DNA条形码揭示了囊尾藻属(Phaeophyceae)的隐蔽多样性、分类冲突和新的生物地理学见解

IF 2 4区 生物学 Q2 MARINE & FRESHWATER BIOLOGY
J. Neiva, R. Bermejo, A. Medrano, P. Capdevila, David Milla-Figueras, Pedro A. Afonso, E. Ballesteros, B. Sabour, D. Serio, Eduardo Nóbrega, J. Soares, J. Valdazo, F. Tuya, M. Mulas, Á. Israel, S. S. Sadogurska, M. Guiry, G. Pearson, E. Serrão
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引用次数: 5

摘要

摘要:广义囊藻(s.l.),包括狭义囊藻属(s.s.)、Ericaria属和Gonglaria属,是暖温带东北大西洋特有的一种形成森林的棕色大型藻类。这些藻类具有巨大的生物地理学和生态学意义,并且最近经历了区域性的衰退。大多数囊尾藻表现出重要的形态可塑性,可以与类似物种混淆。因此,物种边界、地理范围和亲缘关系对大多数人来说仍然不精确。面对持续存在的分类学困难,几位作者强调了新的基于分子的方法的必要性,但迄今为止的研究缺乏代表性、分辨率和标准化。为了填补这些空白,在这项研究中,我们对横跨整个东北大西洋范围的Cystoseira s.l.的综合集合进行了约1200 bp的cox1条形码测序,并对代表主要遗传实体的选定个体进行了一些额外质体标记的测序。系统发育地理学、系统发育和物种划界方法揭示了27个分子操作分类学单元,包括未解释的隐蔽多样性,并以前所未有的分辨率阐明了每个属内的物种组成和系统发育关系。压缩囊尾藻(Cystoseira compressa/humilis)、短吻埃卡藻(Ericaria brachycarpa)/海百合属(crenita)、卷柏属(E.selaginoides)和顶壳藻(tophulose Gonglaria)谱系中的一些实体,以及自由生活藻类中的一些,与先验的分类学分配相冲突,需要重新定义、恢复和承认新的分类群。对一些人来说,诊断突变和生物地理学对物种鉴定比形态学特征或传统条形码缺口更有用。少数物种显示出狭窄的地理范围,其他物种是各自谱系的唯一代表。几个姊妹物种显示大西洋与地中海的互补范围。然而,cox1的系统发育信号不足以确定几个谱系和物种复合体中的谱系分裂模式,并且使用额外的质体标记也没有显著改善。考虑到条形码方法的优点和缺点,我们讨论了新的系统学和生物地理学见解,以及如何扩大这项全面的基线研究,以解决尚未解决的多个问题。文章题目囊尾藻、Ericaria和Gonglaria主要遗传实体的鉴定。Cystoseira s.l.的综合参考cox1条形码库Cystosera s.l.的系统学和生物地理学更新。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DNA barcoding reveals cryptic diversity, taxonomic conflicts and novel biogeographical insights in Cystoseira s.l. (Phaeophyceae)
ABSTRACT Cystoseira sensu lato (s.l.) – encompassing the genera Cystoseira sensu stricto (s.s.), Ericaria and Gongolaria – is a diverse group of forest-forming brown macroalgae endemic to the warm-temperate North-east Atlantic. These algae have immense biogeographic and ecological significance and have been experiencing recent regional declines. Most Cystoseira s.l. display important morphological plasticity and can be confused with similar species. Therefore, species boundaries, geographic ranges and phylogenetic affinities remain imprecise for most. In the face of persistent taxonomic difficulties, several authors underlined the necessity for new molecular-based approaches, but studies so far lacked representativity, resolution and standardization. To fill in these gaps, in this study we sequenced a comprehensive collection of Cystoseira s.l. spanning its entire North-east Atlantic range for a ~1200 bp cox1 barcode, and sequenced selected individuals representing major genetic entities for a few additional plastid markers. Phylogeographic, phylogenetic and species delimitation methods revealed 27 Molecular Operational Taxonomic Units, including unaccounted cryptic diversity, and elucidated with unprecedented resolution species compositions and phylogenetic relationships within each genus. Some entities within the lineages Cystoseira compressa/humilis, Ericaria brachycarpa/crinita, E. selaginoides and tophulose Gongolaria, as well as among free-living algae, conflicted with a priori taxonomic assignments, and required the redefinition, reinstatement and recognition of new taxa. For some, diagnostic mutations and biogeography were more useful for species identifications than morphological characters or conventional barcoding gaps. A few species showed narrow geographic ranges and others were the sole representatives of their respective lineages. Several sister-species showed Atlantic vs Mediterranean complementary ranges. Phylogenetic signal of cox1 was nevertheless insufficient to confidently determine patterns of lineage splitting in several lineages and species complexes and did not improve significantly with additional plastid markers. We discuss novel systematics and biogeography insights considering the advantages and shortcomings of the barcoding approach employed, and how this comprehensive baseline study can be expanded to address multiple questions still left unanswered. HIGHLIGHTS Identification of major genetic entities of Cystoseira s.s., Ericaria and Gongolaria. A comprehensive reference cox1 barcode library for Cystoseira s.l. Updated systematics and biogeography of Cystoseira s.l.
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来源期刊
European Journal of Phycology
European Journal of Phycology 生物-海洋与淡水生物学
CiteScore
4.80
自引率
4.20%
发文量
37
审稿时长
>12 weeks
期刊介绍: The European Journal of Phycology is an important focus for the activities of algal researchers all over the world. The Editors-in-Chief are assisted by an international team of Associate Editors who are experts in the following fields: macroalgal ecology, microalgal ecology, physiology and biochemistry, cell biology, molecular biology, macroalgal and microalgal systematics, applied phycology and biotechnology. The European Journal of Phycology publishes papers on all aspects of algae, including cyanobacteria. Articles may be in the form of primary research papers and reviews of topical subjects. The journal publishes high quality research and is well cited, with a consistently good Impact Factor.
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