日本浅间山天竺葵品种中的避难所:利用叶绿体基因组测序数据对日本浅间山天竺葵标本进行的后续研究

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Seikan Kurata, Shota Sakaguchi, Osamu Kurashima, Risa Ogawa, Yoshihisa Suyama, Sachiko Nishida, Motomi Ito
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引用次数: 0

摘要

最近的系统地理学研究表明,由于多次殖民事件,避难所有时会保留高度的遗传异质性,这种现象被定义为 "避难所中的避难所"。在之前的研究中,我们报告了在日本中部高海拔冰期避难所中发现的高山植物天竺葵(Geranium yesoense)复合体内部复杂的遗传结构,这可能是多次定殖和杂交事件造成的。然而,由于样本量有限,我们无法评估引种情况。在本研究中,我们进行了额外的叶绿体基因组测序,并对选定的叶绿体 DNA 区域进行了 Sanger 测序,以阐明避难种群之间的系统发育关系。来自浅间山(重要的避难所)的一个样本的叶绿体基因组序列被嵌套在北系(即变种 yesoense 和变种 pseudopratense)中,来自浅间山和伊吹山的单倍型也被归入北系。虽然我们之前的研究表明浅间山(即变种 nipponicum)发生了南北两系杂交事件,但在分布区边缘并未检测到南系的单倍型。这表明在这些地区发生了定向引种。总之,我们的研究结果进一步证明,在过去的气候震荡中,这些避难所内的遗传异质性因重新定殖和杂交而扩大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Refugia within refugium of Geranium yesoense varieties: a follow-up study using chloroplast genome sequencing data of specimens from Mt. Asama, Japan
Recent phylogeographical studies have revealed that refugia sometimes retain high levels of genetic heterogeneity due to multiple colonization events, a phenomenon defined as ‘refugia within refugium’. In previous research, we reported a complex genetic structure within the Geranium yesoense complex, an alpine plant found in an interglacial refugium at high elevation in Central Japan, probably resulting from multiple colonization and hybridization events. However, we were unable to evaluate instances of introgression due to limited sample size. In the present study, we performed additional chloroplast genome sequencing, along with Sanger sequencing of selected chloroplast DNA regions, to elucidate the phylogenetic relationships among the refugial populations. The chloroplast genome sequence of a sample from Mt. Asama (an important refugium) was nested within the northern lineage (i.e. var. yesoense and var. pseudopratense), and haplotypes from Mt. Asama and Mt. Ibuki were also grouped with those of the northern lineage. Although our previous study suggested hybridization events between northern and southern lineages (i.e. var. nipponicum) at Mt. Asama, haplotypes from the southern lineage were not detected at range margins. This suggests that directional introgression occurred in these regions. Overall, our results further support that genetic heterogeneity within these refugia was amplified by recolonization and hybridization during past climate oscillations.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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