Phylogenomic insights into the taxonomy, ecology, and mating systems of the lorchel family Discinaceae (Pezizales, Ascomycota)

IF 3.6 1区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular Phylogenetics and Evolution Pub Date : 2025-01-07 DOI:10.1016/j.ympev.2025.108286
Alden C. Dirks , Andrew S. Methven , Andrew N. Miller , Michelle Orozco-Quime , Sundy Maurice , Gregory Bonito , Judson Van Wyk , Steven Ahrendt , Alan Kuo , William Andreopoulos , Robert Riley , Anna Lipzen , Mansi Chovatia , Emily Savage , Kerrie Barry , Igor V. Grigoriev , Alexander J. Bradshaw , Francis M. Martin , A. Elizabeth Arnold , Timothy Y. James
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Abstract

Lorchels, also known as false morels (Gyromitra sensu lato), are iconic due to their brain-shaped mushrooms and production of gyromitrin, a deadly mycotoxin. Molecular phylogenetic studies have hitherto failed to resolve deep-branching relationships in the lorchel family, Discinaceae, hampering our ability to settle longstanding taxonomic debates and to reconstruct the evolution of toxin production. We generated 75 draft genomes from cultures and ascomata (some collected as early as 1960), conducted phylogenomic analyses using 1542 single-copy orthologs to infer the early evolutionary history of lorchels, and identified genomic signatures of trophic mode and mating-type loci to better understand lorchel ecology and reproductive biology. Our phylogenomic tree was supported by high gene tree concordance, facilitating taxonomic revisions in Discinaceae. We recognized 10 genera across two tribes: tribe Discineae (Discina, Maublancomyces, Neogyromitra, Piscidiscina, and Pseudodiscina) and tribe Gyromitreae (Gyromitra, Hydnotrya, Paragyromitra, Pseudorhizina, and Pseudoverpa); Piscidiscina was newly erected and 26 new combinations were formalized. Paradiscina melaleuca and Marcelleina donadinii formed their own family-level clade sister to Morchellaceae, which merits further taxonomic study. Genome size and CAZyme content were consistent with a mycorrhizal lifestyle for the truffle species (Hydnotrya spp.), whereas the other Discinaceae genera possessed genomic properties of a saprotrophic habit. Lorchels were found to be predominantly heterothallic—either MAT1-1 or MAT1-2—but a single occurrence of colocalized mating-type idiomorphs indicative of homothallism was observed in Gyromitra esculenta strain CBS101906 and requires additional confirmation and follow-up study. Lastly, we confirmed that gyromitrin has a phylogenetically discontinuous distribution, having been detected exclusively in two distantly related genera (Gyromitra and Piscidiscina) belonging to separate tribes. Our genomic dataset will facilitate further investigations into the gyromitrin biosynthesis genes and their evolutionary history. With additional sampling of Geomoriaceae and Helvellaceae—two closely related families with no publicly available genomes—these data will enable comprehensive studies on the independent evolution of truffles and ecological diversification in an economically important group of pezizalean fungi.

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从系统基因组学的角度探讨了弓形菌科(Pezizales, Ascomycota)的分类、生态学和交配系统。
Lorchels,也被称为假羊肚菌(Gyromitra sensu lato),因其脑形蘑菇和产生致命的真菌毒素gyromitrin而成为标志性的。迄今为止,分子系统发育研究未能解决弓形虫科的深分支关系,这阻碍了我们解决长期存在的分类学争论和重建毒素产生进化的能力。我们从培养物和ascomata中生成了75个基因组草图(其中一些早在1960年就收集了),利用1542个单拷贝同源物进行了系统基因组学分析,推断了lorchels的早期进化史,并确定了营养模式和交配型位点的基因组特征,以更好地了解lorchels生态学和生殖生物学。我们的系统基因组树得到了高基因树一致性的支持,方便了Discinaceae的分类修订。我们发现了两个部落的10个属:tribe Discineae (Discina, Maublancomyces, Neogyromitra, Piscidiscina和pseudodisina)和tribe Gyromitreae (Gyromitra, Hydnotrya, Paragyromitra, Pseudorhizina和Pseudoverpa);双鱼座是新建立的,26个新的组合正式确定。千层Paradiscina melaleuca和Marcelleina donadinii形成了与羊肠科(Morchellaceae)相似的科系分支,值得进一步的分类研究。松露物种(水松菌属)的基因组大小和CAZyme含量与菌根生活方式一致,而松露科其他属具有腐养习性的基因组特性。我们发现Lorchels主要是异菌型(MAT1-1或mat1 -2),但在Gyromitra esculenta菌株CBS101906中观察到单一的同源交配型自形,表明同源性,需要进一步的证实和后续研究。最后,我们证实了gyromitrin具有系统不连续分布,仅在属于不同部落的两个远亲属(Gyromitra和Piscidiscina)中检测到。我们的基因组数据集将有助于进一步研究gyromitrin生物合成基因及其进化史。通过对Geomoriaceae和helvellacae这两个密切相关的科(没有公开的基因组)的额外采样,这些数据将能够全面研究松露的独立进化和经济上重要的pezizalean真菌群体的生态多样化。
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来源期刊
Molecular Phylogenetics and Evolution
Molecular Phylogenetics and Evolution 生物-进化生物学
CiteScore
7.50
自引率
7.30%
发文量
249
审稿时长
7.5 months
期刊介绍: Molecular Phylogenetics and Evolution is dedicated to bringing Darwin''s dream within grasp - to "have fairly true genealogical trees of each great kingdom of Nature." The journal provides a forum for molecular studies that advance our understanding of phylogeny and evolution, further the development of phylogenetically more accurate taxonomic classifications, and ultimately bring a unified classification for all the ramifying lines of life. Phylogeographic studies will be considered for publication if they offer EXCEPTIONAL theoretical or empirical advances.
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