Downfall of an empire: Unmasking the hidden diversity and distribution of the Amanita rubescens species complex.

IF 2.6 2区 生物学 Q2 MYCOLOGY
Mycologia Pub Date : 2024-09-01 Epub Date: 2024-06-24 DOI:10.1080/00275514.2024.2355276
Christian A Quintero-Corrales, Melania Vega, Amaranta Ramírez-Terrazo, Bernardo Águila, Roberto Garibay-Orijel
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引用次数: 0

Abstract

Amanita is one of the most salient mushroom genera due to its cultural, economic, and medical importance. Recently, many new Amanita species have been described worldwide, increasing the genus richness. However, several clades have cryptic diversity, and many species complexes have not yet been resolved. This is the case of the rubescent species in the Validae section, which have been widely cited under the name Amanita rubescens s.l. We used a four-locus matrix (nuc rDNA internal transcribed spacer [ITS] and 28S regions and genes for RNA polymerase II subunit 2 [rpb2], translation elongation factor 1-α [tef1-α], and β-tubulin [tub2]) to solve the phylogenetic relationships within the Amanita section Validae. To analyze the diversity and distribution patterns of species, we used an extensive ITS sequence sampling including environmental DNA databases. The phylogenetic analyses demonstrated that the Validae section is divided into three monophyletic and highly supported major clades: Mappae, Validae, and Rubescentes. At least 11 species-level clades within the Rubescentes clade were highly supported: A. cruentilemurum nom. prov. A. brunneolocularis, A. rubescens s.s. (European clade), A. rubescens s.s. (Asiatic clade), A. orsonii s.s. A. 'orsonii,' A. aureosubucula nom. prov., A. novinupta, A. flavorubens, and two undescribed North American species. We proved that A. rubescens s.s. has two segregated populations (European and Asiatic) and it is not naturally distributed in America. Furthermore, we found that America has more cryptic species within the Rubescentes clade than Eurasia.

一个帝国的衰落:揭开Amanita rubescens物种群隐藏的多样性和分布。
由于其在文化、经济和医学方面的重要性,天南星蘑菇属是最著名的蘑菇属之一。最近,世界各地描述了许多新的天南星属物种,增加了该属的丰富性。然而,有几个支系具有隐性多样性,许多物种复合体尚未得到解决。我们利用四焦点矩阵(nuc rDNA 内部转录间隔区 [ITS]、28S 区和 RNA 聚合酶 II 亚基 2 [rpb2]、翻译延伸因子 1-α [tef1-α] 和 β-微管蛋白 [tub2])解决了天南星科的系统发生关系。为了分析物种的多样性和分布模式,我们使用了广泛的 ITS 序列取样,包括环境 DNA 数据库。系统发生学分析表明,天南星科分为三个单系和高支持的主要支系:Mappae、Validae 和 Rubescentes。在 Rubescentes 支系中,至少有 11 个种级支系得到了高度支持:A. cruentilemurum nom.A.brunneolocularis、A. rubescens s.s.(欧洲支系)、A. rubescens s.s.(亚洲支系)、A. orsonii s.s. A. 'orsonii'、A. aureosubucula nom. prov.、A. novinupta、A. flavorubens 以及两个未被描述的北美种。我们证明,A. rubescens s.s.有两个分离的种群(欧洲种群和亚洲种群),它在美洲没有自然分布。此外,我们还发现美洲比欧亚大陆拥有更多的 Rubescentes 支系中的隐蔽物种。
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
Mycologia
Mycologia 生物-真菌学
CiteScore
6.20
自引率
3.60%
发文量
56
审稿时长
4-8 weeks
期刊介绍: International in coverage, Mycologia presents recent advances in mycology, emphasizing all aspects of the biology of Fungi and fungus-like organisms, including Lichens, Oomycetes and Slime Molds. The Journal emphasizes subjects including applied biology, biochemistry, cell biology, development, ecology, evolution, genetics, genomics, molecular biology, morphology, new techniques, animal or plant pathology, phylogenetics, physiology, aspects of secondary metabolism, systematics, and ultrastructure. In addition to research articles, reviews and short notes, Mycologia also includes invited papers based on presentations from the Annual Conference of the Mycological Society of America, such as Karling Lectures or Presidential Addresses.
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