What can be lost? Genomic perspective on the lipid metabolism of Mucoromycota.

IF 5.2 1区 生物学 Q1 MYCOLOGY Ima Fungus Pub Date : 2023-11-06 DOI:10.1186/s43008-023-00127-4
Blanka Sokołowska, Małgorzata Orłowska, Alicja Okrasińska, Sebastian Piłsyk, Julia Pawłowska, Anna Muszewska
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Abstract

Mucoromycota is a phylum of early diverging fungal (EDF) lineages, of mostly plant-associated terrestrial fungi. Some strains have been selected as promising biotechnological organisms due to their ability to produce polyunsaturated fatty acids and efficient conversion of nutrients into lipids. Others get their lipids from the host plant and are unable to produce even the essential ones on their own. Following the advancement in EDF genome sequencing, we carried out a systematic survey of lipid metabolism protein families across different EDF lineages. This enabled us to explore the genomic basis of the previously documented ability to produce several types of lipids within the fungal tree of life. The core lipid metabolism genes showed no significant diversity in distribution, however specialized lipid metabolic pathways differed in this regard among different fungal lineages. In total 165 out of 202 genes involved in lipid metabolism were present in all tested fungal lineages, while remaining 37 genes were found to be absent in some of fungal lineages. Duplications were observed for 69 genes. For the first time we demonstrate that ergosterol is not being produced by several independent groups of plant-associated fungi due to the losses of different ERG genes. Instead, they possess an ancestral pathway leading to the synthesis of cholesterol, which is absent in other fungal lineages. The lack of diacylglycerol kinase in both Mortierellomycotina and Blastocladiomycota opens the question on sterol equilibrium regulation in these organisms. Early diverging fungi retained most of beta oxidation components common with animals including Nudt7, Nudt12 and Nudt19 pointing at peroxisome divergence in Dikarya. Finally, Glomeromycotina and Mortierellomycotina representatives have a similar set of desaturases and elongases related to the synthesis of complex, polyunsaturated fatty acids pointing at an ancient expansion of fatty acid metabolism currently being explored by biotechnological studies.

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会失去什么?毛霉菌脂质代谢的基因组学研究。
毛霉菌门是早期分化真菌(EDF)谱系的一个门,主要是与植物相关的陆地真菌。一些菌株因其产生多不饱和脂肪酸的能力和将营养物质有效转化为脂质的能力而被选为有前途的生物技术生物。其他人从寄主植物中获得脂质,甚至无法自行产生必需的脂质。随着EDF基因组测序的进展,我们对不同EDF谱系的脂质代谢蛋白家族进行了系统调查。这使我们能够探索先前记录的在真菌生命树中产生几种脂质的能力的基因组基础。核心脂质代谢基因在分布上没有表现出显著的多样性,但不同真菌谱系在这方面的专门脂质代谢途径不同。在202个参与脂质代谢的基因中,总共有165个存在于所有测试的真菌谱系中,而其余37个基因在一些真菌谱系中被发现不存在。观察到69个基因存在重复。我们首次证明,由于不同ERG基因的缺失,麦角甾醇不是由几个独立的植物相关真菌群产生的。相反,它们拥有一条导致胆固醇合成的祖先途径,而其他真菌谱系中没有这种途径。Mortiellomycotina和Blastocladiomycota中都缺乏二酰甘油激酶,这就开启了这些生物体中甾醇平衡调节的问题。早期分化的真菌保留了大多数动物常见的β-氧化成分,包括Nudt7、Nudt12和Nudt19,这表明Dikarya存在过氧化物酶体分化。最后,Glomeromycotina和Mortierrellomycina的代表具有一组与合成复杂的多不饱和脂肪酸有关的类似的去饱和酶和伸长酶,这表明生物技术研究目前正在探索脂肪酸代谢的古老扩展。
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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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