Intraspecific divergence in a coastal plant, Euphorbia jolkinii, at a major biogeographic boundary in East Asia

IF 2.4 2区 生物学 Q2 PLANT SCIENCES
Hiroyuki Iwata, Takuro Ito, Jong-Soo Park, Goro Kokubugata, Akihiro Kakezawa, Takahide Kurosawa, Akihiro Nishimura, Hiroshi Noda, Koji Takayama
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Abstract

Premise

Quaternary climatic fluctuations and long-distance seed dispersal across the sea are critical factors affecting the distribution of coastal plants, but the spatiotemporal nature of population expansion and distribution change of East Asian coastal plants during this period are rarely examined. To explore this process, we investigated the genome-wide phylogenetic patterns of Euphorbia jolkinii Boiss. (Euphorbiaceae), which grows widely on littoral areas of Japan, Korea, and Taiwan.

Methods

We used plastome sequences and genome-wide single nucleotide polymorphisms in samples across the species range to reveal phylogeographic patterns and spatiotemporal distributional changes. We conducted ecological niche modeling for the present and the last glacial maximum (LGM).

Results

Genetic differentiation was observed between the northern and southern populations of E. jolkinii, separated by the major biogeographic boundary, the Tokara Gap. These two groups of populations differentiated during the glacial period and subsequently intermingled in the intermorainic areas of the central Ryukyu Islands after the LGM. Ecological niche models suggested that the potential range of E. jolkinii was restricted to southern Kyushu; however, it was widespread in the southern Ryukyu Islands and Taiwan during the LGM.

Conclusions

This study provides evidence of genetic differentiation among coastal plant populations separated by the prominent biogeographical boundary. Although coastal plants are typically expected to maintain population connectivity through sea-drifted seed dispersal, our findings suggest that genetic differences may arise because of a combination of limited gene flow and changes in climate during the glacial period.

Abstract Image

东亚主要生物地理界线上的一种沿海植物 Euphorbia jolkinii 的种内分化。
前提:第四纪的气候波动和种子的远距离跨海传播是影响滨海植物分布的关键因素,但这一时期东亚滨海植物种群扩张和分布变化的时空性质却鲜有研究。为了探究这一过程,我们研究了大戟科(Euphorbia jolkinii Boiss.(方法:方法:我们利用该物种分布区样本的质粒体序列和全基因组单核苷酸多态性来揭示其系统地理格局和时空分布变化。我们对现在和上一个冰川极盛时期(LGM)进行了生态位建模:结果:在被主要的生物地理界线托卡拉峡谷分隔开来的 E. jolkinii 北方种群和南方种群之间观察到了遗传分化。这两组种群在冰川期出现分化,随后在 LGM 之后在琉球群岛中部的山间地区相互融合。生态位模型表明,E. jolkinii 的潜在分布范围仅限于九州南部;但在 LGM 期间,它广泛分布于琉球群岛南部和台湾:结论:这项研究提供了被显著的生物地理边界分隔的沿海植物种群之间遗传分化的证据。尽管沿海植物通常会通过海漂种子传播来保持种群的连通性,但我们的研究结果表明,遗传差异的产生可能是由于冰川期有限的基因流动和气候变化共同作用的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
American Journal of Botany
American Journal of Botany 生物-植物科学
CiteScore
4.90
自引率
6.70%
发文量
171
审稿时长
3 months
期刊介绍: The American Journal of Botany (AJB), the flagship journal of the Botanical Society of America (BSA), publishes peer-reviewed, innovative, significant research of interest to a wide audience of plant scientists in all areas of plant biology (structure, function, development, diversity, genetics, evolution, systematics), all levels of organization (molecular to ecosystem), and all plant groups and allied organisms (cyanobacteria, algae, fungi, and lichens). AJB requires authors to frame their research questions and discuss their results in terms of major questions of plant biology. In general, papers that are too narrowly focused, purely descriptive, natural history, broad surveys, or that contain only preliminary data will not be considered.
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