三种海洋真菌的基因组特征,包括具有通用生活方式和海洋生物质降解特征的 Emericellopsis atlantica sp.

IF 5.2 1区 生物学 Q1 MYCOLOGY
Ole Christian Hagestad, Lingwei Hou, Jeanette H Andersen, Espen H Hansen, Bjørn Altermark, Chun Li, Eric Kuhnert, Russell J Cox, Pedro W Crous, Joseph W Spatafora, Kathleen Lail, Mojgan Amirebrahimi, Anna Lipzen, Jasmyn Pangilinan, William Andreopoulos, Richard D Hayes, Vivian Ng, Igor V Grigoriev, Stephen A Jackson, Thomas D S Sutton, Alan D W Dobson, Teppo Rämä
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引用次数: 0

摘要

海洋真菌在全球基因组测序活动中的覆盖率仍然很低;1000 个真菌基因组(1KFG)项目试图揭示被忽视和未得到很好解决的真菌类群的多样性、生态学和潜在工业用途。本研究描述了三种海洋真菌基因组的特征:TS7、与木材相关的 Amylocarpus encephaloides 和与藻类相关的 Calycina marina。对这些物种进行了基因组测序,利用多焦点数据研究它们的基因组特征、生物合成潜力和系统发育位置。根据 15 个基因的系统进化分析,Amylocarpus encephaloides 和 C. marina 分别被归入 Helotiaceae 和 Pezizellaceae(螺旋藻科)。与 Emericellopsis sp. TS7 分离物相比,这两个基因组的生物合成基因簇(BGC)和碳水化合物活性酶(CAZymes)较少。从海绵 Stelletta normani 中分离出了 Emericellopsis sp.六基因系统进化分析将该分离物归入海洋 Emericellopsis 支系,形态学检查证实该分离物代表一个新物种,在此描述为 E. atlantica。对其 CAZyme 基因库的分析以及在三种海洋基质和一种陆地基质上的培养实验表明,E. atlantica 是一种精神营养性通性真菌,能够降解多种类型的海洋生物物质。FungiSMASH 分析显示存在 35 个 BGCs,其中包括 8 个非核糖体肽合成酶(NRPSs)、6 个类 NRPSs、6 个聚酮合成酶、9 个萜烯类化合物和 6 个混合、混合或其他簇。在这些 BGCs 中,只有 5 个与特征 BGCs 同源。未知 BGCs 组和大量 CAZyme repertoire 的存在为进一步研究 E. atlantica 创造了条件。Pezizellaceae基因组和单型Amylocarpus属基因组是首次发表的局限于海洋生境的丝状真菌基因组,因此是社区的宝贵资源,可用于利用比较基因组学研究真菌的生态适应性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Genomic characterization of three marine fungi, including Emericellopsis atlantica sp. nov. with signatures of a generalist lifestyle and marine biomass degradation.

Genomic characterization of three marine fungi, including Emericellopsis atlantica sp. nov. with signatures of a generalist lifestyle and marine biomass degradation.

Genomic characterization of three marine fungi, including Emericellopsis atlantica sp. nov. with signatures of a generalist lifestyle and marine biomass degradation.

Genomic characterization of three marine fungi, including Emericellopsis atlantica sp. nov. with signatures of a generalist lifestyle and marine biomass degradation.

Marine fungi remain poorly covered in global genome sequencing campaigns; the 1000 fungal genomes (1KFG) project attempts to shed light on the diversity, ecology and potential industrial use of overlooked and poorly resolved fungal taxa. This study characterizes the genomes of three marine fungi: Emericellopsis sp. TS7, wood-associated Amylocarpus encephaloides and algae-associated Calycina marina. These species were genome sequenced to study their genomic features, biosynthetic potential and phylogenetic placement using multilocus data. Amylocarpus encephaloides and C. marina were placed in the Helotiaceae and Pezizellaceae (Helotiales), respectively, based on a 15-gene phylogenetic analysis. These two genomes had fewer biosynthetic gene clusters (BGCs) and carbohydrate active enzymes (CAZymes) than Emericellopsis sp. TS7 isolate. Emericellopsis sp. TS7 (Hypocreales, Ascomycota) was isolated from the sponge Stelletta normani. A six-gene phylogenetic analysis placed the isolate in the marine Emericellopsis clade and morphological examination confirmed that the isolate represents a new species, which is described here as E. atlantica. Analysis of its CAZyme repertoire and a culturing experiment on three marine and one terrestrial substrates indicated that E. atlantica is a psychrotrophic generalist fungus that is able to degrade several types of marine biomass. FungiSMASH analysis revealed the presence of 35 BGCs including, eight non-ribosomal peptide synthases (NRPSs), six NRPS-like, six polyketide synthases, nine terpenes and six hybrid, mixed or other clusters. Of these BGCs, only five were homologous with characterized BGCs. The presence of unknown BGCs sets and large CAZyme repertoire set stage for further investigations of E. atlantica. The Pezizellaceae genome and the genome of the monotypic Amylocarpus genus represent the first published genomes of filamentous fungi that are restricted in their occurrence to the marine habitat and form thus a valuable resource for the community that can be used in studying ecological adaptions of fungi using comparative genomics.

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来源期刊
Ima Fungus
Ima Fungus Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
11.00
自引率
3.70%
发文量
18
审稿时长
20 weeks
期刊介绍: The flagship journal of the International Mycological Association. IMA Fungus is an international, peer-reviewed, open-access, full colour, fast-track journal. Papers on any aspect of mycology are considered, and published on-line with final pagination after proofs have been corrected; they are then effectively published under the International Code of Nomenclature for algae, fungi, and plants. The journal strongly supports good practice policies, and requires voucher specimens or cultures to be deposited in a public collection with an online database, DNA sequences in GenBank, alignments in TreeBASE, and validating information on new scientific names, including typifications, to be lodged in MycoBank. News, meeting reports, personalia, research news, correspondence, book news, and information on forthcoming international meetings are included in each issue
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