该组群包含三个已命名的澳大利亚物种以及一些不同但尚未正式确认的分类群。在所调查的44份材料中,共鉴定出23个等位基因。只有一个个体明显为杂合子,鉴于大豆属主要为自花授粉的繁育系统,这并不令人意外。等位基因之间的差异多达19个核苷酸替换,几乎全部位于三个内含子中;长度变异极小。系统发育分析确定了两棵最短的等位基因树,几乎没有同塑现象,这表明重组很少发生。组蛋白H3-D等位基因树与根据这些相同材料先前描述的叶绿体DNA单倍型推断的树之间,拓扑结构和数据集不一致在统计学上均具有显著性。虽然H3-D等位基因的分布与基于形态学的分类分组非常吻合,但叶绿体DNA单倍型多态性跨越了物种界限,这表明叶绿体基因组并未追踪分类关系。参与这种越界模式的叶绿体DNA单倍型之间的分歧似乎比物种形成事件更近,这表明是杂交而非谱系分选。

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