Novel perspectives on plastome evolution in Onagraceae.

IF 2.6 3区 生物学 Q2 ECOLOGY
AoB Plants Pub Date : 2025-04-24 eCollection Date: 2025-06-01 DOI:10.1093/aobpla/plaf025
Chia-Ying Ou, Chia-Hao Chang, Ting-Yu Yeh, Kuo-Fang Chung, Peter C Hoch, Shih-Hui Liu
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引用次数: 0

Abstract

Previous systematic studies have generated abundant information on plants in family Onagraceae Juss., making this taxonomic group a model for understanding plant evolution. The chloroplast genome is widely used to provide valuable insights into how plant lineages evolved. In the present study, we employed shotgun sequencing to assemble new plastomes from Onagraceae. Plastomes of ten species and one genus, Fuchsia, are reported for the first time. We characterize and compare the plastome features of six genera (Chamaenerion, Circaea, Epilobium, Fuchsia, Ludwigia, and Oenothera), allowing us to reconstruct their phylogenies and explore inter- and infra-generic evolutionary relationships, inverted repeat (IR) expansion, plastome size increases, and correlations among repeat elements, genetic variations, and evolutionary events. Our findings indicate that each of the tribes and subfamilies we assessed exhibits unique plastome features. Our phylogenetic tree supports previous findings, but also reveals that some clades need further systematic analyses. We show that increased plastome size within subfamily Onagroideae coincides with IR expansion, which is not the case for subfamily Ludwigioideae. In addition, our results indicate that higher repeat numbers and greater genetic variation can serve as indicators of evolutionary events, such as gene loss and gain, IR boundary shifts, and inversions, but they may not have arisen universally across all members of Onagraceae. Our study provides some novel insights into plastome evolution in the Onagraceae. Further studies should aim to elucidate how plastome size has evolved in Ludwigioideae and explore the evolutionary roles of regions in Onagraceae plastomes exhibiting high repeat numbers and genetic variations.

玉兰科植物质体进化的新视角。
以往的系统研究已经获得了丰富的关于玉兔科植物的信息。这使得这个分类群成为理解植物进化的一个模型。叶绿体基因组被广泛用于提供对植物谱系如何进化的有价值的见解。在本研究中,我们采用散弹枪测序的方法组装了玉兰科的新质体。本文首次报道了紫花属(Fuchsia) 10种的质体体。我们对6个属(Chamaenerion、Circaea、Epilobium、Fuchsia、Ludwigia和Oenothera)的质体特征进行了表征和比较,从而重建了它们的系统发育,并探索了属间和属下的进化关系、反向重复序列(IR)扩展、质体大小增加以及重复序列元件、遗传变异和进化事件之间的相关性。我们的研究结果表明,我们评估的每个部落和亚家族都表现出独特的质体特征。我们的系统发育树支持了之前的发现,但也揭示了一些分支需要进一步的系统分析。我们发现Onagroideae亚家族中质体体大小的增加与IR扩张相一致,而Ludwigioideae亚家族则不是这样。此外,我们的研究结果表明,较高的重复数和较大的遗传变异可以作为进化事件的指标,如基因丢失和获得,IR边界移动和反转,但它们可能不是普遍存在于所有onagracae成员中。我们的研究为龙舌兰科的质体进化提供了一些新的见解。进一步的研究应该旨在阐明Ludwigioideae的质体体大小是如何进化的,并探索onagracae中具有高重复数和遗传变异的质体体区域的进化作用。
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
AoB Plants
AoB Plants PLANT SCIENCES-
CiteScore
4.80
自引率
0.00%
发文量
54
审稿时长
20 weeks
期刊介绍: AoB PLANTS is an open-access, online journal that has been publishing peer-reviewed articles since 2010, with an emphasis on all aspects of environmental and evolutionary plant biology. Published by Oxford University Press, this journal is dedicated to rapid publication of research articles, reviews, commentaries and short communications. The taxonomic scope of the journal spans the full gamut of vascular and non-vascular plants, as well as other taxa that impact these organisms. AoB PLANTS provides a fast-track pathway for publishing high-quality research in an open-access environment, where papers are available online to anyone, anywhere free of charge.
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