Rampant intraspecific variation of plastid genomes in Gentiana section Chondrophyllae

IF 2.3 2区 生物学 Q2 ECOLOGY
Shan-Shan Sun, Zhi-Yong Pan, Yu Fu, Shen-Jue Wang, Peng-Cheng Fu
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Abstract

Exploring the level of intraspecific diversity in taxa experienced radiation is helpful to understanding speciation and biodiversity assembly. Gentiana section Chondrophyllae sensu lato encompasses more than 180 species and occupies more a half of species in the genus. In this study, we collected samples across the range of three species (Gentiana aristata, G. crassuloides and G. haynaldii) in section Chondrophyllae s.l., and recovered the intra-species variation by comparing with closely related taxon. Using 25 newly sequenced plastid genomes together with previously published data, we compared structural differences, quantified the variations in plastome size, and measured nucleotide diversity in various regions. Our results showed that the plastome size variation in the three Chondrophyllae species ranged from 285 to 628 bp, and the size variation in LSC, IR and SSC ranged from 236 to 898 bp, 52 to 393 bp and 135 to 356 bp, respectively. Nucleotide diversity of plastome or any of the four regions was much higher than the control species. The average nucleotide diversity in plastomes of the three species ranged from 0.0010 to 0.0023 in protein coding genes, and from 0.0023 to 0.0061 in intergenic regions. More repeat sequence variations were detected within the three Chondrophyllae species than the control species. Various plastid sequence matrixes resulted in different backbone topology in two target species, showed uncertainty in phylogenetic relationship based inference. In conclusion, our results recovered that species of G. section Chondrophyllae s.l. has high intraspecific plastome variation, and provided insights into the radiation in this speciose lineage.

Abstract Image

龙胆科植物质体基因组的种内变异猖獗。
探索经历过辐射的类群的种内多样性水平有助于理解物种演化和生物多样性的组合。龙胆科(Gentiana)包括 180 多个物种,占该属物种的一半以上。在本研究中,我们采集了软骨草科三个物种(Gentiana aristata、G. crassuloides和G. haynaldii)的样本,并通过与近缘类群的比较恢复了种内变异。我们利用 25 个新测序的质体基因组和以前发表的数据,比较了结构上的差异,量化了质体大小的变化,并测量了不同区域的核苷酸多样性。结果显示,三种软骨鱼藻的质体大小变化范围为 285 至 628 bp,LSC、IR 和 SSC 的大小变化范围分别为 236 至 898 bp、52 至 393 bp 和 135 至 356 bp。质粒或四个区域中任何一个区域的核苷酸多样性都远高于对照种。三个物种质粒中蛋白质编码基因的平均核苷酸多样性为 0.0010 至 0.0023,基因间区的平均核苷酸多样性为 0.0023 至 0.0061。与对照物种相比,三个软骨鱼草属物种的重复序列变异更多。不同的质粒序列矩阵导致两个目标物种的主干拓扑结构不同,显示了基于系统发生关系推断的不确定性。总之,我们的研究结果表明,软骨鱼科(G. section Chondrophyllae s.l.)物种具有较高的种内质体变异,并为这一物种系的辐射提供了见解。
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
CiteScore
4.40
自引率
3.80%
发文量
1027
审稿时长
3-6 weeks
期刊介绍: Ecology and Evolution is the peer reviewed journal for rapid dissemination of research in all areas of ecology, evolution and conservation science. The journal gives priority to quality research reports, theoretical or empirical, that develop our understanding of organisms and their diversity, interactions between them, and the natural environment. Ecology and Evolution gives prompt and equal consideration to papers reporting theoretical, experimental, applied and descriptive work in terrestrial and aquatic environments. The journal will consider submissions across taxa in areas including but not limited to micro and macro ecological and evolutionary processes, characteristics of and interactions between individuals, populations, communities and the environment, physiological responses to environmental change, population genetics and phylogenetics, relatedness and kin selection, life histories, systematics and taxonomy, conservation genetics, extinction, speciation, adaption, behaviour, biodiversity, species abundance, macroecology, population and ecosystem dynamics, and conservation policy.
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